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Thursday, February 21, 2008

Brazil Plans Fund to Help Finance Amazon Conservation (Update1)

Brazil's government plans to set up a donation-based fund to help finance conservation of the Amazon after illegal logging increased last year.

The government is seeking to raise $200 million from Norway and corporate sources in the first year, said Tasso Azevedo, director of the country's forestry services. The fund, to be established in May, will seek to raise as much as $1 billion annually to help slow deforestation of the Amazon, he said.

``Everybody says they want to help maintain the Amazon, but nobody has reached into their pockets until now,'' Azevedo told reporters today in Brasilia. The fund creates an opportunity to help preserve an area that represents about half the world's remaining rainforest.

Deforestation in the Amazon accelerated in the last five months of 2007, after slowing for the past four years, the Environmental Ministry said in a release distributed Jan. 23 in Brasilia. Preliminary figures show destruction between August and December may have reached as many as 7,000 square kilometers, or the equivalent of 60 percent of the deforestation in the 12 months through July 2007.

President Luiz Inacio Lula da Silva urged G-8 countries to contribute to the fund. Brazil needs about $2 billion annually to stop illegal logging in the Amazon, Azevedo said. Congress has allocated 500 million reais ($292 million) over four years from the budget to preserve the rainforest, he said.

``The countries that pollute the most need to pay their counterparts so poor nations can do what they haven't had the courage to do,'' Lula said today in Brasilia.

Donations for the fund won't generate carbon credits for the investors, he said. About 20 percent of global carbon emissions come from deforestation and forest degradation, according to the World Bank.

Brazil's state-development bank will be responsible for raising money for the fund.

http://www.bloomberg.com/apps/news?pid=20601086&sid=a8mplk223ua4&refer=latin_america

Tuesday, February 19, 2008

Lawmakers gather in Brazil to discuss climate change

Lawmakers from the world's major industrial nations and five emerging economies gather in Brazil from Wednesday to discuss a global climate change treaty currently under consideration.

This will be the first gathering of legislators from wealthy and developing countries to help shape the post Kyoto Protocol agreement, World Bank Vice President for Latin America, Pamela Cox, told Reuters.

"Legislators are more than just another voice," Cox said. "In many countries they are the ones that actually sponsor and enact the laws that may govern any future climate change agenda," she added.

Cox, who will attend the conference in Brasilia, said reducing the carbon emissions that cause climate change requires a global solution.

"It is such an important global issue that it can't be a bilateral discussion, you need to engage society across the board," she said. "I don't think there has been any other sort of initiative or event like this."

The meeting of 100 lawmakers includes the Group of Eight industrial countries -- Britain, the United States, France, Germany, Italy, Russia, Canada and Japan -- and fast-developing nations China, Brazil, India, South Africa and Mexico.

The Kyoto Protocol was aimed at traditionally industrial powers and their emissions and did not target emerging and developing economies such as China and India. The post Kyoto treaty being negotiated will include all nations to ensure cuts in all forms of greenhouse gas emissions.

Brazil's concerned its involvement in a multilateral treaty will undermine its sovereignty over its Amazon rainforest region. Yet it is the world's fourth largest producer of greenhouse gases, virtually all of it as a result of deforestation.

PROTECTING FORESTS

The World Bank is leading efforts to develop private-sector and other solutions to curb greenhouse gas emissions, including those that emanate from deforestation.

In October, the Bank said it was developing a Forest Carbon Partnership Facility that would provide financial incentives to countries for protecting and replanting tropical forests, which store huge amounts of carbon that causes climate change.

Deforestation contributes 20 percent of total greenhouse gas emissions, more than all the world's cars, trucks, trains and airplanes combined. By creating economic value for tropical forests, the facility can help developing nations like Brazil generate new revenue for poverty alleviation.

Brazilian President Luiz Inacio Lula da Silva is expected to address the conference. He has argued that rich countries are responsible for 60 percent of the gas emissions and therefore need to shoulder the responsibility.

Brazil, like other developing nations, is also worried that solutions to climate change could hamper economic development.

"Both sides need more understanding of each other's point of view because it's a global issue and we are all in this together," Cox said. "These countries need to be seen as full partners. It isn't just who pays but who plays, and we're expecting the G8 will pay and these middle-income countries will play and we need to figure out how that will work out," she added.

Cox said it was important to balance development and environmental needs.

"We would like to help on the debate but also to put the development focus into the debate. It isn't an either/or," she said. "While money is helpful, it is also important that they have a voice in the process, that they feel heard, that their interests are respected. If you don't do that you won't have a long-run sustainable solution," she added.

http://www.guardian.co.uk/feedarticle?id=7321922

Private forest a model to protect Amazon

Reforestation & sustainable forestry

While Brazilian authorities struggle to contain the rate of illegal deforestation of the Amazon, a selective logging operation with government backing is being hailed as a model for sustainable forestry and rainforest conservation.

Local paper and pulp manufacturer Orsa runs a private forestry operation on a 1.7 million hectare property beside the Jari River in the northern state of Para. The company owns the land on which the native rainforest stands and conserves the forest within a programme of selective logging.

The international Forest Stewardship Council has given the operation its blessing and certifies the timber produced, inspecting the operation twice a year since harvesting began five years ago.

Trees are only harvested at a similar rate to the natural regeneration rate of the forest and logging is conducted in a way that protects surrounding trees and avoids collateral damage to the forest and its biodiversity.

The timber is inventoried and certified for use in the manufacture of wood products. The company boasts it can tell any overseas customer of end-products like furniture exactly which tree it was made from.

Around 400 local people are employed in the operation, some as forest security guards. Others are allowed access to the forest to collect material for making products including baskets and jewellery, and in so doing also help monitor and protect the forest from illegal loggers. They say the income they receive is meagre but welcome. The company also provides health care as part of the arrangement.

Ana Yang of the FSC says the project protects far more trees than are logged and has called for the government to make it easier for operations like this to get up and running. It’s much easier to get a logging licence than it is to get one to for forestry management, she told Reuters.

The government has announced a tender for the sale in March 2008 of more rainforest to be managed in a similar way. Its forestry agency says the idea is to expand private forest management as a means of protecting the Amazon. But the government will proceed cautiously because the concept remains controversial.

http://www.carbonpositive.net/viewarticle.aspx?articleID=996

Monday, February 18, 2008

Uruguay recommends yellow fever vaccine for visitors to Paraguay, Brazil

Uruguay's Public Health Ministry recommended Monday yellow fever vaccinations for all those who plan to travel to Paraguay, and to some jungle areas of Brazil.

The ministry said in a statement that it was waiting for more information from the Paraguayan authorities and Pan-American Health Organization officials about the national health emergency in Paraguay sparked by the disease.

The high risk areas of Brazil include the most heavily wooded parts of the states of Acre, Amapa, Amazonas, Goias, Maranhao, Mato Grosso, Mato Grosso do Sul, Para, Rondonia, Roraima, Tocantins and Minas Gerais.

Also mentioned are towns in the south of Piaui state, in the west and south of Bahia, the north of Espiritu Santo, the northeast of Sao Paulo and the west of the states of Parana, Santa Catarina and Rio Grande do Sul.

However, the ministry said that coastal cities are not high risk areas, naming Rio Grande do Sul, Santa Catarina, Rio de Janeiro, Sao Paulo, Salvador, Recife and Fortaleza specifically.

"The situation discussed must be considered in the epidemiological context of Brazil's yellow fever virus presence, which has not registered any urban cases since 1942," the statement said. Since then, in Brazil, the virus has only spread in rural areas or rainforest.

Paraguayan media have reported six deaths in recent days due to yellow fever. But there is yet to be official confirmation of the causes of the deaths.

http://news.xinhuanet.com/english/2008-02/19/content_7628941.htm

Amazon Corridors Far Too Narrow, Warn Scientists

Protected forest strips buffering rivers and streams of the Amazon rainforest should be significantly wider than the current legal requirement, according to pioneering new research by scientists at the University of East Anglia. This is the first wildlife study on remnant riparian tropical forest corridors.

Brazilian forestry legislation currently requires that all forest strips alongside rivers and streams on private land be maintained as permanent reserves and it sets a minimum legal width of 60m.

But after investigating the effects of corridor width on the number of bird and mammal species, Alexander Lees and Dr Carlos Peres of UEA's School of Environmental Sciences say a minimum critical width of 400m is necessary.

The findings come as the existing legislation protecting remnant forest corridors is being actively debated in the Brazilian Congress. "There are proposals on the table to actually weaken the minimum legal requirements, when they need to be strengthened," said Dr Peres.

"This is a huge wildlife conservation issue locally - with global implications in terms of biodiversity and climate change - and we would urge policy-makers to act on this important new research before it is too late."

http://www.sciencedaily.com/releases/2008/02/080218134554.htm

Sunday, February 17, 2008

The new climate science: Governments gamble with our survival

Almost universally, governments are refusing to recognise the scope and urgency of the changes demanded by global warming. The menace, however, is real, and the time available for concerted action to combat it is frighteningly brief.

There is something counter-intuitive here, when most of us are still experiencing climate change only as near-imperceptible shifts in average temperatures. But nature is gradualist only up to a point. The smooth curves that describe “linear” processes can suddenly turn jagged.

Startling new phenomena emerge, often with bewildering abruptness. At certain points, even small quantitative changes can become huge changes of quality. If ocean water heats up beyond 27.7̊C, the weather systems that form over it can include not just local storms, but hurricanes hundreds of kilometres across.

This is non-linear change, in which gradual processes push elements of the material world past natural “tipping points” or “trigger mechanisms”, after which new and unfamiliar processes take over.

The Earth’s climate, especially if viewed over long periods, is full of non-linear processes. Renowned climate scientist James Hansen, director of NASA’s Goddard Space Research Institute, speaks of the Earth being “whipsawed between climate states” as the amount of energy entering and leaving the atmosphere undergoes seemingly minor shifts — in the language of climate science, “forcings”.

The Earth’s climate, Hansen observes, is “remarkably sensitive to global forcings”. This, he explains, is because of a predominance of “positive feedbacks”. Gradual warming or cooling brings natural systems to the point where new processes cut in and multiply an earlier trend. Climate change then becomes self-accelerating.

The human-induced rise in global temperatures due to the burning of fossil fuels is an exceptionally large forcing, much stronger than the changes that set off and ended the ice ages of the past million years or so. Over a few decades, the burning of fossil fuels promises to thrust the Earth’s biosphere past a series of tipping points, into a climate state hotter than any since modern human beings evolved.

Albedo flip

The term “albedo” refers to the propensity of the Earth’s surface to reflect radiation from the sun back out into space. Ice and snow reflect about 80% of the sun’s heat, while for open ocean the figure can be as little as 10%.

Even minor shifts in global temperatures can produce marked changes in the extent of snow-covered ground and sea ice. These changes then multiply or reduce the amount of the sun’s radiation that remains to heat the Earth. Repeatedly in the past, dramatic changes in albedo — referred to as albedo flip — have been crucial for helping to transform slight changes in the Earth’s orbit and angle of rotation into ice ages and interglacial warm periods.

During 2007, the world’s climate scientists came to realise that albedo flip was underway again. The area of sea ice in the Arctic Ocean during the northern summer was nearly 23% smaller than the previous record. Moreover, this ice was unusually thin; NASA satellite data indicated that the volume of the ice at the end of the summer was just half what it had been four years earlier. Surface temperatures in the Arctic Ocean were the highest on record, in some places 4.5̊C above normal.

Scientists studying the icecaps of Greenland and West Antarctica — to the south of South America — were making analogous findings. Melting was found to be accelerating at alarming rates. Instead of lying thousands of years in the future, Hansen warned, the disintegration of these icecaps might be a prospect for the end of the century.

Prehistoric peat

The warming of the Arctic Ocean has affected nearby land masses, with recent annual temperatures in northern and western Siberia as much as 3̊C above average. Snow cover comes later and departs sooner. Capturing large additional amounts of heat from the sun, the albedo flip threatens to act as a trigger for other non-linear warming processes. The materials for a number of such processes are on hand in the form of vast quantities of carbon contained in Arctic and sub-Arctic peat bogs.

According to researcher Chris Freeman of the University of Wales, a third of the carbon stored on land — a quantity approaching the entire amount of carbon in the atmosphere — is locked up in peat — that is, partly decomposed vegetable matter prevented by low temperatures and acidic conditions from decaying fully. Another estimate, quoted by the New Scientist in 2004, calculates that the bogs of Europe, Siberia and North America hold the equivalent of 70 years of global industrial emissions.

Now, warmer temperatures mean that this carbon is starting to return to the atmosphere.

Warmer conditions in the Arctic are bringing about the widespread melting during summer of permafrost — that is, once-permanently frozen soil and swamps, frequently containing large amounts of peat. Countless new thaw lakes have appeared, and from the lake margins ominous quantities of greenhouse gases are now bubbling, as the peat begins to break down.

The decay of peat follows a range of chemical pathways. In oxygen-poor conditions, anaerobic bacteria produce the gas methane (CH4). Studying thaw lakes in northern Siberia, the journal Nature reported in September 2006, researchers from the University of Alaska found that methane flux from thaw lakes was as much as five times higher than previously estimated.

Much of the methane was ancient, formed during previous warm periods and stored as bubbles in permafrost for scores of thousands of years. The exceptionally rapid warming of recent times thus promises to release far more methane than would be created by the year-on-year breakdown of plant matter.

Methane in the atmosphere is relatively short-lived, persisting for only a few decades compared with several hundred years for carbon dioxide. But while methane is present, its greenhouse impact exceeds that of carbon dioxide by at least 20 times. A massive burst of methane in coming decades could sharply accelerate global warming, and act as a trigger for other non-linear processes.

Carbonated rivers

Carbon from peat bogs enters the atmosphere as carbon dioxide as well as methane. If the bogs dry out in warm weather, the peat readily combines with oxygen from the air. On occasion, it even catches fire.

Even if the peat remains saturated, the conditions of the new era of climate change are well able to turn it into carbon dioxide. According to New Scientist in 2004, researchers have found that quantities of dissolved organic carbon (DOC) are rising at as much as 6% per year in rivers that flow through peatlands. Once the DOC is in the rivers, bacteria rapidly convert it into carbon dioxide that bubbles to the surface.

The melting of Arctic permafrost will dramatically increase the area of peatlands where this effect applies. Once the bogs have melted, research by Chris Freeman indicates, the main reason for the growing DOC levels is not so much higher temperatures as the increased amounts of carbon dioxide and nitrogen compounds already in the atmosphere. Accumulating in the soil moisture, these appear to feed bacteria that break down the peat. “The peat bogs are going into solution”, New Scientist remarked.

By the middle of the century, Freeman told New Scientist, DOC emissions from peat bogs and rivers could be as big a source of atmospheric carbon dioxide as the burning of fossil fuels.

Despoiling the forests

Lesser but still perilous amounts of carbon seem destined to enter the atmosphere through the effects of deforestation. Brazil and Indonesia are among the top four greenhouse polluters, primarily because of the logging and burning of their forests. According to the London Independent in January, one-fifth of the Amazon basin has been stripped of its trees in recent years. In December, the World Wildlife Fund published research suggesting the Amazon forests could disappear by 2030.

Even where the chainsaws have not penetrated, forests can suffer drastically if there is widespread logging in nearby regions. Cleared rainforests regenerate slowly at best, and soil degradation often makes their regrowth impossible. The savannas or crop culture that mostly succeed the forests allow far more sunlight to reach the earth, resulting in higher regional air temperatures and lower humidity. Droughts become more frequent, and in the drier conditions forests become susceptible to burning. Rainforest plants are ill-adapted to fire, and are quickly killed. With the foliage gone, temperatures rise, and yet more forest dries out.

What the loggers have begun, global warming seems set to exacerbate. Quite independently of human assaults on the rainforest, modelling of rainfall in the future greenhouse world indicates a trend to drier conditions both in the eastern Amazon, and with more frequent El Nino events, in Indonesia. A paper in 2000 by the Hadley Centre of the British Meteorological Office speaks of the near-total collapse of the Amazon rainforest unless global temperature rises are kept to the now-difficult level of 2̊C. Models describe an Amazon climate in 2100 with almost no rainfall, and average temperatures of 38̊C.

According to British writer George Monbiot in his 2006 book Heat, the Amazon basin alone has the potential to release 730 million tonnes of carbon per year, about 10% of today’s human-induced emissions, for the next 75 years.

Greenhouse soils

While the ravaging of the Earth’s tropical forests promises to be the first, most visible catastrophe of the era of global warming, a climate disaster of even greater scope could be developing in the soil beneath our feet.

Scientists have known for many years that with extra carbon dioxide, plants grow more vigorously. In six years of experiments in Florida, a Northern Arizona University team hoped to find that the amounts of carbon fixed in soils would increase as well.

The reverse turned out to be true. Reporting in 2007, the researchers explained that as carbon dioxide levels in the air increased, soil carbon was actually lost back into the atmosphere. The reason, the scientists concluded, was increased activity by soil fungi.

Observations from nature confirmed the experimental findings. In 2005 the British Guardian reported that a 25-year study of soils in England and Wales had discovered carbon losses “consistently, everywhere … and therefore probably everywhere in the temperate world”. The richer the soils, the scientists observed, the higher the rate of loss.

The carbon contained in English and Welsh soils was migrating to the atmosphere, the scientists calculated, at an average rate of 0.6% per year. Across Britain, the extra carbon dioxide was enough to cancel out all the emissions savings Britain was due to make under its Kyoto Protocol obligations.

Worldwide, the soil carbon reservoir is reckoned at more than double the carbon content of the atmosphere. Without prompt, drastic curbs on fossil fuel emissions, the mobilising of soil carbon could overtake all efforts to restrict global warming.

Vanishing sinks

Of more than 7 billion tonnes of carbon that reaches the atmosphere each year as a result of human activity, the Earth’s natural systems absorb about 4 billion tonnes. Obviously, any process that reduces this natural absorption adds to global warming. The clearing of forests represents a major reduction in the Earth’s carbon “sinks”.

Now another such reduction, also massive, has been identified. This involves changes to the chemistry of one of the Earth’s oceans.

Historically, the oceans have absorbed about 2 billion tonnes of carbon from the atmosphere each year. But in May 2007, New Scientist reported that the Southern Ocean — previously one of the biggest sinks —, had in effect stopped soaking up carbon dioxide.

For 24 years, scientists at the University of East Anglia in Britain had been monitoring oceanic carbon around the globe. During this time, they found that the Southern Ocean carbon reservoir remained virtually constant.

“This is surprising”, researcher Corinne Le Quere told New Scientist, “because during the same time CO2 emissions increased by 40 per cent. As the sources of CO2 go up we would expect the reservoir to increase too.”

The explanation appears to relate to the fact that deep ocean water normally contains higher levels of dissolved carbon dioxide than water higher up. Near the surface, vast quantities of tiny organisms use sunlight, along with carbon dioxide absorbed from the air, to carry out photosynthesis. When marine organisms die, their remains sink to lower levels, taking their carbon content with them. In time, this organic matter oxidises and enters solution.

With global warming, the Southern Ocean in recent decades has become noticeably windier. The increased windiness causes additional churning of the waters, bringing water from greater depths to the surface. With it comes the stored carbon, enough to ensure that the net flow of carbon dioxide between the atmosphere and the surface waters is roughly zero.

Gambles we must not allow

Like other non-linear phenomena, changes in the oceanic carbon sink are difficult to quantify and predict. Who yet knows whether, or how fast, the effect seen in the Southern Ocean will develop in other ocean regions? Consequently, the scientists who prepare global climate models have often been reluctant to try to incorporate non-linear effects into their work, at least until more complete data become available.

One result of this reluctance is that “official” climate reports, though often disturbing, have not been nearly as frightening as they ought to be. This is the case with the Fourth Assessment Report of the United Nations Intergovernmental Panel on Climate Change (IPCC), presented late in 2007. This report had a cut-off date for citations of May 2005, meaning that much new evidence on non-linear phenomena was not taken into account at all.

The IPCC’s report presents generally conservative findings, hedging them with warnings that the actual reality could turn out to be much worse. Predictably, governments and corporations have cited the IPCC’s cautious baseline figures, while essentially ignoring the caveats.

The uncertainties in the science, however, do not permit this irresponsibility. Particular tipping points may turn out to be more remote than expected, and positive feedbacks less potent. But there are many non-linear processes, and we will not be lucky in every case. If governments will not take the lead in preventing disaster, populations must seize the initiative instead, and enforce the transformations required.

http://www.greenleft.org.au/2008/740/38310

Saturday, February 16, 2008

Cane ethanol is an alternative fuel that could benefit Florida

There are many misconceptions about ethanol and Brazil. The letter to the editor, "Cutting down rainforests to grow biofuels may be self-defeating" (Feb. 8), decrying the "hoopla" in the South Florida Sun-Sentinel's excellent Feb. 5 feature, takes the mainstream America view of world environmental problems: that they are caused by selfish foreign countries, while we Americans are the guardians of the globe.

To link ethanol to the rainforest is inaccurate. The Amazon basin is one-half of Brazil's territory. Sugar cane for ethanol is not grown there, but in the savannah (cerrado), which constitutes most of the remaining half. The savannah, not the Amazon, is Brazil's agricultural powerhouse, but only half of it is under cultivation. Without even considering the Amazon, Brazil has the land to feed itself and much of the rest of the world and still produce biofuels.

"Rainforest" has become an American code word for dodging our own responsibility for the globe's environmental woes. We speak of the forest as "the lungs of the world," the global filter for greenhouse gases. But where do those gases come from? Not much from Brazil, not when compared to the United States. One state alone, California, emits more than all of Brazil. Is Brazil obligated to maintain its forest, at its own expense, as a filter system for the fallout from American consumerism, especially when the United States rejects international environmental initiatives, such as Kyoto?

When we are so arrogant, we cannot claim the tropical forests as "ours." The only rainforest that is "ours" is the Pacific Northwest, the world's largest temperate rainforest, which has long been given over to logging interests. Forgetting the "rain" part, we began leveling our eastern forests centuries ago. But that was then and this is now, and Brazil is being asked to do as we say, not as we did.

Brazil is in fact doing a great deal to preserve the Amazon. But it is an area equal to most of the western United States. How would we do if we had to patrol all of our western mountains, deserts and forests for poachers and squatters, even with satellites, infrared images and aircraft, as Brazil does? It's not so easy, and Brazil deserves support for what it is doing, not criticism.

Americans who follow the "rainforest" line when it comes to biofuels are buying into the "hoopla" of the American petroleum and corn industries, which have long shown themselves to be no friends of the environment. Domestic corn ethanol is a zero-sum game. Corn ethanol yields almost no net energy gain over the energy required to produce it, almost all of which comes from petroleum. Petroleum is simply being converted into ethanol, which is profitable only because of the 54-cent-per-gallon taxpayer-financed subsidy and the 51-cent-per-gallon import tariff. Brazilian cane ethanol, on the other hand, yields eight times the net energy of corn and requires only one-half the planted area.

Cane ethanol is a clean, renewable alternative fuel that could greatly benefit Florida, the United States and the globe. To share in the benefits, however, we must import it, as shown in the Sun-Sentinel's feature. Furthermore, under Gov. Charlie Crist's proposals, Florida could greatly benefit by becoming the ethanol import hub.

We Americans are blinded in our headlong rush to consume ever more and to bend the rest of the world to our "needs." We should slow down, face reality and employ all available means, principally reduction of consumption but also measures such as alternative fuels, to lessen our aggression against the globe.

http://www.sun-sentinel.com/news/opinion/sfl-forum18ethanolsbfeb18,0,3858998.story