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27 April 2009

We Believe Global Warming is Happening, Just Not Necessarily to Us


by April Streeter, Gothenburg, Sweden from Treehugger (April 27, 2009)

The inverted pyramid shows we believe climate change is affecting everyone more than us.

A survey of 2,164 adults by George Mason University and the Yale Project on Climate Change discovered some of the distressing ways in which we humans just can't see to think very long term: just 32 percent of the Americans surveyed believe global warming will personally harm them "a great deal" or a "moderate amount." Contrast that with the same group's opinion on the rest of the animal kingdom: nearly twice the number of respondents, or 62% believed that plant and animal species would be harmed by climate change. In fact, as the graphic shows, people somewhat ironically believed that everyone around them - their families, communities, and countries - will be more in harm's way than they themselves. How's that for optimistic, (perhaps even magical?) thinking?

Economy Dwarfs Environment...for now
The survey that the graphic is based on, conducted in September and October of 2008, found the economy to be American's biggest worry, dwarfing all others. This is not so surprising, in light of the economic implosion coming to light at that time, but also the feature of human brains that seems to make us unable to hold too many worries in our heads at once. And of course, the truth of the matter - some communities may suffer disproportionately from global warming, though there is a certain unpredictability that people can't seem to account for.

Political leaders...are you listening?
What the survey found in addition to this tendency to think of climate change in the abstract is fairly massive support for action to reduce global warming. Ninety-two percent of respondents supported more money for research into alternative forms of energy such as solar and wind; eighty-five percent wanted tax rebates for people buying energy-efficient vehicles or solar panels; and 80 percent said the government should regulate carbon dioxide as a pollutant. Of course, those results are also in the abstract, as people tend to say they want more wind turbines and solar panels until their NIMBY instincts pop up when the equipment arrives near their back yards, and they don't mind paying a little more in taxes for clean energy, until those taxes actually happen and then they are in the streets having a tax tea party.

Belief in reality of global warming is growing
The George Mason and Yale University researchers believe their survey points out that Americans' believe in the reality of global warming (Sarah Palin notwithstanding) is growing - that we as a majority, think it is happening, is human caused, and is a serious threat. A rising number, the researchers said, also believe the United States should do something. Conversely, less than half believe that a cap-and-trade carbon system is what we should do. And, hidden among the data sets was a statistic pointing to ongoing erosion of the public trust: only 47% of those polled trust mainstream news media to deliver reliable global warming information, while 48% trust religious leaders to do so! Via: FiveThirtyEight: Politics Done Right

Download the survey here.

20 April 2009

Wolves back in the crosshairs after Salazar decision to remove federal protection in the Northern Rockies

From Defenders of Wildlife, April 1, 2009

WASHINGTON – Tomorrow, the rule removing wolves in the Northern Rockies from the list of endangered and threatened species is expected to be published in the Federal Register. It will take effect on May 4, after which wolves throughout Idaho, Montana, and parts of Utah, Oregon and Washington will no longer receive any protection under the Endangered Species Act.

The following is a statement by Rodger Schlickeisen, president for Defenders of Wildlife:

"We're on the eve of a tragic event in the history of the conservation of endangered species. Interior Secretary Ken Salazar's decision to adopt the Bush administration's plan to remove Endangered Species Act protection for wolves in the Northern Rockies is a loss for the wolves, a loss for their ecosystems and a loss for sound science serving as the backbone of the Endangered Species Act.

"Wolves will once again be in the crosshairs to be needlessly killed starting May 4. Under the inadequate federal delisting rule, as much as two-thirds of the current Northern Rockies wolf population can be killed. Defenders of Wildlife will not stand by and let this go unchallenged.

"We turn now to the federal courts to save these wolves and ensure the future of wolf restoration in the region. It is deeply disappointing that Secretary Salazar missed a major opportunity to work with conservationists, scientists, ranchers, hunters and other stakeholders to resolve the issues that must be resolved to ensure that wolf recovery continues and the requirements of the Endangered Species Act are met. Instead, he has forced us to return to the courts to again challenge the same flawed plan that was rejected by the courts just last summer."

The following is a statement by Suzanne Stone, Northern Rockies Representative for Defenders of Wildlife:

"We look forward to celebrating the transfer of wolves to state management but not until a federal delisting rule is developed that ensures the future of wolves in the region. This plan ignores current science on what wolves need to maintain a healthy population over the long term. It also ignores the hundreds of thousands of citizens who have asked for a better plan."

Take Action!

Call the U.S. Fish and Wildlife Service at 1-800-344-9453, select option “3” (for endangered species) and hit “0” to speak with the operator. Once you are connected, just deliver this simple message:

My name is [Your Name] and I am calling from [Your City], [Your State] to express my extreme disappointment in Interior Secretary Salazar’s decision to eliminate Endangered Species Act protections for wolves in the Northern Rockies states of Idaho and Montana.

If his decision is allowed to stand, nearly two-thirds of the wolves in the Northern Rockies could be killed. I strongly urge Secretary Salazar to stop the implementation of his awful rule and reconsider his approach to wolf conservation in the Northern Rockies.

Important: Defenders of Wildlife Action Fund will be closely tracking the number of calls in order to ensure that our voices are heard on this important issue. Please make sure to let them know that you called.

Our wolves can’t speak out, but we can! Secretary Salazar’s wolf rule could appear in the Federal Register as soon as this week, paving the way for the massive killing of wolves next month.

Please call the US Fish and Wildlife Service today at 1-800-344-9453 and let federal officials know that you oppose efforts to eliminate vital protections for these wolves.

We don’t have much time to prevent the killing, but with your help, I know that we can save the lives of these special animals.

Thanks!

P.S. After you call the Fish and Wildlife Service at 1-800-344-9453, please make sure you tell Defenders of Wildlife Action Fund about your call.

More Information about Salazar’s Plan

  • Salazar’s decision violates the Endangered Species Act and allows more than 1,000 out of the roughly 1,500 wolves in the region to be killed.
  • Delisting wolves is contingent upon two things that have not yet been achieved: 1) The U.S. Fish and Wildlife Service's delisting plan must be based on current, credible science that ensures a healthy wolf population level that is sustainable and well connected. 2) All of the states in the delisting area must have wolf management regulations that provide for a sustainable and well connected wolf population after federal protections are lifted.
  • Salazar’s decision fails to adequately address biological concerns about the lack of genetic exchange among wolf populations in the Northern Rockies. These concerns led a Federal court to overturn the same delisting rule late last year when the Bush Administration issued it. Salazar's decision also fails to address concerns with Idaho’s state wolf management plan and regulations that undermine the goal of a sustainable wolf population by killing massive numbers of wolves.

###

Defenders of Wildlife is dedicated to the protection of all native animals and plants in their natural communities. With more than 1 million members and activists, Defenders of Wildlife is a leading advocate for innovative solutions to safeguard our wildlife heritage for generations to come. For more information, visit www.defenders.org.

12 April 2009

Breaking the silence about Spring


Did you know that in 1965 the U.S. Department of Agriculture planted a particular variety of lilac in more than seventy locations around the U.S. Northeast, to detect the onset of spring — in turn to be used to determine the appropriate timing of corn planting and the like? The records the USDA have kept show that those same lilacs are blooming as much as two weeks earlier than they did in 1965. April has, in a very real sense, become May. This is one of the interesting facts that you’ll read about in Amy Seidl’s book, Early Spring, a hot-off-the-press essay about the impacts of climate change on the world immediately around us – the forest, the birds, the butterflies in our backyards.

The brilliant title of Seidl’s book was one of the reasons that it caught my attention. The other was that I have realized I need to better educate myself about the impact of climate change on everyday life. I’ve been dismissive of the idea that the average person can really detect the impacts of recent warming on, for example, the timing of the apple-blossom season, but I’ve been taken to task by several of RealClimate’s readers for this. If you are paying attention, they have argued, the changes are actually rather obvious.

Of course, Amy Seidl is not the average person. Rather, she’s a trained ecologist with a Ph.D. (as well as an avid gardener) and she’s clearly paying extremely close attention. Her book is the first one I have read that effectively brings home the tangible impacts that global warming will have – is having – on our everyday lives. “We are increasingly familiar,” she writes, of images of melting glaciers, “but how do we give them relevance in our lives? From my window I see no glaciers.” She answers her own question with a series of vignettes, some from her own experiences, many more from her extensive research (well referenced throughout the book).

Cardinals, robins and cowbirds are all arriving earlier in Vermont than they did a century ago. Kingfishes, fox sparrows and towhees are not. Why the difference? The answer, as Seidl explains, is that the former group has the ability to respond ecologically to the changes, because these birds cue their arrival to temperature. The latter, it appears, respond more directly to temporal cues, that won’t change even as climate does. It’s obvious from this example that the make up of bird life in Vermont – the species distribution – will change over time. This may not necessarily be a bad thing of course. On the other hand, it turns out that the robins are the most important host for West Nile virus; the early bird gets the worm, so to speak, and passes it along to humans.

Maple seedlings need about 100 days of below-freezing weather. As this becomes rarer, fewer maples will populate the forests. This, Seidl explains, is why species-range models predict the decline and eventual loss of sugar maple (at least in New England) in the future. But, she notes, the models don’t take into account the full complexity of the system, such as the impact of competition among different species. So we don’t really know what will happen, or how fast. What we do know is that maple-sugar farmers have noticed – and documented – an earlier maple sugaring season over the last few decades.

There are many other examples in Early Spring both of clear climate-related changes (such as the early arrival of robins), and of less clear-cut changes (the maple sugaring season). Seidl doesn’t make the common mistake of assuming that the more ambiguous examples are necessarily due to climate change. For example, she quotes a maple-sugarer who points out that technological changes have allowed them to tap maples earlier, and hence that the timing of sugaring is a weak measure of climate change. The point though, is that even rather minor changes are, after all, being noticed. And if much larger changes do occur, as predicted, they will most certainly have impacts we can’t ignore, even if we don’t live in the Arctic or in Bangladesh. In other words, Seidl tells us, listen to the farmers and gardeners, and the observations of regular people: they are meaningful.

The soberness of Seidl’s approach to the subject of climate change impacts contrasts starkly with that of many books before it. It couldn’t be further, for example, from Mark Lynas’s book, Six Degrees, which is a truly alarming read. In my comments on Six Degrees, I said that it wasn’t an alarmist book. I stand by that characterization, because – and this is what I liked about it – it doesn’t go beyond what is in the scientific literature. However, while Lynas’s book is a straightforward reading of the scientific literature, it is a somewhat uncritical one, and hence tends to emphasize what might happen in the future over what will happen; this is a point that many readers of my review seem to have missed. Seidl’s book, on the other hand, is focused on the more certain – and often less dramatic — things, and on the impacts we are likely to see in our own lifetimes.

The calm demeanor of Seidl’s book, and the very personal nature of it, could lead one to think that it is primarily just a philosophical reflection on the climate change story. Indeed, Bill McKibben, in his introduction to Early Spring, says that in the face of changes we may not be able to prevent, “one of our tasks is simply to bear witness”. Certainly, the book is partly that. But Seidl’s voice, like Rachel Carson’s before her, has the authentic and authoritative voice of a scientist, made all the more compelling for being very much rooted in the author’s own story and experiences. And she doesn’t pull punches when she has something definitive to say: “One thing is clear:” she writes, “we will not be able to manage the climate”.

Early Spring has the potential to be immensely influential, a real turning point in the popular appreciation of climate change impacts among laypersons and scientists alike. Read it.

06 April 2009

The Amazing Benefits of Grass-fed Meat

By Richard Manning from Mother Earth News

Converting cropland to perennial pastures produces healthier meat, builds better soil and combats climate change.

I have been fascinated by the permanence and healing power of grassland for 15 years now. If we respect the great original wisdom of the prairies, I’m convinced we can heal the wounds inflicted on the American landscape by industrial agriculture.

But in America, the question is always does it scale up? This is the critical test of any potential solution to a major environmental problem. Is a given practice feasible, and are there mechanisms for spreading it to cover a whole landscape?

I first had a hint as to how this might work for America’s farms when a friend explained to me why he chose to raise bison for slaughter, marketing the meat with the guarantee the animals had eaten nothing but native grasses. He thought if he could make such a model pay on his own land, he could do more to save native landscapes than any amount of activism, litigation or regulation. Profitable solutions self-replicate. Like viruses, they creep from one farm to the next, eventually exploding in exponential growth. They scale up.

Now there is big news on this front. A diverse collection of pioneers across the nation is raising not bison, but mostly grass-fed beef and dairy — an enterprise that can scale up quickly. They have a working model. It is not unrealistic to expect that we as a nation could convert millions of acres of ravaged industrial grain fields (plus millions of acres of land in federal conservation programs that cannot currently be used for grazing) to permanent pastures and see no decline in beef and dairy production in the bargain.

Doing so would have many benefits. It would give us a more humane livestock system, a healthier human diet, less deadly E. coli, elimination of feedlots, a bonanza of wildlife habitat nationwide, enormous savings in energy, virtual elimination of pesticides and chemical fertilizers on those lands, elimination of catastrophic flooding that periodically plagues the Mississippi Basin, and most intriguingly, a dramatic reduction in global warming gases.

The Grass-fed Beef Boom

The best evidence of this potential meat production revolution is a label that began showing up on packages of grass-fed beef across the nation early in 2009. The American Grassfed Association, a network of almost 400 graziers, is behind this effort. The label certifies the beef came from cattle that ate only grass from pastures, not feedlots; received no hormones or antibiotics in their feed; and were humanely raised and handled. It signals the emergence of a marketing network that already has placed grass-fed products in virtually every region of the nation in co-ops, health food stores and, in the case of the Southeast, in Publix Super Markets, a chain of more than 900 stores. The grass-fed label is evidence that the idea has reached critical mass. It’s been a long time coming, but what is driving it is profit, plain and simple.

Todd Churchill runs Thousand Hills Cattle Co. in Cannon Falls, Minn., which buys about 1,000 head a year from local producers, then processes and sells them to natural foods stores, restaurants and three colleges in the Twin Cities area. He says demand for his product always exceeds supply, and he sees no leveling for its growth curve.

Churchill’s operation is, in fact, a sort of model, a regional company that buys animals from a handful of graziers and meets a local need. Carrie Balkcom, executive director of the Grassfed Association, says consumers can now find quality grass-fed beef just about anywhere in the United States. All of this has been fueled by demand. Consumers are willing to pay a premium for grass-fed beef and other meat simply because they know it’s healthier than its conventional grain-fed counterpart, and because they don’t like the filth, cruelty and antibiotics inherent in the “concentrated animal feeding operations” that are now so prevalent.

The health claim is not speculation. Grass-fed beef and dairy products are leaner, but more importantly, lower in omega-6 fats that are linked to heart disease. Grass-fed meat and dairy products also are higher in beneficial omega-3 fats and conjugated linoleic acids. Both reduce the risk of heart disease.

Besides, grass-fed beef tastes better. I know because I eat it. However, it only tastes better if it’s raised right. Churchill tells me that when he first considered going into the business, it was because he missed the taste of beef he remembered as a child. So as an experiment, he bought two quarters of grass-fed beef from local farmers. One was the best he had ever eaten; the other so rank he fed it to the dogs.

To be sure, there currently are variables in the quality of grass-fed beef, for instance, genetics. A major problem for today’s graziers is that the industrial beef system has monopolized the gene pool, and for more than 50 years has selected for cattle that are adept at standing in a feedlot and eating grain as efficiently as possible. It may sound odd to say so, but this has left us with cattle not very good at eating grass. That’s pretty much all cattle ate from domestication 8,000 years ago until mid-20th century. But Churchill says it’s virtually impossible to find Herefords, the classic beef animal, that finish well on grass. His operation has done best with Red Angus, and over the years, he has been able to select for a set of traits that now yields animals that fatten well on grass. This selection for appropriate genetics is a key element in building the infrastructure of a scalable solution. We now have the correct foundation traits.

Better Grass and Rotational Grazing

The most important factor in quality beef, however, is the quality of the grass itself. Specifically, the grass should have a high sugar content. That quality is not automatic. It is not as simple as pointing cows at pasture and waiting for results. In fact, a trained eye will notice a similar scene at virtually any modern grass-fed beef operation: a couple of strands of electric fencing running around a bunch of cattle grazing in a clump. In fact, you could argue that the current revolution in grass-fed beef would not be possible without poly-wire electric fencing, which is cheap and easy to move.

For thousands of years, the dominant big grazer of North America was the American bison. It is the rule of co-evolution that when species evolve together they come to thrive on each other’s presence, and this is true of bison and the grasses, forbs and shrubs of the American landscape. But great herds of migrating bison grazed very differently than the way cattle graze on pasture today.

This has led graziers to develop a system that has many names but is often called “managed intensive rotational grazing.” Many people think of intensive grazing as negative, because we’re so accustomed to seeing the erosion that results from destructive overgrazing. But, intensive grazing is actually beneficial for grassland. It works this way: Graziers use the temporary electric fences to confine a herd of perhaps 50 calves or steers to an area the size of a small suburban front lawn for a short period, often as short as a half a day. Then the grazier arranges the easily movable fence to surround an adjacent small plot, on through a series of paddocks in a cycle of maybe 30 days, depending on conditions.

The result is the cattle graze all the plants down to a few inches, and then are moved to fresh grass. Each paddock is allowed to rest until the grass fully recovers. This roughly simulates the tactics of bison and in turn stimulates sweet, highly nutritious and palatable new growth, controls weeds and promotes biodiversity. In short, intensive grazing forces cattle to graze grassland the way bison used to.

Go With Grass, Not Grain

Churchill’s producers are raising cattle this way on converted corn and soybean land in Minnesota, which is a bit like building a mosque at the Vatican. They take this plowed-up landscape and plant it to permanent pasture — permaculture modeled on the tallgrass prairie that was the native cover. Many of Churchill’s producers, in fact, don’t own tractors; they don’t need them. It takes a couple of years for the land to recover sufficiently to produce high-quality beef, but it does recover. And after that initial setup, his producers begin showing a profit; in fact, more profit than the corn and soybeans yielded before. Part of this is a result of lower or no costs for inputs such as fertilizer, fuel, pesticides and machinery. This profit is one of the factors that will allow this system to scale up.

Churchill says that on properly recovered land, he can finish about two steers per acre. That is almost precisely the acreage it takes to grow the grain to finish those same steers in a feedlot. This whole system makes economic sense, acre by acre. More than half of our total grain crop goes to feed livestock, so it follows that we can convert half of the 150 million acres used to grow corn and soy  to permanent pasture and lose not one ounce of meat production. At the same time, we can produce healthier meat and shift the massive federal subsidies for corn and soybean production to a better use.

Yet there are even more benefits to intensive grazing systems. Consider that the upper Midwest was flooded in the spring of 2008, an inundation that caused catastrophic dislocations, massive erosion of topsoil and billions of dollars in damages. This is the landscape of corn and soy agriculture. Iowa, for instance, has been almost wholly converted to row-crop agriculture, maintaining only about 1 percent of its native habitat, which was largely prairie and oak savannah. A plowed field sheds rainwater almost as fast as a parking lot does; the soil can absorb, at most, about 11⁄2 inches of rain in an hour. A permanent pasture can suck up as many as 7 inches of rain in an hour. That’s the difference between floods and no floods.

Most astonishing of all is what happens after the land is restored to grassland. Grass, like most plants, reacts to changing conditions. It builds a root system to support its leaves and stems, but when a cow munches off the top of the plant, there’s not enough energy left to support all its roots. The plant reacts by sloughing roots, then builds back deeper roots as aboveground parts regrow.

Deep rooting is, in fact, an overlooked factor here. All of our row crops are shallow-rooted and so for generations they have worked a narrow layer of the soil. Constant harvesting of these crops has depleted this topsoil of essential elements such as magnesium and calcium. As a result, both are now lacking not only in our diets, but also in the diets of livestock. This is a human health issue, but veterinarians say it also creates a mineral imbalance in grain-fed livestock that lies at the root of many of their health problems. In contrast to shallow-rooted row crops, deep-rooted grasses dig down to fresh minerals. Those minerals then become available to everything up the food chain, supporting the overall health of the entire system.

The roots that are sloughed-off after every grazing rotation are equally important; they become decaying organic material that feeds microorganisms, restores subsoil health, creates water-absorbing voids, and ultimately steadily increases the organic matter — or carbon content of the soil. There are big implications here both for building fertile soil and fighting climate change.

Using Intensive Grazing to Store Carbon

When American settlers first busted Midwestern prairies, they worked highly fertile virgin soil that was about 10 percent organic matter. On average, 150 years of agriculture has cut that vital organic matter by more than half and released huge amounts of carbon dioxide, the leading driver of global warming, into the air. Permanent pastures managed correctly can tap solar energy to pump about 1 percent of organic matter back to the soil each year. If we convert from grain-fed to grass-fed meat, we can turn millions of acres of row crops into carbon sinks, and use permanent pasture to pull carbon dioxide from the atmosphere and slow global warming, as well as conserve water.

The carbon balance of any given enterprise is a complicated matter. We’ve understood some of this in looking at the carbon footprint of farming, but in fact, we have not made it complicated enough. There is a complex energy stream feeding industrial agriculture, both in fuels for transportation, tillage, storage and processing, and also in the natural gas used to make chemical fertilizers. All this makes modern industrial agriculture energy intensive and therefore gives it a pretty big carbon footprint.

Yet focusing only on the energy flow of farming greatly understates the problem, because it doesn’t take into consideration the natural vs. unnatural cycling of organic matter. In corn and soy production, tilling adds oxygen which causes organic matter to decay, or oxidize, and be released to the atmosphere as carbon dioxide. Researchers have taken a closer look at this and found that tillage not only releases carbon dioxide, but also methane and nitrous oxide (both greenhouse gases that contribute to global warming). True enough, a growing corn field sucks up a lot of carbon dioxide, but then releases it all back almost immediately when the disced down stalks and leaves decay. Without exception, all of the tillage systems examined in one study published in Science were net contributors to global warming, and the worst offenders were the annual crops corn, soybeans and wheat farmed with conventional methods. Meanwhile, fields of perennial crops in the same study pulled both methane and carbon dioxide from the atmosphere and stashed it safely in the soil. There is even some evidence that perennial grasslands are, under certain conditions, even better at sequestering carbon than forests.

A conventionally farmed corn or soybean field is a source of global warming gases, but a permanent pasture is a pump that pushes carbon back into the soil where it increases fertility. Even though we harvest meat from the pastures each year, still the soil grows richer and holds more carbon. We get all these benefits thanks to solar energy, plant photosynthesis and natural cycles of grasslands and grazing animals.

So just how powerful could this tool be, were we to think as big as transforming American agriculture? Collecting data on the carbon storage potential of intensive grazing involves numerous variables, and overall estimates are not yet available. But using figures for annual and perennial crops reported in the recent Scientific American article “Future Farming: A Return to Roots?” we can get a rough idea of what effect the grassfarming revolution could have on global warming. Production of high-input annual crops such as corn and soybeans release carbon at a rate of about 1,000 pounds per acre while perennial grasslands can store carbon at roughly the same rates. This suggests that if we converted half the U.S. corn and soy acres to pasture, we might cut carbon emissions by roughly 144 trillion pounds, and that’s not even counting the reduced use of fossil fuels that would also result. That’s not a bad side benefit to a transformation that makes sense on so many other levels as well.

A conversion on an enormous scale is not out of the question. In fact, we have already done a massive land use change just in recent decades. After the great plow-ups of the 1970s and ’80s (conducted at the federal government’s urging) the country saw an enormous increase in soil erosion, so taxpayers began paying farmers to plant the most highly erodable acres back to grass. This Conservation Reserve Program (CRP) now costs us about $1.8 billion a year, and peaked at a total of about 36 million acres a couple of years ago. That’s exactly the sort of scale we need.

Intriguingly, though, the rules prohibit grazing on CRP lands under ordinary conditions. Imagine what could be accomplished with some creative changes in the rules to allow carefully managed grazing and connect CRP to the market driver of grass-fed beef and dairy!

All this raises the very point missed by industrial agriculture. Intensive rotational grazing offers a corrective to the narrowing diversity on the farm landscape. We are slowly learning that human enterprises work best when they mimic nature’s diversity. Early on, especially in organic farming and with the rise of vegetarianism, we began thinking we could approach that diversity by raising a variety of a dozen or so tilled crops (never mind that an acre of pure prairie contains hundreds of species of plants). But it seems obvious now that this line of thinking needed to step up a couple of levels on the taxonomic hierarchy. Why did we think we could in any meaningful way mimic nature’s biodiversity by excluding the animal kingdom?

Over the years, organic farmers have told me they relearned this important point: Many found out the hard way that they could not make their operations balance out — both biologically and economically (they’re the same in the end) — without bringing animals back into the equation. Handled right, animals control weeds and insects, cycle nutrients, and provide a use for waste and failed crops. Healthy ecosystems — wild and domestic — must include animals. Now there’s a chance we may realize how very important this idea is to the life of the planet.


The Multiple Benefits of Grassfarming

  • More humane animal treatment
  • More nutritious meat and dairy products
  • Reduced flooding and soil erosion
  • Increased groundwater recharge
  • More sustainable manure management
  • Less E. coli food poisoning
  • More fertile soil and more nutritious forages
  • More diverse and healthier ecosystems
  • Reduced use of chemical fertilizers and pesticides to grow unsustainable corn and soy

Considering Cattle Burps

Any discussion of cattle and the environment will move quickly toward the unsavory subject of belching. Simply put, during digestion, a cow’s rumen breaks down lignins in feed, releasing methane, which happens to be 24 times more potent than carbon dioxide as a greenhouse gas. So would a grass-fed beef and dairy system mean more methane?

Not necessarily. First, I am not arguing for an increase in numbers of cattle, just moving the existing numbers from filthy feedlots to pastures. So the real question is, do cows produce more methane on grain or on grass?

There are studies to suggest grain produces less methane, but those studies, by and large, compare conventional pastures with feedlots. However, conventional pastures contain high-fiber, low-quality forage, which produces more methane. On the other hand, studies of rotational grazing have shown decreases of as much as 45 percent in methane production, when compared with conventional pastures. All studies seem to agree cows produce less methane when nutrition is best, and the very reason for rotational grazing is to improve forage quality.

Nor do those studies take into account such factors as methane produced by corn and soybean cultivation, which we know is significant, as well as releases from manure festering in feedlots, as opposed to manure cycling immediately into pasture soils.

To further complicate matters, singling out cattle blames them for their position in the grand cycle of nutrients. Remove them from the food chain, and other methane-producing organisms — termites, deer, elk, grasshoppers, not to mention an unimaginable array of microbes — would cheerfully assume the niche.

The world is a big place and cows are a small part of it. Stated another way, in 2004, ruminants — cattle, sheep and goats — accounted for only about 1.6 percent of the total greenhouse gas emissions in the United States. A massive expansion of rotational grazing is not likely to increase that number by much and could well reduce it. It certainly would reduce carbon dioxide to a much larger degree, and would lead to a net reduction of our greenhouse gas emissions. No doubt, at least some environmental good would come from reducing the world’s consumption of beef, but the trend is in the opposite direction. Humans and cattle have worked together for almost 8,000 years, and that is not likely to change soon. But there’s no reason we shouldn’t learn to raise cattle better.


Resources

Eat Wild
Learn more about the benefits of grass-fed meat and find local sources for grass-fed products.

Polyface Farms
Grassfarmer Joel Salatin’s website includes information about his farm and his books on pasture-based livestock.

The Stockman Grass Farmer
Subtitled “The Grazier’s Edge,” this publication is the go-to source for information on grassfarming.

ATTRA
The National Sustainable Agriculture Information Service provides detailed information on rotational grazing and sustainable pasture management.


Richard Manning is the author of eight books, including Rewilding the West and Against the Grain. He lives in Missoula, Mont.

30 March 2009

Food scare! Would new food-safety legislation 'criminalize organic farming'?


By Tom Philpott from Gristmill

The Internets are abuzz with accounts of a House bill, allegedly sponsored by Monsanto and pushed through Congress by its lackeys, that would "criminalize organic farming" and even backyard gardening. The object of frenzy: H.R. 875, known as the Food Safety Modernization Act of 2009, a bill that attempts to bolster the broken food-safety system.

Here's how one critic, whose work circulates widely on sustainable-food listservs, characterizes it:

The bill is monstrous on level after level -- the power it would give to Monsanto, the criminalization of seed banking, the prison terms and confiscatory fines for farmers, the 24 hours GPS tracking of their animals, the easements on their property to allow for warrantless government entry, the stripping away of their property rights, the imposition by the filthy, greedy industrial side of anti-farming international "industrial" standards to independent farms -- the only part of our food system that still works, the planned elimination of farmers through all these means.

Wait, did she just say "the planned elimination of farmers"?

I've been reading hysterical missives about H.R. 875 for weeks. I could never square them with the text of the bill, which is admittedly vague. For example, the bill seeks to regulate any "food production facility" which it defines as "any farm, ranch, orchard, vineyard, aquaculture facility, or confined animal-feeding operation."

But then again, the USDA already regulates farms. And "24 hours GPS tracking of ... animals"? Not in there. "Warrentless government entry" to farms? Can't find it.

More recently, reading around the web, I found more reasoned takes on H.R. 875. The bill may not be worth supporting -- and from what I hear, it has little chance of passing. But it hardly represents the "end of farming," much less the end of organic farming. The Organic Consumers Association, an energetic food-industry watchdog, recently called the paranoia around H.R. 875 the "Internet rumor of the week."

The Organic Consumers Association has this to say:

The Organic Consumers Association is not taking a position for or against this bill, but encouraging its members to write to Congress to urge it to enact food safety legislation that addresses the inherent dangers of our industrialized food system without burdening certified organic and farm-to-consumer operations.

Quite sensibly, the OCA wants Congress to avoid "one-size-fits-all legislation." Regulations that make sense for a 1000-acre spinach farm could push a diversified operation that includes spinach in its crop mix out of business. Sustainable-food advocates should oppose H.R. 875 until it adds scale-appropriate language.

But effective opposition does not mean indulging in fictional rants about it. There's no evidence that the bill aims to end farming; insisting that it does destroys credibility.

Meanwhile, Food & Water Watch, a group that does generally excellent work, has issued a statement debunking myths around H.R. 875. Anyone who's been lashed into a frenzy by doomsday accounts of this bill should read the F&WW statement.


23 March 2009

Breathing Queasy: Improving Indoor Air

by Laura Sevier, from the Ecologist

So much for home sweet home. When it comes to air quality, chances are you’re better off wandering the fume-filled streets of any major city than sitting at home in front of the television.

Take your favorite sofa, for instance. Particles of the fabric can abrade and be taken up by your nose, mouth, and lungs. These particles are likely to contain “mutagenic materials, heavy metals, dangerous chemicals, and dyes that are often labeled as hazardous by regulators—except when they are presented and sold to a customer,” write German chemist Michael Braungart and American architect William McDonough in Cradle to Cradle: Remaking the Way We Make Things.

Braungart has performed experiments on everyday products to analyze their gaseous emissions. Some of the worst offenders include vinyl wallpaper and flooring, laser printers and photocopy machines (the toner dust can easily be inhaled), glues, paints, and household appliances. He’s concluded that indoor air is, generally, much worse than outdoor air. “Inside, you have chemicals in a sealed building,” he says.

It’s a view supported by a growing body of scientific evidence. The U.S. Environmental Protection Agency (EPA) first blew the whistle on poor indoor air quality in 1987; the U.K.’s Building Research Establishment published devastating findings in 1996. And yet, while there are standards for pollutants in outdoor air, still there are none for indoor air.

Most indoor air pollution comes from sources inside the building. Nearly everything we use sheds particles or gives off gases, particularly when it’s new. The stuff and staples of daily life—carpets, upholstery, manufactured wood products, electronic devices, cleaning supplies—emit volatile organic compounds (VOCs). VOCs are liquid or solid substances that turn into or emit gases at room temperature (a process known as off-gassing). They are the most common type of gases found indoors. Adverse health effects can include eye, nose, and throat irritation, headaches, loss of coordination, nausea, and damage to the liver, kidneys, and central nervous system. Some are known or suspected carcinogens.

We spend 90 percent of our time indoors, according to the EPA. In homes, offices, schools, or shops. Awake with our families, friends, and coworkers, or sleeping in our beds. Everything in the air ends up in our bodies, so good-quality air is of vital importance.

In a sentence: We are what we breathe.

The good news is there’s plenty you can do to improve the quality of your indoor air.

Freshen up the air—naturally. Unless you live next to a highway, the cheapest and most effective way to allow fresh air in and toxic air out is to open a window. Ban air “fresheners,” a source of VOCs, and use natural odor eaters such as a bowl of baking soda or naturally fragranced alternatives. Avoid using perfumes, deodorants, and products containing parfum, a catchall term that hides the identities of dozens of potentially persistent or allergenic chemicals.

Clear out cleaning chemicals. Recent studies have linked cleaning sprays with a new surge of asthma in adults, and have tied use of cleaning products by pregnant women to their children’s persistent wheezing in early childhood. Use products made from natural plant ingredients or experiment with simple cleaning solutions made from lemons, vinegar, and baking soda.

Suppress breathable particles. Dust is just dust, right? Wrong. A 2002 Greenpeace U.K. analysis of house-dust samples vacuumed from 100 homes showed that hazardous chemicals such as phthalates, brominated flame retardants, and alkylphenols were widespread contaminants. Regular cleaning can help keep down levels of breathable particles along with dust mites, pollen, and other allergy-causing agents. Keep humidity to a minimum, too, to discourage the growth of mold—which has the potential to cause allergic reactions when it is inhaled.

Plug into plant power. Living green plants can remove toxic chemicals including formaldehyde, benzene, and carbon monoxide from the air, according to a two-year study by NASA scientists. [Check out “Leafy Clean” on p. 73 for suggestions on the best plants to cleanse indoor air and how to care for them.]

Control contaminated carpet. A 2001 Greenpeace U.K. report, “Poisons Underfoot,” found that new carpets contain significant levels of flame retardant chemicals, pesticides, and formaldehyde. Carpets also are reservoirs for dust. Choose carpets and rugs made from natural fibers like organic wool or cotton, coir, or jute, but check to make sure they haven’t been treated with unnecessary chemicals or glues. Avoid toxic cleaners; use a steam cleaner instead. And always take off your shoes at the door to keep dirt and bacteria from the streets at bay.

Know what not to paint with. Conventional paints can include polyurethane, polyvinyl chloride, and VOCs. Choose natural and nontoxic water-based or clay-based paints instead. [Utne Reader illuminated ecofriendly paints in its July-Aug. 2006 issue. Read “A Cleaner Coat” online at www.utne.com/Paint.]

Place electronics carefully. Ban electrical appliances from the bedroom. A computer, for instance, contains toxic gases, metals, acids, plastics, and chlorinated and brominated substances. The dust from some printer toner cartridges contains harmful substances such as nickel and mercury. Greenpeace’s online “Guide to Greener Electronics” ranks the top manufacturers.

Protect babies and children. Expecting a child? Go easy when you’re creating a nursery. Often people paint walls and put in new carpets and curtains—so when the baby arrives it ends up in a room full of off-gassing substances and products. Instead of plastic playthings, consider handcrafted natural wooden toys in water-based colors, finished with natural oil blends.

Choose better bedding. Traditional mattresses and pillows are often packed with synthetic chemical batting and made from equally toxic fabric. Cut down on off-gassing where you sleep by choosing chemical-free natural latex, coir, or wool mattresses and organic cotton bedding.

Excerpted from the Ecologist(Nov. 2008), a London-based publication of environmental news and issues; www.theecologist.org.

15 March 2009

The Little Things That Run the World

By Ron Sullivan and Joe Eaton (from SF Chronicle, April 2, 2008)

Here's another opportunity to do your bit for science without leaving your yard.

San Francisco State University biologist Gretchen LeBuhn wants you to grow a sunflower - not just any old sunflower, but the North American native species Helianthus annuus - and monitor the bee traffic once it blooms. It's called the Great Sunflower Project, and with it LeBuhn hopes to connect the ecosystem services of bees with issues of food security.

LeBuhn started out as a botanist but became fascinated with bees. When teaching a bee-identification course at the Southwest Research Center in Arizona, she realized how little most people know about this diverse (1,500 species exist in California, 500 in the Bay Area) and ecologically vital group.

Honeybees are declining

"There's very good data that honeybees seem to be declining, and spotty data that native bees aren't doing well," she said. Several researchers, including Gordon Frankie at UC Berkeley, have been studying urban bee communities. But no one had attempted a continentwide survey of the state of the bees.

LeBuhn, who provides the seeds, wants Great Sunflower Project participants to use a specific kind of sunflower so their observations can be standardized. H. annuus is "a classic bee plant." Its long blooming season - potentially May to September - should attract a broad range of native bees that fly at different times of the year.

"Sunflowers are easy to grow, easy to watch bees on, and bees love them," she added. Schools, including San Francisco's Willie Brown Academy, and community gardens will have their own patches.

Bee watchers will be asked to spend half an hour - early in the day, before the pollen is depleted - on two Saturdays each month taking note of what kinds of bees visit their sunflowers and how long it takes for the first five to arrive. The identification part has been field-tested.

"We're comfortable that people can identify bumblebees," LeBuhn said, "and honeybees possibly." Other possibilities are large, solitary, shiny black carpenter bees and green "metallic" bees. Reporting "just bees" is fine, though. The time the bees spend at the sunflowers indicates how much pollination service the flower is getting.

That's where the food-security connection comes in.

"Worldwide, community gardens provide up to 15 to 20 percent of food," explains LeBuhn. "For the urban poor in some countries, 60 to 80 percent of their food is what they raise. It's often the only material contribution women can make to the household economy. I'm interested in whether community gardens are getting enough pollinator services in urban settings."

Although it may not be the norm in the Bay Area, she said, community gardens in other countries can have high pesticide use - and beneficial insects like bees are not immune to pesticides. If funding is available, she'd like to take the Great Sunflower Project international.

Population problems

Honeybees beset by the mysterious colony collapse disorder have been in the headlines, but LeBuhn notes that some of North America's bumblebees are also in trouble. UC Davis Professor Emeritus Robbin Thorp said at least one species, the Franklin's bumblebee (Bombus franklini) of Northern California and southern Oregon, may already be extinct.

Thorp spends his summers searching for B. franklini in its narrow zone of distribution between the Coast Range and the Cascades-Sierra. Last year, he found none; in 2006, a single worker at Mount Ashland in Oregon. Franklin's bumblebee is a generalist, gathering pollen from lupines and poppies and nectaring at mints. The plants are still there, but the bee has gone missing before it could be listed as endangered.

"The western bumblebee, a close relative of Franklin's, was once common from Monterey County to southern British Columbia," Thorp said. "They are virtually undetectable in those areas now." Some eastern bumblebees are also declining.

Victims of success?

North American bumblebees may be victims of their success as pollinators; for certain crops, they're better than honeybees. The bumblebee's secret is the ability to vibrate its body by using its wing muscles, causing pollen release through pores in a flower's stamens.

"Buzz pollination" is crucial for hothouse tomatoes and peppers. Cranberries, strawberries and blueberries are also bumblebee-pollinated - all told, said Thorp, 15 percent of our food crops, valued at $3 billion.

Unlike honeybees' hives, bumblebee colonies die off annually, leaving newly mated queens to overwinter and start the cycle again in spring. The bumblebee trade has gone global, with North American queens shipped to Europe to rear colonies. "When the colonies were shipped back to us, I suspect they may have picked up diseases from European bumblebees," Thorp said. The main suspect is the microorganism nosema, present in commercial Western bumblebee stocks since 1998.

It's sobering to realize just how dependent we all are on pollinating insects, native and otherwise. LeBuhn's Great Sunflower Project might start to fill large gaps in our knowledge of what Edward O. Wilson calls "the little things that run the world."

Resources:

-- The Great Sunflower Project: www.greatsunflower.org. Includes a bee identification guide, to be published soon in book form.

-- Urban Bee Gardens: nature.berkeley.edu/urbanbeegardens. Gordon Frankie's site.

-- Xerces Society Red List of Pollinator Insects: links.sfgate.com/ZCWD. The Xerces Society supports conservation of insects and other invertebrates. Its Red List identifies pollinators at risk.

-- "The Forgotten Pollinators" by Stephen L. Buchmann and Gary Paul Nabhan (Island Press; 1996; $30, paperback).

09 March 2009

Ten Tips for Budding Young Conservationists

Written by Sanjayan from Cool Green Science

“What skills do I need to get a job in conservation”?

I visit dozens of states and speak to literally thousands of people each year, often students. Perhaps unsurprisingly, the one question I get over and over again revolves around preparations for a job in conservation. Unfortunately, my answers are not always timely enough for those on the verge of graduation.

I think about my own preparation for a life in conservation and it’s a minor miracle that I actually managed to pick up some useful skills for my role as the lead scientist for one of the world’s largest international conservation organizations. It certainly was not premediated. And even though I went to good schools, and studied fairly hard, my selection of classes was based on archaic academia-driven criteria at best — and random at worst.

I sometimes teach in the College of Forestry and Conservancy at the University of Montana. The program is considered to be one of the best programs in the United States for big animal conservation.

Recently, senior students in a mandatory upper-division wildlife ecology class asked me to give them some tips of preparing for a career working in international conservation. So, seizing the chance of proactively guiding the development of our next generation of conservation leaders, this is what I told them — my “top 10” most important skills to pick up in school (undergrad or graduate school) for a successful career in conservation.

In no particular order:

1. Basic Ecology. Basic knowledge is fine here. If you know what island biogeography is, you are fine. True, our ranks are filled with business types and lawyers, but still, the majority of our staff have some training in ecology.

2. Economics & Sociology. Conservation is as much about people as it is about wildlife. Understanding economics or business through some basic intro classes is crucial.

3. Natural History. Know one group well. It could be birds, plants, mushrooms — which one is not really important, but having a passion for one is. It allows you to see the natural world from a different perspective.

4. Story Telling. Be a strong communicator — develop good writing and speaking skills. Things like Toastmasters, being a TA in class and writing fiction really help.

5. GIS Skills. So much of what we do is spatial, and being able to create and navigate around spatial data is a valuable and employable skill.

6. Foreign Language Proficiency. Any language gives you a feel for working in other cultures, but the most useful language is Spanish. Asian languages have numbers on their side, but English is spreading in Asia fast.

7. Managing People. Lead a field crew or be the team lead in a lab project — but know how to motivate and lead people. You will be doing it a lot in the real world.

8. Be Web Smart. Create a Facebook/MySpace page, blog, and use Twitter — know what social marketing is and how to network on the web. You might hate it, but the web — or rather, the many webs of social networks and different Internet vehicles — is the way huge numbers of people are communicating.

9. Basic Statistics. Statistics is the way the world is described. Take at least two statistics classes as an undergrad. If you have a choice, drop calculus for statistics. Most people never actually USE calculus — but you see statistics every day all around you, from polls to the stock market. Everyone (not just biologists) should take a stats class.

10. Community Engagement. Learn how to work with local communities (ranchers to school kids) by doing one simple thing that engages a local community — being a community organizer can have all sorts of advantages.

After going over this list with my class. I asked who felt they had these skills — indicated by a show of hands. Unsurprisingly, basic ecology and basic natural history were common to all. This is a group of wildlife students, after all.

Surprisingly, many people felt they had good communicating skills (10 of 15), but I suspect this is simply wistful thinking — I find most US college students barely able to write and with no ability to give talks or speeches. Why? Because they never get a chance to do so in college.

About one-half had GIS and statistics skills and one-third of the students knew another language. Unsurprisingly, only one-third of the students had taken an economics course, despite the economy being the biggest factor influencing conservation.

What truly shocked me is that only five out of the 15 students had ever blogged, been on Facebook, Twitter, etc. Many scoffed or laughed when I expressed shock. To them it was a matter of pride that they avoided such “trivial” forums.

When I reminded them that Barack Obama has 275,000 followers on Twitter and that Lance Armstrong, in the midst of racing in California still has time, from his motel room, to send out “tweets” including reporting on his recently stolen and then-recovered bike (recovered thanks in part to Twitter), I could see, perhaps, a glimmer of interest in their eyes.

We are currently developing our next generation of leaders for the conservation movement. Most of them will not work in academia, but rather for government institutions, the private sector and conservation organizations like The Nature Conservancy. But the skills they are learning in school is poor preparation for what the real world has to offer.

Though potentially well grounded in sciences, their ability to translate that science into something meaningful to the lay public is entirely missing. Without this, they will once again be preaching to the choir.

02 March 2009

Birds of America - Canaries in the Climate Change Coal Mine?

By Dave Mehlman from Cool Green Science: The Conservation Blog of The Nature Conservancy

My colleagues at National Audubon have just released a detailed analysis of the response of birds in North America to climate change you can read the full report here.

A lot of my past research has been in the field of biogeography and changes in avian distribution, so I find this work very exciting and compelling.

The Audubon team analyzed 40 years of data from the Christmas Bird Count to look at changes in bird distribution over this time period. There’s almost too much in this report to summarize succinctly, but here are some of the highlights:

  • Over half of the 305 species studied showed significant northward movement in their winter distributions.
  • These species moved an average of 35 miles north, while many moved over 100 miles north.
  • Significant shifts in distribution inland, away from coastal areas, were also found.
  • When landbirds are broken out by broad habitat types, woodland birds moved farther north than shrubland birds and generalists.
  • Grassland birds did not show a significant northward shift.
  • The authors report several pieces of evidence consistent with these changes being caused by global warming, including a correlation of annual movements with annual temperatures, more species moving north than south, and birds found only in southern states increasing in numbers.

What does this work tell us?

It provides more clear evidence of the effects of global warming on the distribution of biodiversity (in this case, wintering birds) the canaries seem to be doing their job.

It begins to call into question the effectiveness of our current network of refuges, parks and other protected areas for birds — they might not be in the right places, if bird distributions continue to change.

The fact that certain groups, such as grassland birds, did not respond indicates that there is concern for the future impacts on some species.

However, this should not be viewed as completely negative. Many regions will see an increase in overall species diversity and some species formerly rare in some states will become more common.

Climate change is an urgent matter that we must all understand. As the work from Audubon indicates, the changes are occurring in our own states, towns and backyards you can study this yourself by keeping good records of what is in and around your neighborhood.

For some other suggestions on climate change and what to do about it, check here.

(Image: Canary. Source: Jessi Bryan via Creative Commons.)

24 February 2009

Got Manure? These Trucks Run on It

By Ben Mack from Wired Blog Network

A California dairy has converted a pair of 18-wheelers to run on biomethane produced from cow manure, creating what is believed to be the nation's first cow-pie–powered trucks.

Hilarides Dairy will use manure produced by 10,000 cows to generate 226,000 cubic feet of biomethane daily — enough to reduce the Central Valley farm's diesel fuel consumption by 650 gallons a day.

"For us it made sense to invest in this technology. Now we can utilize the dairy's potential to power our trucks in addition to generating electricity for our operations," Rob Hilarides (pictured above), owner of the dairy, said. "This will significantly reduce our energy costs and give us some protection from volatile energy prices."

Not to mention something to do with all that manure.

Hilarides announced the conversion at the World Ag Expo in Tulare, California, and it begs the question "Got Manure?" Methane is a natural byproduct of the microbial process that breaks down sewage, and it is emerging as a viable alternative to gasoline and diesel. City officials in Oslo, Norway, recently announced they would convert 80 municipal buses to run on methane generated from human waste.

As gross as it may sound, Hilarides isn't shoveling cow pies into the fuel tanks of his rigs. The bio-gas manufacturing process involves flushing manure and other waste from the cows' stalls into a covered lagoon where bacteria breaks it down. Methane is pumped out of the lagoon to a refinery that removes carbon dioxide, hydrogen sulfide and other impurities. The purified methane is pressurized before being pumped into the trucks; the Cummins engines have been converted from compression-ignited diesels to spark-ignited methane-burners. Hilarides financed the project with a $600,000 grant from the California Air Resources Board Alternative Fuel Incentive Program.

"It's energy projects like this that will reduce greenhouse gas emissions and get us off our dependency on foreign oil," Mary Nichols, chairwoman of the California Air Resources Board, said in a statement. "It also addresses sources of long-term air and water pollution problems."

Using cow manure to produce bio-methane cuts greenhouse gas emissions in two ways. Burning biomethane produces less pollution than conventional fuel, and producing it cuts down on the methane released into the atmosphere by the manure itself.

Biomethane advocates say the wonder gas can turn rural communities like Lindsay, California — where Hilarides Dairy is located — into alt-fuel producers. Allen Dusault of Sustainable Conservation says manure from the nation's dairy cows could generate enough fuel to fuel some 1 million vehicles, a carbon-cutting move he claims (.pdf) that would be the equivalent of taking 16 million gasoline or diesel vehicles off the road. Others have said California's 1.7 million dairy cows could produce 8 billion cubic feet of methane a year, the equivalent of more than 150 million gallons of gasoline.

"In California the manure is plentiful," Dusault said. "The technology is here and public-private partnerships can make this work. Biomethane is the only vehicle fuel that is carbon negative."

See Also:

17 February 2009

Unprecedented Investment in Restoring Our Battered Environment

By Bob Bendick from The Nature Conservancy's Cool Green Science

On Friday, Congress approved a $787 billion Economic Stimulus Bill that will now be signed into law by President Obama. While the analysts are busy debating the politics of the bill and its likely impact on America’s battered economy, there is one aspect of this legislation that, thankfully, seems quite certain — it will provide unprecedented investments in restoring our country’s battered environment.

In doing so, the passage of the American Recovery and Reinvestment Act of 2009 can be an important moment of recognition that our economy and our environment are intertwined, that the health of human communities depends upon the health of natural communities.

It looks like as much as $10 billion in the stimulus bill is allocated for environmental restoration and another $45 billion for energy conservation and for developing new, less-polluting energy technologies. While these may seem like moderate amounts in comparison to the total, they far exceed any previous single appropriation for these purposes. The environmental provisions of the bill do not include earmarks — that is, they don’t specify the use of funds for specific projects. But let me suggest the kinds of things the money should be used for:

  • In Florida’s Everglades Ecosystem, wetlands have been ditched and drained so that they can no longer hold water and absorb pollutants in times of flood or retain water in times of drought. This threatens populated areas and estuaries in times of heavy rainfall and water supplies when it is dry. Restoring and expanding the original wetlands will bring back these important functions while also creating exceptional wildlife habitat.
  • Along the Front Range of Rocky Mountains in Colorado, years of trying to suppress every fire have caused forests to grow up to unnatural densities such that catastrophic and uncontrollable wildfires threaten whole forest ecosystems, built-up areas and the watersheds of big cities. These forests should be thinned carefully such that they more closely resemble their natural condition. Smaller, more manageable fires will then be the norm and forest ecosystems can fulfill their role of taking up carbon from the atmosphere, protecting water supplies, and providing the venue for outdoor recreation.
  • In coastal areas like Chesapeake Bay and the North Carolina sounds, vast reefs of oysters once filtered the water, were nursery grounds for fish and shielded the shoreline from the impacts of storms. Many of these reefs have been damaged or lost by overfishing, pollution and disease. They can be rebuilt and restocked to once again provide a livelihood for baymen and other important benefits to human and natural communities.

According to the Economic Policy Institute, such projects support just as many or more jobs per million dollars of investment as do conventional infrastructure projects, and what we have now come to realize is that they also produce ongoing “ecosystem services” — the kind of real, tangible, cost=effective and measurable benefits to society that come from healthy natural systems.

It is our hope at the Nature Conservancy that the inclusion of environmental restoration in the economic stimulus bill is not a one-time thing, but rather is the beginning of recurring investment in restoration activities that will be carried forward into the federal FY10 and FY11 budgets. These budget allocations should be based on the realization that the healthy natural systems that sustain the diversity of plant and animal species also sustain human well-being.

Our country’s resources are finite. Like it or not, our growing population and our harnessing of technology require that we act as stewards of the air, land and water upon which our own lives depend. The discussions about whether to include substantial environmental expenditures in the stimulus bill were a test of our readiness to recognize the connection between a healthy environment and long-term economic sustainability.

Thanks to Congress and the president, we passed this time. But the next exam — the decisions on ongoing appropriations for federal environmental and conservation spending — will be upon us shortly.

09 February 2009

Here come the plastics ambassadors!

By Lisa Frack from Environmental Working Group's Enviroblog)

Good news, everyone! The Plastics Division of the American Chemistry Council and the Society of the Plastics Industry, Inc. are rolling out a new 'plastics ambassador' program.

You'll be happy to know that this is part of the industry's plan to 'aggressively respond to the onslaught of misinformation about their industry.' Because, in their minds, the general public (yes, that's you) 'does not intuitively understand that [they] are, in fact, a sustainable industry.'

Which is exactly where the new Plastics Ambassadors come in! Their job is to help you understand that the plastics industry is sustainable and good for consumers (right, you again). The ambassadors will 'unify and amplify' the voice of the industry. I don't know about you, but I can't wait for that all that unity and volume! It'll be like the "Wonderful World of Chemistry" exhibit at the New York World's Fair in 1964, all over again (no, I wasn't alive, but it's worth checking it out - if only to see the Dupont 'Happy Plastic Family Dance.' No really.)

One of the industry's goals is to 'promote policies that allow decisions about health, safety and the environment to be based on the best-available science.' Which is funny, because we also support science-based decisions. It's just that we support the neutral scientific studies with no industry ties. The kind we hope EPA and FDA will include in their chemical assessments going forward. So naturally we are thrilled with President Obama's clear emphasis on the importance on the role of science in policy making.

If you happen to encounter a plastics ambassador in the coming months, be sure you're ready. EWG has some great resources on plastic and how to use it safely:

02 February 2009

While The Cat's Away: How Removing An Invasive Species Devastated A World Heritage Island


ScienceDaily (Jan. 13, 2009) — Removing an invasive species from sub-Antarctic Macquarie Island, a World Heritage Site, has caused environmental devastation that will cost more than A$24 million to remedy, ecologists have revealed. Writing in the new issue of the British Ecological Society's Journal of Applied Ecology, they warn that conservation agencies worldwide must learn important lessons from what happened on Macquarie Island.

Using population data, plot-scale vegetation analyses and satellite imagery, the ecologists from from the Australian Antarctic Division (AAD), the University of Tasmania, Blatant Fabrications Pty Ltd and Stellenbosch University found that after cats were eradicated from Macquarie in 2000, the island's rabbit population increased so much that its vegetation has been devastated.

According to the study's lead author, Dr Dana Bergstrom of the Australian Antarctic Division: “Satellite images show substantial island-wide rabbit-induced vegetation change. By 2007, impacts on some protected valleys and slopes had become acute. We estimate that nearly 40% of the whole island area had changed, with almost 20% having moderate to severe change.”

Rabbits were introduced to Macquarie Island in 1878 by sealing gangs. After reaching large numbers, the rabbits became the main prey of cats, which had been introduced 60 years earlier. Because the rabbits were causing catastrophic damage to the island's vegetation, Myxomatosis and the European rabbit flea (which spreads the Myxoma virus) were introduced in 1968. As a result, rabbit numbers fell from a peak of 130,000 in 1978 to less than 20,000 in the 1980s and vegetation recovered. However, with fewer rabbits as food, the cats began to eat the island's native burrowing birds, so a cat eradication programme began in 1985. Since the last cat was killed in 2000, Myxomatosis failed to keep rabbit numbers in check; their numbers bounced back and in little over six years rabbits substantially altered large areas of the island.

According to Bergstrom: “Increased rabbit herbivory has caused substantial damage at both local and landscape scales including changes from complex vegetation communities, to short, grazed lawns or bare ground.”

Invasive species can cause large-scale changes to ecosystems, including species extinctions and – in extreme cases – ecosystem “meltdown”. As a result, control or eradication of invasive alien species is widely undertaken. However, important lessons must be learned from events on Macquarie Island, say the authors.

“Our study shows that between 2000 and 2007 there has been widespread ecosystem devastation and decades of conservation effort compromised. The lessons for conservation agencies globally is that interventions should be comprehensive, and include risk assessments to explicitly consider and plan for indirect effects, or face substantial subsequent costs. On Macquarie Island, this cost will be around A$24 million,” says Bergstrom.

The changes documented in this study are a rare example of so-called “trophic cascades” - the knock-on effects of changes in one species' abundance across several links in the food web. “This study is one of only a handful which demonstrate that theoretically plausible trophic cascades associated with invasive species removal not only do take place, but can also result in rapid and detrimental changes to ecosystems, so negating the direct benefits of the removal of the target species,” Bergstrom says.

Macquarie Island (34 km long x 5 km wide) is an oceanic island in the Southern Ocean, 1,500 km south-east of Tasmania and approximately halfway between Australia and the Antarctic continent. Low-lying, with a cool, maritime climate, it is covered with tundra-like vegetation. It was inscribed as a World Heritage Site in 1997 because of its geological significance – it is the only place on Earth where rocks from the Earth’s mantle (6 km below the ocean floor) are being actively exposed above sea-level.

26 January 2009

Get Radical. Get Some Rest.

by Matt Carmichael, from Resurgence (from Utne.org)

In Prozac Nation, a memoir that struck a chord with millions of readers, Elizabeth Wurtzel writes, “I don’t want any more of this try, try again stuff. I just want out. I’ve had it. I am so tired. I am 20 and I am already exhausted.” Despite the fact that we are surrounded by labor-saving devices, despite the elevation of convenience and comfort above almost all other values, a profound sense of tiredness seems to be one of the defining features of modern life. And our world is as exhausted as we are. Our ecosystems are stretched far beyond their limits, and social structures like families and communities battle for survival.

The natural response to tiredness is to rest. Modern consumer culture, however, doesn’t like rest; “time is money,” we are told. Every second saved by a dishwasher or a car must be paid back double in longer working hours. In the gym, exercise (which is freely available in the nearest park) is sold at exclusive rates so that we can do it while we’re watching television. Even rest itself is commercialized and repackaged as “leisure.”

Returning to truly replenishing forms of rest would demand a reevaluation of tiredness—all the different kinds, each of which leads to negative personal, social, and ecological consequences. In doing so, we would address the problem of unsustainability, which is, after all, the essence of tiredness.

When we are tired, we know we cannot carry on in the same way for long. In evaluating all the ways we’re tired, we confront what makes life unsustainable. For us, and for our world.

First, there’s sleepiness. When we do not sleep properly, our brains run on depleted energy; compassion, creativity, imagination, and reason are lost, and the reptilian fight-or-flight brain takes over. Some psychiatrists have suggested that depression is a symptom of sleep loss, rather than the other way around. A shortage of sleep is associated with obesity, road accidents, torture, and war.

In ecological terms, 24-hour culture means more emissions and more consumption of the earth’s limited resources; we find ways to justify new runways, new wars, space tourism, and drilling for oil under melting arctic ice.

The solution, of course, is sleep. When the emperor of Persia asked his Sufi master how best to renew his soul, he was told to sleep as much as possible because “The longer you sleep, the less you will oppress!” We sacrifice sleep for time, but that time becomes less fulfilling—and robs the earth of resources.

Another kind of tiredness is fatigue: a tiredness of activity. We live in a hyperactive culture where more is continually demanded of us. Unions have to fight to maintain vacation allowances and workday limits. Life proceeds at a pace that belongs not to the human scale, but to the industrial scale. Fossil fuels allow us to travel great distances at inhuman speeds without feeling tired. The tiredness we would have felt does not disappear, but is displaced onto the ecosystems that support our existence. It turns out that the toddler who observed the airplane “scratching the sky” was right.

I used to look askance at evangelical Christian athletes who would not compete on a Sunday. Now I think we should follow their example. We are tempted to avoid rest because we think we will produce more, but what we produce is less wonderful.

We should also consider ennui, which is tiredness of stasis. Ennui is all about that feeling of being stuck in a rut, of going nowhere. It is extraordinary that in our hyper­active society so many people are bored. Bored young people hang around the streets causing trouble. Bored soldiers commit acts of atrocity in military prisons. Workers are forced to choose between the boredom of the production line and the boredom of unemployment. Television, computer games, and prescription drugs temporarily screen us from the effects of boredom, but it comes back to haunt us in poor mental health, addiction, crime, and disease.

It seems logical that the antidote to ennui is activity. However, as we have seen, we are very active—even hyperactive. We need to replace activities that isolate mind from body with activities that involve the whole person in a valuable process. There are many sources of wisdom to help us here. Gandhi viewed work as sacred. Dutch historian Johan Huizinga showed how play is fundamental to human welfare, and the Kama Sutra explores the spiritual significance of sex. Martial arts generally developed as forms of meditation, ritualizing movement in order to replenish body and mind. In agriculture, one alternative to a static monoculture is crop rotation: Moving the crop replenishes the soil.

Perhaps the most prevalent form of tiredness in our society is satiation, tiredness of consumption. Our society has an obesity problem that extends far beyond the body mass index. Shopping is a chief “leisure activity.” We continue to consume rapaciously because we are wedded to ownership, but the real effects of satiation are unwelcome. They first show up in the environment, where the raw materials for all this consumption must be found. Then they appear in unequal societies and unjust legislation that favors the obscenely wealthy.

The answer is sacrifice. Every year Muslims fast during daylight hours for the month of Ramadan. This is a striking example of the use of sacrifice for the benefit of an entire community. Christians and Jews tithe. Sikhs practice hospitality and share food; monks take vows of poverty; vegetarians and vegans refrain from eating meat; ethical consumers refuse to buy the shiny trinkets that are constantly advertised.

We are increasingly aware that capitalism is failing to make sense for our lives; money is not making us happy. But many of us who are ready to change are not aware of any alternative. So we carry on rushing around, making money, buying temporary happiness.

In a culture so dependent on activity—on consuming, producing, and achieving—rest becomes a radical form of protest and a catalyst for change.

Matt Carmichael is a writer, teacher, and activist. Excerpted from Resurgence(May-June 2008), a British magazine dedicated to raising awareness of spiritual and ecological issues; www.resurgence.org.

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