Climate
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The "Carbon Markets: Developing Countries & the Next Clean Development Mechanism" panel will be held from 3:25PM to 4:45PM

PESD researcher Richard K. Morse to speak at the 2010 MIIS International Trade and Investment Conference: Opportunities and Strategies in Emerging Economies on the "Carbon Markets: Developing Countries & the Next Clean Development Mechanism" panel.

The Monterey Institute of International Studies (an affiliate of Middlebury College) will be hosting this all day conference.  This event is being held with the purpose of bringing together stakeholders in the fields of trade policy, business, and human development to enhance knowledge of and create constructive dialogue around the global trends shaping international trade policy, business innovation, and social ventures in emerging economies.

Monterey Institute of International Studies
Irvine Auditorium
499 Pierce Street
Monterey, CA 93940

Richard K. Morse Panelist
Neal Dikeman Co-Founder and Chairman of the Board for Carbonflow Panelist
Barbara Haya PhD Candidate at the UC Berkeley Renewable & Appropriate Energy Laboratory Panelist
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President Robinson will be drawing on the work of Realizing Rights in areas of corporate responsibility, right to health, decent work and climate justice.

Mary Robinson, the first woman President of Ireland (1990-1997) and former United Nations High Commissioner for Human Rights (1997-2002), has spent most of her life as a human rights advocate. Born Mary Bourke in Ballina, County Mayo (1944), she was educated at the University of Dublin (Trinity College), Kings Inns Dublin, and Harvard Law School to which she won a fellowship in 1967.
 
As an academic (Trinity College Law Faculty 1968-90), legislator (Senator 1969-89) and barrister (1967-90. Senior Counsel 1980, English Bar 1973) she has always sought to use law as an instrument for social change, arguing landmark cases before the European Court of Human Rights as well as in the Irish courts and the European Court in Luxembourg. In 1988 Mary Robinson and her husband founded the Irish Centre for European Law at the Trinity College. Ten years later she was elected Chancellor of the University.
 
Now based in New York, Mary Robinson is currently the President of Realizing Rights: The Ethical Globalization Initiative. Its mission is to make human rights the compass which charts a course for globalization that is fair, just and benefits all.

About the Lecture Series
The Stanford Presidential and Endowed Lecture Series in the Humanities and Arts brings the most distinguished scholars, artists, and critics of our time to the Stanford University campus for lectures, seminars, panel discussions, and a variety of related interactions with faculty, students and the community at large.

Related Information
Map to Cubberley Auditorium
Stanford Humanities Center Events

Cubberly Auditorium

Mary Robinson Founder of Realizing Rights: The Ethical Globalization Initiative; President of Ireland 1990-1997; United Nations High Commissioner for Human Rights 1997-2002 Speaker
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The Clean Development Mechanism (CDM) is the leading international carbon market and a driving force for sustainable development globally. But the eruption of controversy over offsets from Chinese wind power has exposed cracks at the core of how carbon credits are verified in developing economies. It has become almost impossible to determine whether offsets from Chinese wind are "additional" and that they in fact represent "real" reductions beyond business as usual. Unless this problem can be resolved, it threatens to spread beyond wind in China and could threaten the ability of carbon markets to deliver the mitigation demanded by international climate policy.

In 2009 the CDM Executive Board (EB) shocked the carbon market by forcing an unprecedented review of whether multiple Chinese wind projects satisfied UNFCCC additionality requirements. CDM investors reeled as the safest CDM bet became the riskiest; the Chinese government publicly criticized the UN's oversight of carbon markets; and the CDM EB prepared itself for an unprecedented fight over how carbon offsets could be verified in the world's largest CDM market.

At the center of the controversy is the Chinese power tariff for wind.

When the EB observed decreases over time in power tariffs granted by China's National Development and Reform Commission (NDRC) to wind projects, it became concerned that China might be manipulating power tariffs in order to guarantee additionality and subsidize its domestic wind development with international finance. If the Chinese government were controlling additionality, then the CDM's ability to validate carbon offsets would be dealt a near‐lethal blow because the problems posed by Chinese wind extend to nearly all power sector projects in almost every developing country. If offsets cannot be credibly verified, then the integrity of emissions caps set by the Kyoto Protocol is directly threatened.

The Chinese wind controversy therefore has direct implications for the design and negotiation of any successor to the Kyoto Protocol. Despite largely failed negotiations in Copenhagen, the design of reliable, efficient carbon markets remains the world's most serious prospect for international cooperation. The developed world has committed USD 30 billion in climate aid by 2012, but the majority of these funds will likely have to be private capital delivered through markets. In order for carbon markets to avoid controversy and function effectively, the lessons from the Chinese wind controversy must be used to implement key reforms.

This report examines the application of additionality in the Chinese wind power market and draws implications for the design of effective global carbon offset policy. It demonstrates the causes of the wind power controversy, highlights underlying structural flaws in how additionality is applied in China, and charts a reform path that can strengthen the credibility of global carbon markets.

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Program on Energy and Sustainable Development Working Paper #90
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Gang He
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David Lobell
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The impact of global warming on food prices and hunger could be large over the next 20 years, according to a new Stanford University study. Researchers say that higher temperatures could significantly reduce yields of wheat, rice and maize - dietary staples for tens of millions of poor people who subsist on less than $1 a day. The resulting crop shortages would likely cause food prices to rise and drive many into poverty.  

But even as some people are hurt, others would be helped out of poverty, says Stanford agricultural scientist David Lobell.

Lobell discussed the results of his research on Feb 19 at the annual meeting of the American Association for the Advancement of Science in San Diego.

"Poverty impacts depend not only on food prices but also on the earnings of the poor," said Lobell, a center fellow at Stanford's Program on Food Security and the Environment (FSE). "Most projections assume that if prices go up, the amount of poverty in the world also will go up, because poor people spend a lot of their money on food. But poor people are pretty diverse. There are those who farm their own land and would actually benefit from higher crop prices, and there are rural wage laborers and people that live in cities who definiztely will be hurt."

Lobell and his colleagues recently conducted the first in-depth study showing how different climate scenarios could affect incomes of farmers and laborers in developing countries.

Household incomes

In the study, Lobell, former FSE researcher Marshall Burke and Purdue University agricultural economist Thomas Hertel focused on 15 developing countries in Asia, Africa and Latin America. Hertel has developed a global trade model that closely tracks the consumption and production of rice, wheat and maize on a country-by-country basis. The model was used to project the effects of climate change on agriculture within 20 years and the resulting impact on prices and poverty.

Using a range of global warming forecasts, the researchers were able to project three different crop-yield scenarios by 2030:

  • "Low-yield" - crop production is toward the low end of expectations.
  • "Most likely" - projected yields are consistent with expectations.
  • "High-yield" - production is higher than expected.

"One of the limitations of previous forecasts is that they don't consider the full range of uncertainties - that is, the chance that things could be better or worse than we expect," Lobell said. "We provided Tom those three scenarios of what climate change could mean for agricultural productivity. Then he used the trade model to project how each scenario would affect prices and poverty over the next 20 years.

"The impacts we're talking about are mainly driven by warmer temperatures, which dry up the soil, speed up crop development and shut down biological processes, like photosynthesis, that plants rely on," he added. "Plants in general don't like it hotter, and in many climate forecasts, the temperatures projected for 2030 would be outside the range that crops prefer."

Results

The study revealed a surprising mix of winners and losers depending on the projected global temperature. The "most likely" scenario projected by the International Panel on Climate Change is that global temperatures will rise 1.8 degrees Fahrenheit (1 degree Celsius) by 2030. In that scenario, the trade model projected relatively little change in crop yields, food prices and poverty rates

But under the "low-yield" scenario, in which temperatures increase by 2.7 F (1.5 C), the model projects a 10 to 20 percent drop in agricultural productivity, which results in a 10 to 60 percent rise in the price of rice, wheat and maize. Because of these higher prices, the overall poverty rate in the 15 countries surveyed was expected to rise by 3 percent.

However, an analysis of individual countries revealed a far more complicated picture. In 11 of the 15 countries, poor people who owned their own land and raised their own crops actually benefited from higher food prices, according to the model. In Thailand, for example, the poverty rate for people in the non-agricultural sector was projected to rise 5 percent, while the rate for self-employed farmers dropped more than 30 percent - in part because, as food supplies dwindled, the global demand for higher-priced crops increased.

"If prices go up and you're tied to international markets, you could be lifted out of poverty quite considerably," Lobell explained. "But there are a lot of countries, like Bangladesh, where poor people are either in urban areas or in rural areas but don't own their own land. Countries like that could be hurt quite a lot. Then there are semi-arid countries - like Zambia, Mozambique and Malawi - where even if prices go up and people own land, productivity will go down so much that it can't make up for those price increases. In the 'low-yield' scenario, those countries would see higher poverty rates across all sectors."

Under the "high-yield" scenario, in which global temperatures rise just 0.9 F (0.5 C), crop productivity increased. The resulting food surplus led to a 16 percent drop in prices, which could be detrimental to farm owners. In Thailand, the poverty rate among self-employed farmers was projected to rise 60 percent, while those in the non-agriculture sector saw a slight drop in poverty. In Zambia, Mozambique, Malawi and Uganda, poverty in the non-farming sector was projected to decline as much as 5 percent.

Risk management

Lobell said that, although the likelihood of the "low-yield" or "high-yield" scenario occurring is only 5 percent, it is important for policymakers to consider the full range of possibilities if they want to help countries adapt to climate change and ultimately prevent an increase in poverty and hunger. 

"It's like any sort of risk management or insurance program," he said. "You have to have some idea of the probability of events that have a big consequence. It's also important to keep in mind that any change, no matter how extreme, will benefit some households and hurt others."

The Program on Food Security and the Environment at Stanford is an interdisciplinary research and teaching program that generates policy solutions to the persistent problems of global hunger and environmental damage from agricultural practices worldwide. The program is jointly run by Stanford's Woods Institute for the Environment and the Freeman Spogli Institute for International Studies.

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Changes in temperature due to climate change over the next few decades will put considerable pressure on crop production in already vulnerable areas of sub-Saharan Africa, states a new study from Stanford University's Program on Food Security and the Environment published this week in Environmental Research Letters. The study found that average yields for five staple crops - maize, sorghum, millet, groundnuts, and cassava -will likely be harmed by warming without successful adaptation

"In all cases except cassava, we estimate a very high (95%) probability that damages would exceed 7%, and a low (5%) probability that they exceed 27%," said co-author David Lobell, an assistant professor of Environmental Earth System Science and center fellow at the Program on Food Security and the Environment, a joint program of the Freeman Spogli Institute for International Studies and Woods Institute for the Environment at Stanford.

The findings present a surprisingly robust picture of how weather affects yields in sub-Saharan Africa (SSA) and suggest there is a real threat of large near-term impacts in this food-insecure part of the world. SSA has the highest proportion of malnourished populations in the world, with one in three people chronically hungry.

"These are very resource scarce countries," noted lead author Wolfram Schlenker, assistant professor of economics at Columbia University, "and a reliable picture of what climate change will mean for crop yields can be very useful in allocating investments."

Panel dataset approach

Up to this point, the scientific basis for estimating production risks and prioritizing investments has been quite limited. "Many approaches have been limited by a lack of reliable data on such things as soil properties, historical agricultural data, and management practices," said Lobell. "This has not inspired a lot of confidence in the estimates, and has caused many to question some high-level statements about risks of climate change to Africa. The results presented in this study are not as disastrous as some have claimed, but they are big enough to suggest that major adaptations are needed in this region."

Schlenker and Lobell utilized a different approach than had been tried, by matching country-level yields (ton/ha) with various weather measurements for 1961-2002. By combining all the countries into a panel dataset, they were able to see a much clearer signal of weather than would be possible looking at data from individual countries.

"The observational approach enabled us to measure how farmers react to weather shocks given various, shared constraints such as credit markets and lack of required inputs," said Schlenker. "This is very difficult to do with a field trial approach."

Future research and investments

The authors emphasize that the results are not predictions of what will happen, but of what the potential stakes are if we don't take the threat seriously. Varieties with greater drought and heat tolerance, improved and expanded irrigation systems, rainwater harvesting technologies, disaster relief efforts, and insurance programs will likely all be needed to foster agricultural development and adaptation to warming.

"There is arguably little scope for substantial poverty reductions in SSA without large improvements in agricultural productivity," conclude the authors. "The findings presented here suggest that this challenge will get even more difficult in a warming climate. Rather than a cause for despair, we view this as an added incentive for serious, immediate, and sustained investments in agricultural productivity in SSA."

This work was supported by a grant from the Rockefeller Foundation. The Program on Food Security and the Environment is jointly run by the Woods Institute for the Environment and the Freeman Spogli Institute for International Studies at Stanford.

 

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Feature-tracking techniques are employed to investigate why there is a relative minimum in storminess during winter within the Pacific storm track (the midwinter suppression). It is found that the frequency and amplitude of disturbances entering the Pacific storm track from midlatitude Asia are substantially reduced during winter relative to fall and spring and that the magnitude of this reduction is more than sufficient to account for the midwinter supression. Growth rates of individual disturbances are calculated and compared to expectations from linear theory for several regions of interest. Although there are discrepancies between linear expectations and observed growth rates over the Pacific, the growth of disturbances within the Pacific storm track cannot explain why the midwinter suppression exists. Furthermore, it is determined that the development of a wintertime reduction in storminess over midlatitude Asia is consistent with linear expectations, which predict a wintertime minimum in Eady growth rates in this region, mainly because of increased static stability. Several other mechanisms that may contribute to the initiation of the midwinter suppression over midlatitude Asia are discussed,including the interaction between upper-level waves and topography, the behavior of waves upwind of the Tibetan Plateau, and the initiation of lee cyclones.

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Journal of Climate
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David S. Battisti
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BusinessForum China
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Gang He
Varun Rai
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Accumulating evidence suggests that agricultural production could be greatly affected by climate change, but there remains little quantitative understanding of how these agricultural impacts would affect economic livelihoods in poor countries. Here we consider three scenarios of agricultural impacts of climate change by 2030 (impacts resulting in low, medium, or high productivity) and evaluate the resulting changes in global commodity prices, national economic welfare, and the incidence of poverty in a set of 15 developing countries. Although the small price changes under the medium scenario are consistent with previous findings, we find the potential for much larger food price changes than reported in recent studies which have largely focused on the most likely outcomes. In our low productivity scenario, prices for major staples rise 10-60% by 2030. The poverty impacts of these price changes depend as much on where impoverished households earn their income as on the agricultural impacts themselves, with poverty rates in some non-agricultural household groups rising by 20-50% in parts of Africa and Asia under these price changes, and falling by equal amounts for agriculture-specialized households elsewhere in Asia and Latin America. The potential for such large distributional effects within and across countries emphasizes the importance of looking beyond central case climate shocks and beyond a simple focus on yields - or highly aggregated poverty impacts.

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GTAP
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Thomas Hertel
David Lobell
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