"In a sustainable community, resource consumption is balanced by resources assimilated by the ecosystem. The sustainability of a community is largely determined by the web of resources providing its food, fiber, water, and energy needs and by the ability of natural systems to process its wastes. A community is unsustainable if it consumes resources faster than they can be renewed, produces more wastes than natural systems can process or relies upon distant sources for its basic needs."
Showing posts with label sea level rise. Show all posts
Showing posts with label sea level rise. Show all posts

Sunday, May 4, 2014

Climate change is clear and present danger, says landmark US report

Climate change has moved from distant threat to present-day danger and no American will be left unscathed, according to a landmark report due to be unveiled on Tuesday.

The National Climate Assessment, a 1,300-page report compiled by 300 leading scientists and experts, is meant to be the definitive account of the effects of climate change on the US. It will be formally released at a White House event and is expected to drive the remaining two years of Barack Obama's environmental agenda.

The findings are expected to guide Obama as he rolls out the next and most ambitious phase of his climate change plan in June – a proposal to cut emissions from the current generation of power plants, America's largest single source of carbon pollution.

The White House is believed to be organising a number of events over the coming week to give the report greater exposure.

"Climate change, once considered an issue for a distant future, has moved firmly into the present," a draft version of the report says. The evidence is visible everywhere from the top of the atmosphere to the bottom of the ocean, it goes on.

"Americans are noticing changes all around them. Summers are longer and hotter, and periods of extreme heat last longer than any living American has ever experienced. Winters are generally shorter and warmer. Rain comes in heavier downpours, though in many regions there are longer dry spells in between."

The final wording was under review by the White House but the basic gist remained unchanged, scientists who worked on the report said.

On Sunday the UN secretary-general, Ban Ki-moon, said the world needed to try harder to combat climate change. At a meeting of UN member states in Abu Dhabi before a climate change summit in New York on 23 September, Ban said: "I am asking them to announce bold commitments and actions that will catalyse the transformative change we need. If we do not take urgent action, all our plans for increased global prosperity and security will be undone."

Gary Yohe, an economist at Wesleyan University and vice-chair of the NCA advisory committee, said the US report would be unequivocal that the effects of climate change were occurring in real-time and were evident in every region of the country.

"One major take-home message is that just about every place in the country has observed that the climate has changed," he told the Guardian. "It is here and happening, and we are not cherrypicking or fearmongering."

The draft report notes that average temperature in the US has increased by about 1.5F (0.8C) since 1895, with more than 80% of that rise since 1980. The last decade was the hottest on record in the US.

Temperatures are projected to rise another 2F over the next few decades, the report says. In northern latitudes such as Alaska, temperatures are rising even faster.

"There is no question our climate is changing," said Don Wuebbles, a climate scientist at the University of Illinois and a lead author of the assessment. "It is changing at a factor of 10 times more than naturally."

Record-breaking heat – even at night – is expected to produce more drought and fuel larger and more frequent wildfires in the south-west, the report says. The north-east, midwest and Great Plains states will see an increase in heavy downpours and a greater risk of flooding.

"Parts of the country are getting wetter, parts are getting drier. All areas are getting hotter," said Virginia Burkett, chief scientist for global change at the US Geological Survey. "The changes are not the same everywhere."

Those living on the Atlantic seaboard, Gulf of Mexico, and Alaska who have weathered the effects of sea level rise and storm surges can expect to see more. Residents of coastal cities, especially in Florida where there is already frequent flooding during rainstorms, can expect to see more. So can people living in inland cities sited on rivers.

Some changes are already having a measurable effect on food production and public health, the report will say.

John Balbus, senior adviser at the National Institute of Environmenal Health Science and a lead author of the NCA report, said rising temperatures increased the risk of heat stroke and heat-related deaths.

Eugene Takle, convening lead author of the agriculture chapter of the NCA report, and director of the Climate Science programme at Iowa State University, said heatwaves and changes in rainfall had resulted in a levelling off in wheat and corn production and would eventually cause declines.

In California, warmer winters have made it difficult to grow cherries. In the midwest, wetter springs have delayed planting. Invasive vines such as kudzu have spread northward, from the south to the Canadian border.

Some of the effects on agriculture, such as a longer growing season, are positive. But Takle said: "By mid-century and beyond the overall impacts will be increasingly negative on most crops and livestock."

The assessments are the American equivalent of the UN's Intergovernmental Panel on Climate Change (IPCC) reports. This year's report for the first time looks at what America has done to fight climate change or protect people from its consequences in the future.

Under an act of Congress the reports were supposed to be produced every four years, but no report was produced during George W Bush's presidency. More

 

Thursday, January 16, 2014

Planet Earth - The Next Thirty Years

What These Climate Scientists Said About Earth's Future Will Terrify You

I spoke with apocalyptic climate scientists about what our next generation faces, and their answers were bleak.

| Tue Dec. 17, 2013 12:11 PM GMT

Consider this timeline:

  • Late 2007: The Intergovernmental Panel on Climate Change (IPCC) announces that the planet will see a one degree Celsius temperature increase due to climate change by 2100.
  • Late 2008: The Hadley Centre for Meteorological Research predicts a 2C increase by 2100.
  • Mid-2009: The U.N. Environment Programme predicts a 3.5C increase by 2100. Such an increase would remove habitat for human beings on this planet, as nearly all the plankton in the oceans would be destroyed, and associated temperature swings would kill off many land plants. Humans have never lived on a planet at 3.5C above baseline.
  • October 2009: The Hadley Centre for Meteorological Research releases an updated prediction, suggesting a 4C temperature increase by 2060.
  • November 2009: The Global Carbon Project, which monitors the global carbon cycle, and the Copenhagen Diagnosis, a climate science report, predict 6C and 7C temperature increases, respectively, by 2100.
  • December 2010: The U.N. Environment Programme predicts up to a 5C increase by 2050.
  • 2012: The conservative International Energy Agency's World Energy Outlook report for that year states that we are on track to reach a 2C increase by 2017.
  • November 2013: The International Energy Agency predicts a 3.5C increase by 2035.

A briefing provided to the failed U.N. Conference of the Parties in Copenhagen in 2009 provided this summary: "The long-term sea level that corresponds to current CO2 concentration is about 23 meters above today's levels, and the temperatures will be 6 degrees C or more higher. These estimates are based on real long-term climate records, not on models."

On December 3rd, a study by 18 eminent scientists, including the former head of NASA's Goddard Institute for Space Studies, James Hansen, showed that the long-held, internationally agreed upon target to limit rises in global average temperatures to 2 degrees Celsius was in error and far above the 1C threshold that would need to be maintained in order to avoid the effects of catastrophic climate change.

And keep in mind that the various major assessments of future global temperatures seldom assume the worst about possible self-reinforcing climate feedback loops like the methane one.

"Things Are Looking Really Dire"

Climate-change-related deaths are already estimated at five million annually, and the process seems to be accelerating more rapidly than most climate models have suggested. Even without taking into account the release of frozen methane in the Arctic, some scientists are already painting a truly bleak picture of the human future. Take Canadian Wildlife Service biologist Neil Dawe, who in August told a reporter that he wouldn't be surprised if the generation after him witnessed the extinction of humanity. All around the estuary near his office on Vancouver Island, he has been witnessing the unraveling of "the web of life," and "it's happening very quickly."

"Economic growth is the biggest destroyer of the ecology," Dawe says. "Those people who think you can have a growing economy and a healthy environment are wrong. If we don't reduce our numbers, nature will do it for us." And he isn't hopeful humans will be able to save themselves. "Everything is worse and we're still doing the same things. Because ecosystems are so resilient, they don't exact immediate punishment on the stupid."

The University of Arizona's Guy McPherson has similar fears. "We will have very few humans on the planet because of lack of habitat," he says. Of recent studies showing the toll temperature increases will take on that habitat, he adds, "They are only looking at CO2 in the atmosphere."

Here's the question: Could some version of extinction or near-extinction overcome humanity, thanks to climate change—and possibly incredibly fast? Similar things have happened in the past. Fifty-five million years ago, a five degree Celsius rise in average global temperatures seems to have occurred in just 13 years, according to a study published in the October 2013 issue of the Proceedings of the National Academy of Sciences. A report in the August 2013 issue of Science revealed that in the near-term Earth's climate will change 10 times faster than at any other moment in the last 65 million years.

"The Arctic is warming faster than anywhere else on the planet," climate scientist James Hansen has said. "There are potential irreversible effects of melting the Arctic sea ice. If it begins to allow the Arctic Ocean to warm up, and warm the ocean floor, then we'll begin to release methane hydrates. And if we let that happen, that is a potential tipping point that we don't want to happen. If we burn all the fossil fuels then we certainly will cause the methane hydrates, eventually, to come out and cause several degrees more warming, and it's not clear that civilization could survive that extreme climate change."

Yet, long before humanity has burned all fossil fuel reserves on the planet, massive amounts of methane will be released. While the human body is potentially capable of handling a six to nine degree Celsius rise in the planetary temperature, the crops and habitat we use for food production are not. As McPherson put it, "If we see a 3.5 to 4C baseline increase, I see no way to have habitat. We are at .85C above baseline and we've already triggered all these self-reinforcing feedback loops."

He adds: "All the evidence points to a locked-in 3.5 to 5 degree C global temperature rise above the 1850 ‘norm' by mid-century, possibly much sooner. This guarantees a positive feedback, already underway, leading to 4.5 to 6 or more degrees above ‘norm' and that is a level lethal to life. This is partly due to the fact that humans have to eat and plants can't adapt fast enough to make that possible for the seven to nine billion of us—so we'll die."

If you think McPherson's comment about lack of adaptability goes over the edge, consider that the rate of evolution trails the rate of climate change by a factor of 10,000, according to apaper in the August 2013 issue of Ecology Letters. Furthermore, David Wasdel, director of the Apollo-Gaia Project and an expert on multiple feedback dynamics, says, "We are experiencing change 200 to 300 times faster than any of the previous major extinction events."

Wasdel cites with particular alarm scientific reports showing that the oceans have already lost 40 percent of their phytoplankton, the base of the global oceanic food chain, because of climate-change-induced acidification and atmospheric temperature variations. (According to the Center for Ocean Solutions: "The oceans have absorbed almost one-half of human-released CO2 emissions since the Industrial Revolution. Although this has moderated the effect of greenhouse gas emissions, it is chemically altering marine ecosystems 100 times more rapidly than it has changed in at least the last 650,000 years.")

"This is already a mass extinction event," Wasdel adds. "The question is, how far is it going to go? How serious does it become? If we are not able to stop the rate of increase of temperature itself, and get that back under control, then a high temperature event, perhaps another 5-6 degrees [C], would obliterate at least 60 percent to 80 percent of the populations and species of life on Earth."

What Comes Next?

In November 2012, even Jim Yong Kim, president of the World Bank Group (an international financial institution that provides loans to developing countries), warned that "a 4C warmer world can, and must be, avoided. Lack of action on climate change threatens to make the world our children inherit a completely different world than we are living in today."

A World Bank-commissioned report warned that we are indeed on track to a "4C world" marked by extreme heat waves and life-threatening sea-level rise.

The three living diplomats who have led U.N. climate change talks claim there is little chance the next climate treaty, if it is ever approved, will prevent the world from overheating. "There is nothing that can be agreed in 2015 that would be consistent with the 2 degrees," says Yvo de Boer, who was executive secretary of the United Nations Framework Convention on Climate Change in 2009, when attempts to reach a deal at a summit in Copenhagen crumbled. "The only way that a 2015 agreement can achieve a 2-degree goal is to shut down the whole global economy."

Atmospheric and marine scientist Ira Leifer is particularly concerned about the changing rainfall patterns a recently leaked IPCC draft report suggested for our future: "When I look at what the models predicted for a 4C world, I see very little rain over vast swaths of populations. If Spain becomes like Algeria, where do all the Spaniards get the water to survive? We have parts of the world which have high populations which have high rainfall and crops that exist there, and when that rainfall and those crops go away and the country starts looking more like some of North Africa, what keeps the people alive?"

The IPCC report suggests that we can expect a generalized shifting of global rain patterns further north, robbing areas that now get plentiful rain of future water supplies. History shows us that when food supplies collapse, wars begin, while famine and disease spread. All of these things, scientists now fear, could happen on an unprecedented scale, especially given the interconnected nature of the global economy.

"Some scientists are indicating we should make plans to adapt to a 4C world," Leifer comments. "While prudent, one wonders what portion of the living population now could adapt to such a world, and my view is that it's just a few thousand people [seeking refuge] in the Arctic or Antarctica."

Not surprisingly, scientists with such views are often not the most popular guys in the global room. McPherson, for instance, has often been labeled "Guy McStinction"—to which he responds, "I'm just reporting the results from other scientists. Nearly all of these results are published in established, esteemed literature. I don't think anybody is taking issue with NASA, or Nature, or Science, or the Proceedings of the National Academy of Sciences. [Those] and the others I report are reasonably well known and come from legitimate sources, like NOAA [the National Oceanic and Atmospheric Administration], for example. I'm not making this information up, I'm just connecting a couple of dots, and it's something many people have difficulty with."

McPherson does not hold out much hope for the future, nor for a governmental willingness to make anything close to the radical changes that would be necessary to quickly ease the flow of greenhouse gases into the atmosphere; nor does he expect the mainstream media to put much effort into reporting on all of this because, as he says, "There's not much money in the end of civilization, and even less to be made in human extinction." The destruction of the planet, on the other hand, is a good bet, he believes, "because there is money in this, and as long as that's the case, it is going to continue."

Leifer, however, is convinced that there is a moral obligation never to give up and that the path to global destruction could be altered. "In the short term, if you can make it in the economic interests of people to do the right thing, it'll happen very fast." He offers an analogy when it comes to whether humanity will be willing to act to mitigate the effects of climate change: "People do all sorts of things to lower their risk of cancer, not because you are guaranteed not to get it, but because you do what you can and take out the health protections and insurance you need in order to try to lower your risk of getting it."

The signs of a worsening climate crisis are all around us, whether we allow ourselves to see them or not. Certainly, the scientific community gets it. As do countless communities across the globe where the effects of climate change are already being experienced in striking ways and local preparations for climatic disasters, including increasingly powerful floods, droughts, wildfires, heat waves, and storms are underway. Evacuations from low-lying South Pacific islands have already begun. People in such areas, out of necessity, are starting to try to teach their children how to adapt to, and live in, what we are causing our world to become.

My niece and nephews are doing something similar. They are growing vegetables in a backyard garden and their eight chickens provide more than enough eggs for the family. Their parents are intent on teaching them how to be ever more self-sustaining. But none of these heartfelt actions can mitigate what is already underway when it comes to the global climate.

I am 45 years old, and I often wonder how my generation will survive the impending climate crisis. What will happen to our world if the summer Arctic waters are indeed ice-free only a few years from now? What will my life look like if I live to experience a 3.5 Celsius global temperature increase?

Above all, I wonder how coming generations will survive.

Dahr Jamail has written extensively about climate change as well as the BP oil disaster in the Gulf of Mexico. He is a recipient of numerous awards, including the Martha Gellhorn Award for Journalism and the James Aronson Award for Social Justice Journalism. He is the author of two books:Beyond the Green Zone: Dispatches from an Unembedded Journalist in Occupied IraqandThe Will to Resist: Soldiers Who Refuse to Fight in Iraq and Afghanistan. He currently works for al-Jazeera English in Doha, Qatar. To stay on top of important articles like these, sign up to receive the latest updates from TomDispatch.com here.

Wednesday, October 9, 2013

Science team identifies tipping point in climate change: 2047

If you’ve been wondering when global warming will show up on your doorstep, Camilo Mora has an answer for you.

Dr. Mora, an associate professor at the University of Hawaii at Manoa, leads a team that has tackled the challenging question of when the climate will shift entirely beyond what could be considered natural.

Their result: The turning point arrives in 2047 as a worldwide average if fossil fuel consumption continues unabated; as late as 2069 if carbon emissions are curbed. Broken down by city the numbers are a bit more revealing. In Montreal, for example, the new normal will arrive a year sooner. For Toronto it’s 2049 and for Vancouver not until 2056. But the real spotlight of Dr. Mora’s study is what happens in the tropics, where profound changes could be entrenched within little more than a decade.

“By looking at timing we’ve come up with an entirely new set of implications on climate change,” Dr. Mora said.

Dr. Mora is not a climate scientist but an expert in dealing with huge amounts of data to pull out hidden information – a skill he honed over six years at Dalhousie University in Halifax, working with the likes of the late Ransom Myers. It was Dr. Myers’ number crunching skills that turned the plight of the world’s fish stock into headline news in 2003.

Ten years later, Dr. Mora is following in his mentor’s footsteps with a study that seems certain to grab attention.

“I want to let the numbers do the talking,” he said.

Climate scientists have long expressed high confidence that the planet is warming as a result of the heat trapping action of greenhouse gasses. The latest assessment from the UN’s Intergovernmental Panel on Climate Change puts that confidence at 95 per cent. Where scientists have been less confident is on the timing of the change. Different models show the global temperatures rising at different rates and the hundreds of scientists behind the IPCC assessment can’t say which model will turn out to be the best predictor of what actually happens over the course of this century.

Starting with an idea that came out of a course he was teaching last spring, Dr. Mora decided to address the gap with some nuts and bolts analysis.

His team combined data from all 39 currently available global climate models and went back nearly 150 years to see what the range of normal climate variability was over that time period.

“We looked at the minimum and maximum values that occurred in that 150-year window and that’s how we set our bounds of recent historical variability,” said Ryan Longman, a doctoral student who worked on the analysis, published Wednesday in the journal Nature.

Then the team tracked the combined predictions of the models forward at different points on the globe to watch how soon the predictions drifted completely out of their normal range. Once the coldest year at any given location was consistently warmer than the hottest year prior to 2005 the team considered the climate to have changed completely. The dates when this happens are different for different locations and they depend on the emissions scenario.

“I think this analysis is valuable and sheds new light on impacts,” said Jane Lubchenco, the former administrator of the U.S. National Oceanic and Atmospheric Administration in an e-mail.

Dr. Lubchenco, who was not involved in the study, stepped down earlier this year to return to academic research at Oregon State University. She said “no one has gone to the immense effort they did to really look critically at the data from so many places and over the entire period of time for which records are reliable.”

The key result of the finding, Dr. Mora said, is that tropical locations will leave the range of normal climate variability much sooner because they typically experience a narrow range of temperature and precipitation levels. That’s a worry Dr. Mora said, because species there are not well adapted to living outside those ranges. Similarly, cities and nations found along Earth’s equator are among the poorest and least equipped to deal with the health and environmental burden of climate change.

“Today when people talk about climate change the images that come to mind are melting ice and polar bears,” Dr. Mora said. “People might infer from this that the tropics will be less affected.”

Instead, he said, the new analysis showed that species and ecosystems in the tropics would soon be experiencing “unprecedented climate stress.” The trend also goes for marine ecosystems where the study shows that ocean acidification has already departed from the normal range with a disastrous outlook for coral reefs.

Ken Caldeira, an expert in global ecology at the Carnegie Institution in Stanford added that while the timing and global breakdown from Dr. Mora’s analysis represent solid science, what matters more is the response.

“Whether an ecosystem goes a decade or two earlier or later doesn’t really matter that much,” Dr. Caldeira said. “We must stop using the atmosphere as a waste dump for our greenhouse-gas pollution. Everything else is nuance.” More

 

Tuesday, October 1, 2013

Lester Brown - IPCC Report Should Serve as 'Wake-Up Call'

Lester Brown, Earth Policy Institute & Dr. Brenda Ekwurzel, Union of Concerned Scientists, join Thom Hartmann. Lester Brown, Earth Policy Institute & Dr. Brenda Ekwurzel, Union of Concerned Scientists join Thom Hartmann. The warming of the climate is unequivocal. That's one of the major findings of a new report put out by the United Nation's International Panel on Climate Change. The report - released every six years - is the most comprehensive report on climate change and global warming. This year's report - worked on by over 800 authors from dozens of countries - won't be released in full until Monday - but the summary for policymakers was released earlier today - and it highlights the report's key findings. Among them - man-made climate change is near certain - and climate change is already effecting extreme and severe weather events across the globe.

Saturday, September 28, 2013

Climate change? Try catastrophic climate breakdown

Already, a thousand blogs and columns insist the Intergovernmental Panel on Climate Change's new report is a rabid concoction of scare stories whose purpose is to destroy the global economy. But it is, in reality, highly conservative.

In other words, it's perhaps the biggest and most rigorous process of peer review conducted in any scientific field, at any point in human history.

There are no radical departures in this report from the previous assessment, published in 2007; just more evidence demonstrating the extent of global temperature rises, the melting of ice sheets and sea ice, the retreat of the glaciers, the rising and acidification of the oceans and the changes in weather patterns. The message is familiar and shattering: "It's as bad as we thought it was."

What the report describes, in its dry, meticulous language, is the collapse of the benign climate in which humans evolved and have prospered, and the loss of the conditions upon which many other lifeforms depend. Climate change and global warming are inadequate terms for what it reveals. The story it tells is of climate breakdown.

This is a catastrophe we are capable of foreseeing but incapable of imagining. It's a catastrophe we are singularly ill-equipped to prevent.

The IPCC's reports attract denial in all its forms: from a quiet turning away – the response of most people – to shrill disavowal. Despite – or perhaps because of – their rigours, the IPCC's reports attract a magnificent collection of conspiracy theories: the panel is trying to tax us back to the stone age or establish a Nazi/communist dictatorship in which we are herded into camps and forced to crochet our own bicycles. (And they call the scientists scaremongers …)

In the Mail, the Telegraph and the dusty basements of the internet, Friday's report (or a draft leaked a few weeks ago) has been trawled for any uncertainties that could be used to discredit. The panel reports that on every continent except Antarctica, man-made warming is likely to have made a substantial contribution to the surface temperature. So those who feel threatened by the evidence ignore the other continents and concentrate on Antarctica, as proof that climate change caused by fossil fuels can't be happening.

They make great play of the IPCC's acknowledgement that there

has been a "reduction in surface warming trend over the period

1998–2012", but somehow ignore the fact that the past decade

is still the warmest in the instrumental record.

They manage to overlook the panel's conclusion that this slowing of the trend is likely to have been caused by volcanic eruptions, fluctuations in solar radiation and natural variability in the planetary cycle.

Were it not for man-made global warming, these factors could have made the world significantly cooler over this period. That there has been a slight increase in temperature shows the power of the human contribution.

But denial is only part of the problem. More significant is the behaviour of powerful people who claim to accept the evidence. This week the former Irish president Mary Robinson added her voice to a call that some of us have been making for years: the only effective means of preventing climate breakdown is to leave fossil fuels in the ground. Press any minister on this matter in private and, in one way or another, they will concede the point. Yet no government will act on it.

As if to mark the publication of the new report, the Department for Business, Innovation and Skills has now plastered a giant poster across its ground-floor windows: "UK oil and gas: Energising Britain. £13.5bn is being invested in recovering UK oil and gas this year, more than any other industrial sector."

The message couldn't have been clearer if it had said "up yours". It is an example of the way in which all governments collaborate in the disaster they publicly bemoan. They sagely agree with the need to do something to avert the catastrophe the panel foresees, while promoting the industries that cause it.

It doesn't matter how many windmills or solar panels or nuclear plants you build if you are not simultaneously retiring fossil fuel production. We need a global programme whose purpose is to leave most coal and oil and gas reserves in the ground, while developing new sources of power and reducing the amazing amount of energy we waste.

But, far from doing so, governments everywhere are still seeking to squeeze every drop out of their own reserves, while trying to secure access to other people's. As more accessible reservoirs are emptied, energy companies exploit the remotest parts of the planet, bribing and bullying governments to allow them to break open unexploited places: from the deep ocean to the melting Arctic.

And the governments who let them do it weep sticky black tears over the state of the planet. More

 

Friday, September 20, 2013

Top 10 cities most at risk of natural disaster

Earthquakes, Floods, Storms, Tsunamis, Etc...

All the natural disasters in the news lately made us wonder what parts of the world were most threatened by things like floods & earthquakes. Massive reinsurer Swiss Re (a reinsurance company sells insurance to insurance companies, allowing them to offload some risks...) has a new report titled "Mind the risk: A global ranking of cities under threat from natural disasters" (pdf) that sheds some light on exactly that. Using their sophisticated modelling software and huge database of past events, they came up with a probabilistic ranking.

There are all kinds of ways to look at the data, but here are some of the most interesting variations.


Swiss Re/Screen capture
There are all kinds of ways to look at the data, but here are some of the most interesting variations.

 

Swiss Re/Screen capture

The list changes a bit if we look at it by "working days lost". More European and US cities appear on the top 10.

If we look at just earthquake risk, this is what the top 10 looks like for both people affected and working days lost: More

 

Tuesday, August 20, 2013

Save the Date: World Conference on Disaster Risk Reduction 2015

Subject to an anticipated decision of the UN General Assembly later in 2013, the Third United Nations World Conference on Disaster Risk Reduction (WCDRR) is to take place in Sendai City, Miyagi Prefecture, Japan, from 14 to 18 March 2015 (five days inclusive).


Hosted by the Government of Japan in cooperation with the United Nations Office for Disaster Risk Reduction (UNISDR), as secretariat of the International Strategy for Disaster Reduction, the WCDRR will review the implementation of the Hyogo Framework for Action and is expected to adopt a successor framework for disaster risk reduction.

The post-2015 framework for disaster risk reduction will build on the knowledge and practice developed through the implementation of the International Framework for the International Decade for Natural Disaster Reduction of 1989, the Yokohama Strategy and Plan of Action of 1994, the International Strategy for Disaster Reduction of 1999 and the Hyogo Framework for Action 2005-2015: Building the Resilience of Nations and Communities to Disasters. Pursuant to General Assembly resolution 66/199, UNISDR will continue to ensure extensive and inclusive multi-stakeholder consultations for a post-2015 framework for disaster risk reduction.

Kind regards,
UNISDR


*******************
International Day for Disaster Reduction 2013
http://www.unisdr.org/2013/iddr

The United Nations Office for Disaster Risk Reduction (UNISDR)
Visit our website: http://www.unisdr.org
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Sunday, July 21, 2013

Can a collapse of global civilization be avoided?

Virtually every past civilization has eventually undergone collapse, a loss of socio-political-economic complexity usually accompanied by a dramatic decline in population size [1]. Some, such as those of Egypt and China, have recovered from collapses at various stages; others, such as that of Easter Island or the Classic Maya, were apparently permanent [1,2]. All those previous collapses were local or regional; elsewhere, other societies and civilizations persisted unaffected. Sometimes, as in the Tigris and Euphrates valleys, new civilizations rose in succession. In many, if not most, cases, overexploitation of the environment was one proximate or an ultimate cause [3].

But today, for the first time, humanity's global civilization—the worldwide, increasingly interconnected, highly technological society in which we all are to one degree or another, embedded—is threatened with collapse by an array of environmental problems. Humankind finds itself engaged in what Prince Charles described as ‘an act of suicide on a grand scale’ [4], facing what the UK's Chief Scientific Advisor John Beddington called a ‘perfect storm’ of environmental problems [5]. The most serious of these problems show signs of rapidly escalating severity, especially climate disruption. But other elements could potentially also contribute to a collapse: an accelerating extinction of animal and plant populations and species, which could lead to a loss of ecosystem services essential for human survival; land degradation and land-use change; a pole-to-pole spread of toxic compounds; ocean acidification and eutrophication (dead zones); worsening of some aspects of the epidemiological environment (factors that make human populations susceptible to infectious diseases); depletion of increasingly scarce resources [6,7], including especially groundwater, which is being overexploited in many key agricultural areas [8]; and resource wars [9]. These are not separate problems; rather they interact in two gigantic complex adaptive systems: the biosphere system and the human socio-economic system. The negative manifestations of these interactions are often referred to as ‘the human predicament’ [10], and determining how to prevent it from generating a global collapse is perhaps theforemost challenge confronting humanity.

The human predicament is driven by overpopulation, overconsumption of natural resources and the use of unnecessarily environmentally damaging technologies and socio-economic-political arrangements to service Homo sapiens’ aggregate consumption [1117]. How far the human population size now is above the planet's long-term carrying capacity is suggested (conservatively) by ecological footprint analysis [1820]. It shows that to support today's population of seven billion sustainably (i.e. with business as usual, including current technologies and standards of living) would require roughly half an additional planet; to do so, if all citizens of Earth consumed resources at the US level would take four to five more Earths. Adding the projected 2.5 billion more people by 2050 would make the human assault on civilization's life-support systems disproportionately worse, because almost everywhere people face systems with nonlinear responses [11,2123], in which environmental damage increases at a rate that becomes faster with each additional person. Of course, the claim is often made that humanity will expand Earth's carrying capacity dramatically with technological innovation [24], but it is widely recognized that technologies can both add and subtract from carrying capacity. The plough evidently first expanded it and now appears to be reducing it [3]. Overall, careful analysis of the prospects does not provide much confidence that technology will save us [25] or that gross domestic product can be disengaged from resource use [26].

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2. Do current trends portend a collapse?

What is the likelihood of this set of interconnected predicaments [27] leading to a global collapse in this century? There have been many definitions and much discussion of past ‘collapses’ [1,3,2831], but a future global collapse does not require a careful definition. It could be triggered by anything from a ‘small’ nuclear war, whose ecological effects could quickly end civilization [32], to a more gradual breakdown because famines, epidemics and resource shortages cause a disintegration of central control within nations, in concert with disruptions of trade and conflicts over increasingly scarce necessities. In either case, regardless of survivors or replacement societies, the world familiar to anyone reading this study and the well-being of the vast majority of people would disappear.

How likely is such a collapse to occur? No civilization can avoid collapse if it fails to feed its population. The world's success so far, and the prospective ability to feed future generations at least as well, has been under relatively intensive discussion for half a century [3340]. Agriculture made civilization possible, and over the last 80 years or so, an industrial agricultural revolution has created a technology-dependent global food system. That system, humanity's single biggest industry, has generated miracles of food production. But it has also created serious long-run vulnerabilities, especially in its dependence on stable climates, crop monocultures, industrially produced fertilizers and pesticides, petroleum, antibiotic feed supplements and rapid, efficient transportation.

Despite those food production miracles, today at least two billion people are hungry or poorly nourished. The Food and Agriculture Organization estimates that increasing food production by some 70 per cent would be required to feed a 35 per cent bigger and still growing human population adequately by 2050 [41]. What are the prospects that H. sapiens can produce and distribute sufficient food? To do so, it probably will be necessary to accomplish many or all of the following tasks: severely limit climate disruption; restrict expansion of land area for agriculture (to preserve ecosystem services); raise yields where possible; put much more effort into soil conservation [3]; increase efficiency in the use of fertilizers, water and energy; become more vegetarian; grow more food for people (not fuel for vehicles); reduce food wastage; stop degradation of the oceans and better regulate aquaculture; significantly increase investment in sustainable agricultural and aquacultural research; and move increasing equity and feeding everyone to the very top of the policy agenda.

Most of these long-recommended tasks require changes in human behaviour thus far elusive. The problem of food wastage and the need for more and better agricultural research have been discussed for decades. So have ‘technology will save us’ schemes such as building ‘nuclear agro-industrial complexes’ [42], where energy would be so cheap that it could support a new kind of desert agriculture in ‘food factories’, where crops would be grown on desalinated water and precisely machine fertilized. Unhappily, sufficiently cheap energy has never been produced by nuclear power to enable large-scale agriculture to move in that direction. Nor has agriculture moved towards feeding people protein extracted from leaves or bacteria grown on petroleum [43, pp. 95–112]. None of these schemes has even resulted in a coordinated development effort. Meanwhile, growing numbers of newly well-off people have increased demand for meat [44], thereby raising global demand for feedgrains.

Perhaps even more critical, climate disruption may pose insurmountable biophysical barriers to increasing crop yields. Indeed, if humanity is very unlucky with the climate, there may be reductions in yields of major crops [45], although near-term this may be unlikely to affect harvests globally [46]. Nonetheless, rising temperatures already seem to be slowing previous trends of increasing yields of basic grains [45,47], and unless greenhouse gas emissions are dramatically reduced, dangerous anthropogenic climate change [48] could ravage agriculture. Also, in addition to falling yields from many oceanic fish stocks because of widespread overfishing [49], warming and acidification of the oceans threaten the protein supply of some of the most nutritionally vulnerable people [50], especially those who cannot afford to purchase farmed fish.

Unfortunately, the agricultural system has complex connections with all the chief drivers of environmental deterioration. Agriculture itself is a major emitter of greenhouse gases and thus is an important cause of climate disruption as well as being exceptionally vulnerable to its consequences. More than a millennium of change in temperature and precipitation patterns is apparently now entrained [51], with the prospect of increasingly severe storms, droughts, heat waves and floods, all of which seem already evident and all of which threaten agricultural production.

Land is an essential resource for farming, and one facing multiple threats. In addition to the serious and widespread problems of soil degradation, sea-level rise (the most certain consequence of global warming) will take important areas out of production either by inundating them (a 1 m rise would flood 17.5% of Bangladesh [52]), exposing them to more frequent storm surges, or salinizing coastal aquifers essential for irrigation water. Another important problem for the food system is the loss of prime farmland to urbanization, a trend that seems certain to accelerate [53] as population growth steadily erodes the per capita supply of farmland.

The critical importance of substantially boosting the inadequate current action on the demographic problem can be seen in the time required to change the trajectory of population growth humanely and sensibly. We know from such things as the World War II mobilizations that many consumption patterns can be altered dramatically within a year, given appropriate incentives [54]. If food shortages became acute, then a rapid reaction would ensue as hunger became much more widespread. Food prices would rise, and diets would temporarily change (e.g. the number of meals consumed per day or amount of meat consumed) to compensate the shortage. Over the long term, however, expanding the global food supply and distributing it more equitably would be a slow and difficult process. Even though a major famine might well provoke investment in long-needed improvements in food production and distribution, they would take time to plan, test and implement.

Furthermore, agriculture is a leading cause of losses of biodiversity and thus of the critical ecosystem services supplied to agriculture itself (e.g. pollination, pest control, soil fertility, climate stability) and other human enterprises. Farming is also a principal source of global toxification, as has been clear since the days of Carson [55], exposing the human population to myriad subtle poisons. These pose further potential risks to food production.

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3. What needs to be done to avoid a collapse?

The threat from climate disruption to food production alone means that humanity's entire system for mobilizing energy needs to be rapidly transformed. Warming must be held well below a potential 5°C rise in global average temperature, a level that could well bring down civilization [56]. The best estimate today may be that, failing rapid concerted action, the world is already committed to a 2.4°C increase in global average temperature [57]. This is significantly above the 2°C estimated a decade ago by climate scientists to be a ‘safe’ limit, but now considered by some analysts to be too dangerous [58,59], a credible assessment, given the effects seen already before reaching a one degree rise. There is evidence, moreover, that present models underestimate future temperature increase by overestimating the extent that growth of vegetation can serve as a carbon sink [60] and underestimating positive feedbacks [61].

Many complexities plague the estimation of the precise threats of anthropogenic climate disruption, ranging from heat deaths and spread of tropical diseases to sea-level rise, crop failures and violent storms. One key to avoiding a global collapse, and thus an area requiring great effort and caution is avoiding climate-related mass famines. Our agricultural system evolved in a geological period of relatively constant and benign climate and was well attuned to twentieth-century conditions. That alone is cause for substantial concern as the planet's climates rapidly shift to new, less predictable regimes. It is essential to slow that process. That means dramatically transforming much of the existing energy mobilization infrastructure [62] and changing human behaviour to make the energy system much more efficient. This ispossible; indeed, sensible plans for doing it have been put forward [63,64], and some progress has been made. The central challenge, of course, is to phase out more than half of the global use of fossil fuels by 2050 in order to forestall the worst impacts of climate disruption, a challenge the latest International Energy Agency edition of World Energy Outlook makes look more severe [65]. This highlights another dilemma. Fossil fuels are now essential to agriculture for fertilizer and pesticide manufacture, operation of farm machinery, irrigation (often wasteful), livestock husbandry, crop drying, food storage, transportation and distribution. Thus, the phase-out will need to include at least partial substitution of non-fossil fuels in these functions, and do so without greatly increasing food prices. More