"All the World's a Stage We Pass Through" R. Ayana

Showing posts with label ocean acidity. Show all posts
Showing posts with label ocean acidity. Show all posts

Saturday, 26 May 2012

Oceans Acidifying Faster today Than in Past 300 Million Years

Oceans Acidifying Faster today Than in Past 300 Million Years





The common sea fan is but one of the species being affected by acidifying oceans. Credit: NOAA.
The oceans may be acidifying faster today than they did in the last 300 million years, according to scientists publishing a paper this week in the journal Science. "What we're doing today really stands out in the geologic record," says lead author Barbel Honisch, a paleoceanographer at Columbia University's Lamont-Doherty Earth Observatory.

"We know that life during past ocean acidification events was not wiped out--new species evolved to replace those that died off. But if industrial carbon emissions continue at the current pace, we may lose organisms we care about--coral reefs, oysters, salmon."

The oceans act like a sponge to draw down excess carbon dioxide from the air.

The gas reacts with seawater to form carbonic acid, which over time is neutralized by fossil carbonate shells on the seafloor.

If too much carbon dioxide enters the ocean too quickly, it can deplete the carbonate ions that corals, mollusks and some plankton need for reef and shell-building.

In a review of hundreds of paleoceanographic studies, the researchers found evidence for only one period in the last 300 million years when the oceans changed as fast as today: the Paleocene-Eocene Thermal Maximum, or PETM.

In ocean sediment cores, the PETM appears as a brown mud layer flanked by thick deposits of white plankton fossils.

About 56 million years ago, a mysterious surge of carbon into the atmosphere warmed the planet and turned the oceans corrosive.

In about 5,000 years, atmospheric carbon doubled to 1,800 parts per million (ppm), and average global temperatures rose by about 6 degrees Celsius.

The carbonate plankton shells littering the seafloor dissolved, leaving the brown clay layer that scientists see in sediment cores today.

As many as half of all species of benthic foraminifera, a group of one-celled organisms that live at the ocean bottom, went extinct, suggesting that deep-sea organisms higher on the food chain may have also disappeared, said paper co-author Ellen Thomas, a paleoceanographer at Yale University.

"It's really unusual that you lose more than 5 to 10 percent of species," she said.

Scientists estimate that ocean acidity--its pH--may have fallen as much as 0.45 units as the planet vented stores of carbon into the air.

"These scientists have synthesized and evaluated evidence far back in Earth's history," said Candace Major, program officer in the National Science Foundation's (NSF) Division of Ocean Sciences, which funded the research.

"The ocean acidification we're seeing today is unprecedented," said Major, "even when viewed through the lens of the past 300 million years, a result of the very fast rates at which we're changing the chemistry of the atmosphere and oceans."

In the last hundred years, rising carbon dioxide from human activities has lowered ocean pH by 0.1 unit, an acidification rate at least 10 times faster than 56 million years ago, says Honisch.

The Intergovernmental Panel on Climate Change (IPCC) predicts that pH will fall another 0.2 units by 2100, raising the possibility that we may soon see ocean changes similar to those observed during the PETM.

More catastrophic events have happened on Earth before, but perhaps not as quickly.

The study finds two other analogs for modern day ocean acidification--the extinctions triggered by massive volcanism at the end of the Permian and Triassic eras, about 252 million and 201 million years ago, respectively.

But the authors caution that because ocean sediments older than 180 million years have been recycled back into the deep Earth, scientists have fewer records to work with.

During the "Great Dying" at the end of the Permian, about 252 million years ago, about 96 percent of life disappeared.

Massive eruptions from what is known as the Siberian Traps in present-day Russia are thought to have triggered earth's biggest extinction.

Over 20,000 years or more, carbon in the atmosphere rose dramatically.

Scientists have found evidence for ocean dead zones, and preferential survival of organisms predisposed to carbonate-poor seawater and high blood-carbon levels, but so far they have been unable to reconstruct changes in ocean pH or carbonate.

At the end of the Triassic, about 201 million years ago, a second burst of mass volcanism associated with the break-up of the supercontinent Pangaea doubled atmospheric carbon and touched off another wave of die-offs.

Coral reefs collapsed and an entire class of sea creatures, the eel-like conodonts, vanished.

On land, large plant-eating animals gave rise to meat-eating dinosaurs like Tyrannosaurus rex as the Jurassic era began.

A greater extinction of tropical species has led some scientists to question whether global warming rather than ocean acidification was the main killer at this time.

This study finds that the most notorious of all extinctions, the one that ended the Age of Dinosaurs with a falling asteroid 65 million years ago, may not have been associated with ocean acidification.

The asteroid impact in present-day Mexico 65 million years ago released toxic gases and possibly set off fires that sent surges of carbon into the air.

Though many species of plankton went extinct, coral reefs and benthic foraminifera survived.

In lab experiments, scientists have tried to simulate modern ocean acidification, but the number of variables currently at play--high carbon dioxide and warmer temperatures, and reduced ocean pH and dissolved oxygen levels--make predictions difficult.

An alternative to investigating the paleo-record has been to study natural carbon seeps from offshore volcanoes that are producing the acidification levels expected by the year 2100.

In a recent study of coral reefs off Papua New Guinea, scientists found that during long-term exposure to high carbon dioxide and pH 0.2 units lower than today--at a pH of 7.8 (the IPCC projection for 2100)--reef biodiversity and regeneration

Via Terra Daily @ http://www.terradaily.com/reports/Oceans_Acidifying_Faster_today_Than_in_Past_300_Million_Years_999.html




Trouble in Paradise: Ocean Acidification This Way Comes

Sustainability of tropical corals in question, but some species developing survival mechanisms 


 Aerial view of ocean near Mo'orea.
Something wicked this way comes: ocean acidification arrives in paradises like Mo'orea.
Credit and Larger Version


The following is part five in a series on the National Science Foundation's Long-Term Ecological Research (LTER) Network. Visit parts one, two, three, four, six, seven and eight in this series.

Double, double toil and trouble;
Fire burn, and caldron bubble.
---Shakespeare, Macbeth


Mo'orea, it's called--this island in French Polynesia that's been dubbed the most beautiful island in the world.

Here Tahitian breezes dance across crystal blue waters and beneath the tropical seas lies a necklace of coral reefs that encircles Mo'orea like a string of brightly colored jewels.

Extensive reefs of a coral named Porites and other species form atolls, or reefs that ring Mo'orea's lagoons.

Porites are colonial corals, also known as Scleractinians, found in shallow tropical waters throughout the Indo-Pacific and Caribbean regions.

Think tropical reef and your mind's eye is likely seeing Porites.

These corals and other calcifying marine life, such as coralline algae, are also the world's primary reef-builders.  And therein lies the trouble.

The seas in which these calcifying species dwell are turning acidic, their pH slowly dropping as Earth's oceans acidify in response to increased carbon dioxide in the atmosphere.

As atmospheric carbon rises in response to human-caused carbon dioxide emissions, carbon in the ocean goes up in tandem.

Marine life that depends on calcium carbonate can no longer form shells or, in the case of coral reefs, skeletons.  Such marine life are found in waters that are more basic with a higher pH rather than a lower pH, which is more acidic.

Porites reefs, say scientists Peter Edmunds and Robert Carpenter of California State University at Northridge, are among the most sensitive of all corals.

Carpenter and Edmunds are two of the lead scientists at the National Science Foundation's (NSF) Mo'orea Coral Reef Long-Term Ecological Research (LTER) site, one of 26 such LTER sites around the globe.

Mo'orea is the only coral reef site in NSF's LTER network. It is funded by NSF's Divisions of Ocean Sciences and Environmental Biology.

To study the effects of ocean acidification on corals and other calcifying organisms, the biologists have been awarded an NSF SEES (Science, Engineering, and Education for Sustainability) Ocean Acidification grant.

We need to understand the chemistry of ocean acidification and its interplay with other marine processes--while Earth's seas are still hospitable to life as we know it, according to David Garrison, director of NSF's Biological Oceanography Program.

Carpenter and Edmunds hope to learn how fast--and the specific mechanisms by which--ocean acidification is affecting Mo'orea's corals and calcified algae, before the island's pristine reefs join dead and dying corals lining tropical coastlines around the world.

"Is there a way of sustaining healthy coral reefs when our oceans are acidifying?" asks Edmunds.

"Marine animals and plants from pteropods--delicate, butterfly-like plankton--to hard corals and coralline algae are affected by ocean acidification, as are the microbes that fuel ocean productivity and influence the chemical functioning of seawater.

"Corals like Porites, with their extensive distribution in tropical waters, may be ocean 'canaries in the coal mine.'"

At the current rate, he and Carpenter believe, coral reefs could disappear by the turn of the next century.

"The loss of biodiversity," says Carpenter, "would be devastating to the world's oceans--and to all of us. Tourism and fishing, in fact, entire economies, depend on coral reefs."

The scientists' recent findings are cause for hope, however. Porites, it turns out, may be developing an ability to counteract the effects of ocean acidification.

When Edmunds exposed Porites to different water temperatures and pH levels, and to plankton called brine shrimp as a food source, he found that increasing the amount of plankton in the coral's diet reduced the effects of ocean acidification.

The results are published in a recent issue of the journal Limnology & Oceanography.

"It's an intriguing mechanism," says Edmunds. "As seawater became more acidic, the corals continued to deposit calcium carbonate [new hard skeleton]. Although ocean acidification reduced the overall ability of coral tissue to calcify, the corals responded to more food by adding more tissue."

Edmunds thinks that the extra plankton food may allow the coral to "bulk up," thereby changing its internal structure and increasing its ability to manufacture skeleton even in acidifying waters.

"It's a very important finding that corals can mitigate the effects of ocean acidification," says Garrison. "It will be important to uncover the specific mechanism, and to establish whether other species have this ability."

And whether, says Edmunds, it might allow Porites to survive in the more acid oceans of the future.

Edmunds and Carpenter found that the response of tropical reefs to ocean acidification may be species-specific, with some species of corals and coralline algae affected more than others.

They've also discovered that more acid oceans may lead to changes in patterns of biodiversity in a high-carbon dioxide world.

If the tropical seas cauldron continues to bubble with waters turning to acid, the scientists say, it will indeed lead to double, double toil and trouble--for the most beautiful island in the world, and for coral reefs around the globe.

Ultimately, it will affect the sustainability of life on a planet that--made up of 70 percent oceans--might better be called Water than Earth.


-         Cheryl Dybas, NSF (703) 292-7734 cdybas@nsf.gov


From the National Science Foundation @ http://www.nsf.gov/discoveries/disc_summ.jsp?cntn_id=122642




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Sunday, 25 April 2010

Ocean chemistry changing at 'unprecedented rate'

Ocean chemistry changing at 'unprecedented rate'


http://www.scientificamerican.com/media/inline/ocean-acidification-hits-great-barrier-reef_1.jpg

(Reuters) - Carbon dioxide emissions that contribute to global warming are also turning the oceans more acidic at the fastest pace in hundreds of thousands of years, the National Research Council reported Thursday.
"The chemistry of the ocean is changing at an unprecedented rate and magnitude due to anthropogenic carbon dioxide emissions," the council said. "The rate of change exceeds any known to have occurred for at least the past hundreds of thousands of years."
Ocean acidification eats away at coral reefs, interferes with some fish species' ability to find their homes and can hurt commercial shellfish like mussels and oysters and keep them from forming their protective shells.
Corrosion happens when carbon dioxide is stored in the oceans and reacts with sea water to form carbonic acid. Unless carbon dioxide emissions are curbed, oceans will grow more acidic, the report said.
Oceans absorb about one-third of all human-generated carbon dioxide emissions, including those from burning fossil fuels, cement production and deforestation, the report said.
The increase in acidity is 0.1 points on the 14-point pH scale, which means this indicator has changed more since the start of the Industrial Revolution than at any time in the last 800,000 years, according to the report.
The council's report recommended setting up an observing network to monitor the oceans over the long term.
"A global network of robust and sustained chemical and biological observations will be necessary to establish a baseline and to detect and predict changes attributable to acidification," the report said.

ACID OCEANS AND 'AVATAR'

Scientists have been studying this growing phenomenon for years, but ocean acidification is generally a low priority at international and U.S. discussions of climate change.
A new compromise U.S. Senate bill targeting carbon dioxide emissions is expected to be unveiled on April 26.
Ocean acidification was center stage at a congressional hearing Thursday, the 40th anniversary of Earth Day in the United States.
"This increase in (ocean) acidity threatens to decimate entire species, including those that are at the foundation of the marine food chain," Democratic Senator Frank Lautenberg of New Jersey told a Commerce Committee panel. "If that occurs, the consequences are devastating."
Lautenberg said that in New Jersey, Atlantic coast businesses generate $50 billion a year and account for one of every six jobs in the state.
Sigourney Weaver, a star of the environmental-themed film "Avatar" and narrator of the documentary "Acid Test" about ocean acidification, testified about its dangers. She said people seem more aware of the problem now than they did six months ago.
"I think that the science is so indisputable and easy to understand and ... we've already run out of time to discuss this," Weaver said by telephone after her testimony. "Now we have to take action."
(Editing by Sandra Maler)


From
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Wednesday, 21 September 2005

Apocalypse Now: How Humankind Is Sleepwalking to the End of the Earth


Apocalypse Now
How Humankind Is Sleepwalking to the End of the Earth


http://www.heatingoil.com/wp-content/uploads/2011/09/manhattan.jpg

This headline appeared in the London Independent in early February of 2005, following a conference at the Hadley Centre in Exeter, England, where 200 of the world’s leading scientists issued the most urgent warning to date: that dangerous climate change is taking place today, and not the day after tomorrow.

Floods, storms, and droughts. Melting polar ice, shrinking glaciers, oceans turning to acid. Scientists from the fields of glaciology, biology, meteorology, oceanography, and ecology reported seeing a dramatic rise over the last 50 years of all the indicators of climate change: increase in average world temperatures, extreme weather events, in the levels of CO2 and other greenhouse gases, and in the level of the oceans. 

The award winning environmental writer Geoffrey Lean wrote: “Future historians, looking back from a much hotter and less hospitable world . . . will puzzle over how a whole generation could have sleepwalked into disaster -- destroying the climate that has allowed human civilization to flourish over the past 11,000 years.” 

The overwhelming majority of scientists and international climate monitoring bodies now agree that climate change is taking place, that humans are responsible, and that time is running out. In fact, we could reach “the point of no return” in a decade, reported Lean. 

Melting glaciers all across the world include: the Broggi in the Peruvian Andes, Glacier Ururashraju in the Cordillera Blanca of Peru, the Pasterze in Austria, Portage Glacier near Anchorage, Alaska, Mount Hood in Oregon, Mount Kilimanjaro in northeastern Tanzania, the Grinnell Glacier in Glacier National Park, and the Rhone Glacier in Switzerland.  

The Earth is getting warmer. While average warming is just under 1 degree Celsius worldwide, the Polar Regions show warming of 2 to 3 degrees Celsius, due to feedback effects. With the melt of white snow, that previously reflected some of the heat back into the atmosphere (albedo effect), newly exposed darker surfaces absorb heat, and accelerate melting of more ice and snow. 

A world average warming of under 1 degree Celsius may seem small. However, historically, the difference between warm periods and an ice age has been only 5 to 6 degrees Celsius. The transformation from the last ice age to the present climate resulted from a slow rise in temperature, which took 5,000 years to fully complete, allowing life on Earth to adapt to the changes. We could bring about a 5- to 6- degree change in only 150 years if we don’t start constraining the use of fossil fuels.  

It is not only the fundamental change in the composition of air, water, and soil that we need to consider. The speed at which these changes are forced upon the planet already leads to high extinction rates. 

Scientists at the Exeter meeting agreed that warming over 2 degrees Celsius above pre-industrial temperatures would be dangerous -- and we are almost half way there. To burn up the world’s remaining coal reserves, they estimated, would raise the average temperature by 3 to 8 degrees C in less than 150 years.  

Quite a few climate “skeptics”, fossil fuel executives, and members of the Bush administration are still denying that there is such a thing as human-caused global warming. Many of them claim that the sun has just grown hotter. However, a warmer sun would have heated the stratosphere as well. In contrast, the stratosphere is cooling -- suggesting a blanket of greenhouse gases that prevents the earth’s heat from radiating back into space. 

We know how the greenhouse effect works. Venus, with a thick greenhouse cover is hot; Mars, with a thin greenhouse is cold. Earth’s blanket of greenhouse gases is made up of the byproducts of the industrial age and an outdated Victorian technology. Even though methane is a more powerful greenhouse gas, it is CO2 that makes up over 80% of the greenhouse gas mix. Ice core studies show that CO2 concentrations on this planet had been stable for the last millennium, never rising or falling more than 10 ppm, and fluctuating between 275 and 285 ppm. Now CO2 concentrations are beginning to exceed 370 ppm, and are rising from year to year. Other greenhouse gases show the same dramatic increase -- mainly in the past 40 to 50 years. We are already living under a dome of air that no one has breathed in a million years. 

Ocean Warming and Acidification

The average temperature of the surface waters of the oceans, extending to a depth of several hundred meters, has risen by a 1/2 degree Celsius. This has occurred in just the past 40 years. The oceans have also become more acidic, due to the uptake of anthropogenic CO2. The Plymouth Marine Laboratory in England estimates that 48% of fossil-fuel CO2, or 400 billion tons, have been absorbed by the oceans, making them the largest reservoir of carbon, a load greater than that borne by the atmosphere or the earth. CO2, while more inert in the atmosphere, becomes highly reactive in oceans, leading to physical, biological, and geological changes.  

Carol Turley, head of science at the Plymouth Marine Laboratory, warns that no such ph changes in oceans have occurred in the past 20 million years, and that the capacity of oceans to take up CO2 is limited.  

What might the consequences of such changes in the oceans be? An August 2005 article in the Globe and Mail, on starving sea birds washing up on Pacific coast beaches from California to British Columbia, reports that scientists believe that, at least for this year, the “bottom has fallen out of the coastal food chain.” Off the Oregon coast, the waters near the shore are 5 to 7 degrees warmer than normal. A layer of warm water along the whole Pacific coastline prevents the usual upwelling of cool water rich in phytoplankton, the base of the food web for all marine life.  

Zooplankton, such as krill, depend on phytoplankton. The disappearance of zooplankton in turn affects seabirds and fish from sardines to whales. NOAA, the National Oceanic and Atmospheric Administration, found a 20 to 30 per cent drop in juvenile salmon off the coasts of Oregon, Washington, and British Columbia; and monitoring in Central and Northern California shows the lowest number of juvenile rockfish in more than 20 years.

The world has not yet felt the real impact of global warming since the oceans have absorbed so much heat and CO2. The US National Center for Atmospheric Research (NCAR) put out two studies in March 2005. They suggest that due to the thermal inertia of the oceans global temperatures and sea levels will continue to rise for the next 100 years - even if greenhouse gas emissions come under control.  

http://www.onepennysheet.com/wp-content/uploads/2009/10/carbon-emissions.jpg

First Signs of a Gulf Stream Collapse

 

The opening presentations at the Exeter, UK conference gave the most comprehensive assessment of so-called “wild cards”, climate change events that risk feedback loops no longer responsive to human intervention. The run-away events, or ecological landslides include accelerated melting of the enormous ice sheets of Antarctica and Greenland, as well as the decline and possible reversal of the Gulf Stream that conveys heat from the tropics to Europe.  

In the Hollywood movie “The Day After Tomorrow,” the Gulf Stream stops flowing in a matter of days, creating an instant ice age on the Atlantic coast and Western Europe. Scientists at Exeter said it would take at least ten years for such an event to unfold and a few hundred years to set up the conditions. But they warned that the Thermohaline Circulation, as they call the Gulf Stream, has stopped flowing before -- and that we have already a greater than 50% likelihood of a shutdown if we do not enact strict climate policies.  

The amount of heat transported North by the Gulf Stream, which keeps Western Europe 5 to 10 degrees Celsius warmer than it would normally be at its latitude, equals one million billion watts -- sufficient to satisfy the energy needs of 100 Earths. Even a partial failure of the Gulf Stream would have huge consequences.  

The Gulf Stream picks up heat from the equatorial sun. Driven by warmth, the stream flows northeast towards Europe and the Greenland ice sheets, where the water cools and sinks. The cooler and saltier the water, the stronger the sinking motion. Dense cool and salty water from the Gulf Stream then flows back to the tropics at a deeper ocean level.  

As the Polar Regions and the oceans are warming, melt-water from ice sheets and glaciers is changing the salinity of the ocean. A combination of the rising ocean surface temperature, and the decreasing salinity, already visibly changes the movement of sea currents that depend on differences in warmth and coolness, and the weight that higher salinity adds to the water as the driving force. 

Large-scale salinity changes in the Arctic and sub-Arctic Seas were reported in June 2005, in the journal Science. Ruth Curry from the Woods Hole Oceanographic Institution on Cape Cod, in Massachusetts, analyzed temperature, salinity, and density data, collected in the North Atlantic Ocean over the last 55 years. Curry warned that excessive amounts of freshwater dumped into the North Atlantic could affect the flow of the Gulf Stream.  

We know, from ice-core data, when the Gulf Stream has stopped flowing before. The most recent collapse, 15,000 years ago during the Younger Dryas, was caused by the sweetening of the North Atlantic Ocean, when glaciers covering North America melted and began flowing through the St. Lawrence waterway into the Atlantic, instead of into the Gulf of Mexico via the Mississippi. Today’s accelerated melting of the Arctic and Antarctic ice sheets may recreate these conditions, not just for the Gulf Stream but also for other parts of the global ocean circulation. 

In May of this year, the London Times reported that first signs of a slow down of the Gulf Stream had been detected by a Cambridge University researcher, who hitches rides on a Royal Navy submarine to one of the three areas where the Gulf Stream reverses its course. Peter Wadhams said that “until recently we could find giant ‘chimneys’ in the sea where columns of cold, dense water were sinking from the surface to the seabed 3,000 meters below, but now they have almost disappeared.”  

Off the coast of Greenland, the Odden Ice Shelf once grew out into the Greenland Sea every winter, and receded in the summer. The Odden triggered the annual formation of sinking water columns in that area. However, since 1997, the shelf has ceased to form. Where Wadhams had once observed 12 giant columns of sinking water under the ice, he now found only two -- and they were so weak that they were unable to reach the seabed.  

Wadhams also predicts complete summer melting of the Arctic ice cap by as early as 2020. On his submarine journeys, using sonar to survey the ice cap from underneath, he has observed a 46% thinning over the past 20 years.  

http://earthhopenetwork.net/andes_glaciers_before_and_after_melt.jpg

The Greenland Ice Sheet is Melting

 

The biggest danger to the Gulf Stream comes from melt-water off the Greenland ice sheet, the second largest store of fresh water on this planet. If all of it were to melt, sea levels around the world would rise by 7 meters -- over 20 feet. However even a partial meltdown would affect the Gulf Stream, by diluting the salt water right at the crucial point where the Gulf Stream sinks and returns to the tropics.  

Prof. Michael Schlesinger from the University of Illinois, Urbana-Champaign, whose climate model already predicts a 50% chance of Gulf Stream shutdown if we do not enact climate policies, and a 25% shutdown even if we limit greenhouse gases, based his estimate only on increased rainfall, due to global warming. He now says he will have to include additional melt-water from the Greenland ice sheet into his next set of data, because it appears that the melt has begun.  

Observations on the Greenland ice sheet are done by G.P.S. (global positioning systems) and radar and laser via satellites and airplanes. G.P.S. data of the past 5 years show accelerated melting, and even the beginning of a possible feedback effect: the more the ice sheet melts the faster it starts to move. The reason for this acceleration, it is believed, is that melt-water from the surface of the ice sheet makes its way down to the bedrock below, where it acts as a lubricant, further speeding up the slippage and disintegration. 

The question now is, when does this feedback process reach the point of no return? James Hansen, head of the Goddard Institute for Space Studies, says that if greenhouse-gas emissions are not controlled now, the total disintegration of the Greenland ice sheet could be set in motion in a matter of decades. Although it could take hundreds, perhaps thousands, of years to fully play out, once begun the process would become self-reinforcing and cannot be halted. 

The Gulf Stream is just one part of a complex global system of ocean currents that affect temperatures, winds, and rain across the whole planet. We now have charts of these powerful currents driven by heat and coolness, traversing all oceans, - Atlantic, Pacific, and Indian. And they are all interconnected via the huge circumpolar current flowing around the Antarctic. Changes at the South Pole therefore would have an even larger effect than those in the Arctic.  

http://www.blewbury.co.uk/energy/images/GreenlandMelt.jpg

Ice Shelf Collapses and the Melting of Antarctica

  

The Antarctic is the 5th largest continent. It holds 90% of the world’s fresh water. A comparison in scale to the Greenland ice sheet shows that if all Antarctic ice were to melt, sea levels would rise by over 169 feet. The Antarctic has had a permanent ice sheet for the last 30 million years.

The British Antarctic Survey (BAS) in Cambridge now reports rapid warming on the West Antarctic Peninsula and the WAIS, the West Antarctic Ice Sheet. Of the 224 glaciers on the Antarctic Peninsula, over 87% are in retreat. Major ice shelves have collapsed. BAS scientists believe disappearing ice shelves are now contributing to more rapid melting of glaciers formerly protected by the floating ice shelf at their base. 

 

Antarctica’s huge Larsen B ice shelf collapsed in just 35 days after a NASA satellite detected the first ruptures at the end of January 2002; it was roughly the size of Luxembourg. Soil sediments from that ice shelf reveal that Larsen B had been intact for 20,000 years - since the peak of the last ice age. No collapse of this size has happened since the end of the last Ice Age.



Larsen B's smaller neighbor, Larsen A, broke off in 1995. According to studies by the BAS, other much bigger ice shelves nearby, such as the Ross and Ronne, each larger than France, are also considered at risk of disintegrating. 



Another troubling development in the Antarctic, according to the director of the BAS, Chris Rapley, is the accelerated flow of melt streams underneath the Antarctic ice sheet. Until recently, scientists were unable to explain the 20th century’s world-wide sea-level rises of between 1 and 2 mm per year, by the amount of ice that has melted from glaciers and ice sheets. Even after taking into account thermal expansion, they wondered where the extra water was coming from.  



Recent discoveries show a major hidden source of water comes from polar ice sheets. In the Antarctic, ice streams, and a newly discovered network of tributaries underneath the ice sheets, drain 33 major basins. Flow rates are much faster than previously assumed. Ice streams, from the feed glaciers behind the collapsed Larsen A and B ice shelves, also show accelerated flows. The BAS calls this a “cork out of the bottle” effect. 



These “wild cards,” the melting of the polar ice caps and the acidification of the oceans, were only the most dramatic events on the agenda of the Exeter, UK, meeting on the dangers of climate-change. The number of scientific papers, recording changes in ecosystems due to global warming, escalated in five years, from 14 to more than a thousand. In one presentation after another, scientists described a crisis they had dedicated their lives to avoid.  



Geoffrey Lean, who attended the conference, wrote that there were few in the room that did not sense their children or grandchildren standing invisibly at their shoulders. The formal conclusion of the meeting, that climate change was “already occurring” and that “in many cases the risks are more serious than previously thought,” appeared in the press all over the world -- except in the United States. However even in the European press, very few writers took on the scientific details of this story, without which political action and organizing are impossible. Geoffrey Lean wrote: “Mankind is Sleepwalking to the End of the Earth.” 


http://christiantheology.files.wordpress.com/2009/12/gwreaction.jpg?w=300&h=200


Bush - Wars on Climate Science

 After the Exeter meeting, in an interview for TUC Radio, the director of BAS, Chris Rapley, spoke about how, in public appearances, he bridges the gap between science, and popular understanding of these dramatic changes.  



He said he always refers to the picture of Earth in space taken by Apollo 17: the small blue planet, tilted back to show the Antarctic, surrounded by inky blackness. The image, he says, shows that this is all there is, no other life-support system trails behind; and, that on the planet all is interconnected.  



Earth is the most complex and complicated object in the universe that we know of, says Rapley, a radio astronomer by training. Only Earth has an ocean and clouds. Only Earth has physics, biology, geology, chemistry, and anthropology.  



Humans have transformed the earth in a dramatic way, especially in the last 50 years. Not only have we drastically changed the carbon cycle by the burning of fossil fuel and coal, and by increasing forest fires; we have also changed the nitrogen cycle worldwide by the amount of nitrogen being fixed by industrial agriculture and fertilizer use. 



We have transformed more than half the land surface through agriculture, deforestation, mining, industry, paving, and ever-growing cities. These changes have altered the climate systems by the way moisture is exchanged between Earth and the atmosphere.  

We have destroyed biodiversity by shifting plants and animals into places and conditions where they cannot survive. Our own survival, as humans, is only slightly more secure. We are seeing the most basic of our needs -- air, water, housing, and energy -- disappear before our eyes. Rapley concluded that there is no way to imagine that humans could do all these things without an effect. 

The demise of our common life-support system is accelerated by even more energy-intensive activities, by which a privileged group of people attempts to secure its survival. 

The meeting in Exeter was held explicitly to convince the Bush administration to join the rest of the industrialized world, and to use the July 2005 G8 meeting to set limits on greenhouse gas emissions. The United States and Australia, the world’s two largest polluters, are -- to this day -- refusing to be part of any global agreement to limit CO2 and other greenhouse gases. 

The G8 meeting came and went. The US, with 42% of global fossil fuel CO2, and 34% of combined greenhouse gas emissions, not only remained outside the climate- stabilization effort but also fought vigorously to prevent any progress in setting limits. Given the extraordinary amount of greenhouse gases emitted by the US, this country alone can dramatically slow climate change, or bring the planet to the boiling point. 

Three weeks before the G8 summit, The Observer (UK) printed a set of leaked documents revealing how the Bush White House derailed attempts to address global warming. These submissions to the G8 action plan show that Washington officials deleted even the suggestion that global warming has already started.  

Among the key sentences removed were: “Our world is warming. Climate change is a serious threat that has the potential to affect every part of the globe. And we know that ... mankind's activities are contributing to this warming. This is an issue we must address urgently.” 

At the Exeter conference the International Climate Change Task Force, UK, said that if we do nothing the climate system will collapse. Stephen Byers, the co-chair of that task force and an advisor to Tony Blair, said the point of no return could be reached in a decade. The Bush delegation to the July 2005 G8 summit in Scotland, probably even George Bush himself, is aware of that deadline. 

However the warning disappeared under the same blanket of denial and outright lies produced by industry, their paid scientists, and the Bush administration. Among all official documents that deny climate change, only one sends a different message: the report on “Climate Change as a National Security Concern,” commissioned for Donald Rumsfeld by Pentagon defense adviser Andrew Marshall, and made public in February 2004.  

The Global Business Network wrote for the Pentagon: “the focus in climate research has slowly been shifting from gradual to rapid change. In 2002, the National Academy of Sciences issued a report concluding that human activities could trigger abrupt change. A year later, the World Economic Forum in Davos, Switzerland, included a session at which Robert Gagosian, director of the Woods Hole Oceanographic Institution in Massachusetts, urged policymakers to consider the implications of possible abrupt climate change within two decades.” 

Whether in a decade as the UK scientists say, or two as the Pentagon study says, a consensus is developing that we are reaching a phase of dangerous, abrupt, and irreversible climate shifts. However, for the Bush administration, this is not an ecological or humanitarian, but only a military issue. They question only how to protect US borders from environmental refugees, how to overpower nations collapsing under the environmental pressures, how to keep access to food, water, and energy as other parts of the world go hungry and thirsty; how to keep nuclear pre-eminence, while those weapons in other countries fall into the hands of insurgents.  

The eerie similarity of these goals and methods, with those of the so-called war on terrorism, raises the question of whether that war on terrorism is not really already a war on the Earth. And, as in the war on terrorism, the already occurring ecological disasters -- like the Osama bin Ladens -- are needed and promoted. And the religious fundamentalists are driving this forward because God has given them dominion over the planet to do as they wish. 

And, as irrecoverable time passes, more bad news of ecological landslides emerges: In early August 2005, the New Scientist reported that, in Western Siberia, a permafrost area, the size of France and Germany combined, is thawing for the first time since the ice age, 11,000 years ago. What was until recently an expanse of frozen peat is turning into a broken landscape of mud and lakes, some more than a kilometer across. The area’s peat bog contains an estimated 70 billion tons of methane, a greenhouse gas 20 times more potent than CO2, which, if released, could dramatically increase the rate of global warming.

Even in a best-case scenario, were the methane to be released slowly over a period of 100 years, it would effectively double atmospheric levels of the gas, leading to a 10% to 25% increase in global warming, said scientists at the Hadley Centre in Exeter, UK. The scientists from Tomsk State University and Oxford, who discovered the melt, said that this was yet another feedback effect, an “ecological landslide that is probably irreversible and is undoubtedly connected to climatic warming.”  

There may be some, cynical enough to think that climate change is an interesting science fiction experiment, or greedy enough to want to extract the last drop of oil from the dying Earth for a profit.  

But what about the rest of us: not cynical, not greedy and arrogant? It is pretty clear that there need to be BIG changes in the way we live -- and that is frightening for many, since we have become so dependent on this technological civilization. However scientists tell us that the extreme weather events to come, such as floods, hurricanes, sea-level rise, and unprecedented heat waves, are more frightening than any change in the way we choose to live now.  

There is a set of figures that is both deeply depressing and hopeful. The last published World Bank data for CO2 emissions per capita indicate that, while every man, woman, and child in the US puts out 20 metric tons of CO2 per annum, those in the European Union put out 8 per person per year; China 2; and the output of Nigerians, who supply us with much of the oil that we burn into CO2, is zero -- below scale. In 2002, US-Americans used over 12,000 kilowatt-hours of electricity per person; Europeans used less than half the amount, while the use in China is 987 kilowatt-hours per person. The US per-capita use of oil is twice that of the European Union, and more than 8 times that of China. 

What if China aspires to our standard of living? And why not, if we are not willing to cut back? Europe gets by with so much less CO2-output and energy-input, while already planning for further cuts. Where is the measure of global justice, between those who cause no harm and those whose extravagant use of fossil fuels harms everybody else?

Regardless of who is driving this: industry, the military, religious fundamentalists, or any permutation of government, be it red or blue, responsibility for the approaching climate collapse will fall overwhelmingly on the United States. Since the US government and corporations not only refuse to cut back but are driving eco-collapse forward, it is up to ordinary people to refuse collaboration and to control the perpetrators. For us living in the US, the opportunity and time to make a difference that will affect the entire planet is now. 

by Maria Gilardin

Maria Gilardin produces TUC Radio, a weekly half-hour radio program that is distributed for free to all radio stations via Pacifica Radio's KU Band, and as an mp3 file on TUC Radio's web site: www.tucradio.org. She may be reached at: tuc@tucradio.org




Images – http://www.heatingoil.com/wp-content/uploads/2011/09/manhattan.jpg
http://www.onepennysheet.com/wp-content/uploads/2009/10/carbon-emissions.jpg
http://earthhopenetwork.net/andes_glaciers_before_and_after_melt.jpg 
http://www.blewbury.co.uk/energy/images/GreenlandMelt.jpg
http://christiantheology.files.wordpress.com/2009/12/gwreaction.jpg?w=300&h=200




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