Climate
-

Image
flyer weyant cropped

 

 

Stanford Center at Peking University
The Lee Jung Sen Building
Langrun Yuan
Peking University
No.5 Yiheyuan Road
Haidian District
Beijing, P.R.China 100871

Directions/Map

John P. Weyant Professor of Management Science and Engineering, Deputy Director of Precourt Institute for Energy Efficiency Stanford University
Lectures
Paragraphs

In many discussions of climate change impacts in agriculture, the large magnitudes of expected impacts toward the end of the century are used to emphasize that most of the risks are to future generations. However, this perspective misses the important fact that demand growth for food is expected to be much slower after 2050 than before it, and that the next two decades represent the bulk of growth before 2050. Thus, impacts of smaller magnitude in the near-term can be as or more consequential for food prices or food security as larger magnitude impacts in the future. Here we estimate the risks that climate trends over the next 10 or 20 years could have large impacts on global yields of wheat and maize, with a focus on scenarios that would cut the expected rates of yield gains in half. We find that because of global warming, the chance of climate trends over a 20 year period causing a 10% yield loss has increased from a less than 1 in 200 chance arising from internal climate variability alone, to a 1 in 10 chance for maize and 1 in 20 chance for wheat. Estimated risks for maize are higher because of a greater geographic concentration than wheat, as well as a slightly more negative aggregate temperature sensitivity. Global warming has also greatly increased the chance of climate trends large enough to halve yield trends over a 10 year period, with a roughly 1 in 4 chance for maize and 1 in 6 chance for wheat. Estimated risks are slightly larger when using climate projections from a large ensemble of a single climate model that more fully explores internal climate variability, than a multi-model ensemble that more fully explores model uncertainty. Although scenarios of climate impacts large enough to halve yield growth rates are still fairly unlikely, they may warrant consideration by institutions potentially affected by associated changes in international food prices.

All Publications button
1
Publication Type
Journal Articles
Publication Date
Journal Publisher
Environmental Research Letters
Authors
David Lobell
David Lobell
Claudia Tebaldi
Number
7
Authors
Laura Seaman
News Type
News
Date
Paragraphs

FSE director Roz Naylor and faculty affiliate Eric Lambin contributed to a new paper on climate engineering (geoengineering) in Nature Climate Change. Geoengineering has emerged as a potential climate change mitigation strategy, with proponents suggesting that injecting sulphate aerosols into the atmosphere - in order to disperse sunlight and decrease the temperature of the lower atmosphere - could limit global warming. 

The paper cautions that the governance of geoengineering is likely to be insurmountable in cases when the technology might prove useful, whereas the technology's effectiveness may be limited in places where there is more political willingness to implement geoengineering. Further, the major potential risks of geoengineering, and the uncertainties involved, suggest that a better approach to climate mitigation is immediate global action to address the root causes of climate change.

Both authors contributed to the paper as members of the science advisory board of the Beijer Institute of Ecological Economics. Roz Naylor and Eric Lambin are professors in Environmental Earth System Science at Stanford Unviersity. Naylor is also senior fellow at the Freeman Spogli Institute for International Studies and the Woods Institute for the Environment, and Lambin is a senior fellow at the Woods Institute.

Hero Image
All News button
1
Paragraphs

Stratospheric injection of sulphate aerosols has been advocated as an emergency geoengineering measure to tackle dangerous climate change, or as a stop-gap until atmospheric carbon dioxide levels are reduced. But it may not prove to be the game-changer that some imagine.

All Publications button
1
Publication Type
Journal Articles
Publication Date
Journal Publisher
Nature Climate Change
Authors
Scott Barrett
Timothy M. Lenton
Antony Millner
Stephen Carpenter
John M. Anderies
F. Stuart Chapin III
Anne-Sophie Crepin
Paul Ehrlich
Carl Folke
Victor Galaz
Terry Hughes
Nils Kautsky
Eric Lambin
Eric Lambin
Rosamond L. Naylor
Rosamond L. Naylor
Karine Nyborg
Stephen Polasky
Marten Scheffer
James Wilen
Anastasios Xepapadeas
Aart de Zeeuw
Paragraphs

• Adaptation should be defined strictly as actions that reduce climate change impacts.

• Many studies that claim to show adaptation benefits do not satisfy this definition.
• Three main causes of “adaptation illusions” are discussed.

A primary goal of studying climate change adaptation is to estimate the net impacts of climate change. Many potential changes in agricultural management and technology, including shifts in crop phenology and improved drought and heat tolerance, would help to improve crop productivity but do not necessarily represent true adaptations. Here the importance of retaining a strict definition of adaptation – as an action that reduces negative or enhances positive impacts of climate change – is discussed, as are common ways in which studies misinterpret the adaptation benefits of various changes. These “adaptation illusions” arise from a combination of faulty logic, model errors, and management assumptions that ignore the tendency for farmers to maximize profits for a given technology. More consistent treatment of adaptation is needed to better inform synthetic assessments of climate change impacts, and to more easily identify innovations in agriculture that are truly more effective in future climates than in current or past ones. Of course, some of the best innovations in agriculture in coming decades may have no adaptation benefits, and that makes them no less worthy of attention.

 

All Publications button
1
Publication Type
Journal Articles
Publication Date
Journal Publisher
Global Food Security
Authors
David Lobell
David Lobell
Paragraphs

Projecting the impacts of climate change on agriculture requires knowing or assuming how farmers will adapt. But empirical estimates of the effectiveness of this private adaptation are scarce and the sensitivity of impact assessments to adaptation assumptions is not well understood. Here we assess the potential effectiveness of private farmer adaptation in Europe by jointly estimating both short-run and long-run response functions using time-series and cross-sectional variation in subnational yield and profit data. The difference between the impacts of climate change projected using the short-run (limited adaptation) and long-run (substantial adaptation) response curves can be interpreted as the private adaptation potential. We find high adaptation potential for maize to future warming but large negative effects and only limited adaptation potential for wheat and barley. Overall, agricultural profits could increase slightly under climate change if farmers adapt but could decrease in many areas if there is no adaptation. Decomposing the variance in 2040 projected yields and farm profits using an ensemble of 13 climate model-runs, we find that the rate at which farmers will adapt to rising temperatures is an important source of uncertainty. 

All Publications button
1
Publication Type
Journal Articles
Publication Date
Journal Publisher
Nature Climate Change
Authors
Fran Moore
Fran Moore
David Lobell
David Lobell
Paragraphs

A key question for climate change adaptation is whether existing cropping systems can become less sensitive to climate variations. We use a field-level dataset on maize and soybean yields in the central United States for 1995 through 2012 to examine changes in drought sensitivity. Although yields have increased in absolute value under all levels of stress for both crops, the sensitivity of maize yields to drought stress associated with high vapor pressure deficits has increased. The greater sensitivity has occurred despite cultivar improvements and increased CO2, and reflects the agronomic trend toward higher sowing densities. The results suggest that agronomic changes tend to translate improved drought tolerance of plants to higher average yields, but not to decreasing drought sensitivity of yields at the field scale. 

The full text of the articleabstract, and reprint are available via Science. 

All Publications button
1
Publication Type
Journal Articles
Publication Date
Journal Publisher
Science
Authors
David Lobell
David Lobell
Michael J. Roberts
Wolfram Schlenker
Wolfram Schlenker
Bertis B. Little
Roderick M. Rejesus
Graeme L. Hammer
-

For nearly 70 years, CARE has been serving individuals and families in the world's poorest communities. Today, they work in 84 countries around the world, with projects addressing issues from education and healthcare to agriculture and climate change to education and women's empowerment. Helene Gayle, president and CEO of CARE USA, will discuss her work with CARE and her experiences in the field of international development. Dr. Gayle will discuss how access to global health is integral to CARE's effort in addressing the underlying causes of extreme global poverty.

Dr. Michele Barry, director of the Center for Innovation in Global Health, will moderate a conversation between CARE President and CEO, Dr. Helene Gayle and former Prime Minister of Norway and United Nations Special Envoy, Dr. Gro Brundtland. 

This event is sponsoredy by CARE USA, the Center on Democracy, Development and the Rule of Law and the Haas Center for Public Service.

A reception will follow the event. 


Dr. Gro Brundtland Bio:

Dr. Gro Harlem Brundtland is the former prime minister of Norway and the current deputy chair of The Elders, a group of world leaders convened by Nelson Mandela and others to tackle the world’s toughest issues. She was recently appointed as the Mimi and Peter E. Haas Distinguished Visitor for spring 2014 at the Haas Center for Public Service at Stanford University. Dr. Brundtland has dedicated over 40 years to public service as a doctor, policymaker and international leader. She was the first woman and youngest person to serve as Norway’s prime minister, and has also served as the former director-general of the World Health Organization and a UN special envoy on climate change.

Her special interest is in promoting health as a basic human right, and her background as a stateswoman as well as a physician and scientist gives her a unique perspective on the impact of economic development, global interdependence, environmental issues and medicine on public health.


 Dr. Helene Gayle Bio:

Helene D. Gayle joined CARE USA as president and CEO in 2006. Born and raised in Buffalo, New York, she received her B.A. from Barnard College of Columbia University, her M.D. from the University of Pennsylvania and her M.P.H. from Johns Hopkins University. After completing her residency in pediatric medicine at the Children's Hospital National Medical Center in Washington, D.C., she entered the Epidemic Intelligence Service at the Centers for Disease Control and Prevention, followed by a residency in preventive medicine, and then remained at CDC as a staff epidemiologist.

At CDC, she studied problems of malnutrition in children in the United States and abroad, evaluating and implementing child survival programs in Africa and working on HIV/AIDS research, programs and policy. Dr. Gayle also served as the AIDS coordinator and chief of the HIV/AIDS division for the U.S. Agency for International Development; director for the National Center for HIV, STD, and TB Prevention, CDC; director of CDC's Washington office; and health consultant to international agencies including the World Health Organization, UNICEF, the World Bank and UNAIDS. Prior to her current position, she was the director of the HIV, TB and reproductive health program for the Bill and Melinda Gates Foundation.


Hewlett 201
Hewlett Teaching Center
370 Serra Mall
Stanford, CA 94305

Dr. Gro Brundtland Mimi and Peter E. Haas Distinguished Visitor Panelist Haas Center for Public Service, Stanford University
Dr. Helene Gayle President and CEO Panelist CARE USA
Michele Barry Director Moderator Center for Innovation in Global Health
Conferences
-

Meeting the world’s need for food in the 21st century presents unprecedented challenges and opportunities. The global population is expected to grow toward 9 billion by 2050, and more families will live in middle-income countries and urban areas with expanding per capita consumption. At the same time, climate change and resource constraints will likely reduce crop and animal production in many locations, potentially creating greater disparities in incomes, food access, and nutrition around the world. Roz Naylor, a thought leader in global food security, will discuss the world’s future food dilemma and present a range of solutions focused on the diversification of food systems, improved input efficiencies, renewable energy use, new crop technologies, and policy adjustments. Her talk will demonstrate how food security, in its broadest form, is tied to security of many other kinds: energy, water, climate, health, the environment, and national security.

FSE director Roz Naylor’s research focuses on economic and biophysical dimensions of food security and environmental impacts of crop and animal production. Her extensive field research and published work span issues related to intensive crop production, aquaculture and livestock systems, biofuels, climate change, food price volatility, and food policy analysis. At Stanford, Naylor teaches courses on the world food economy, humanenvironment interactions, and sustainable agriculture.

Naylor's new book The Evolving Sphere of Food Security (Oxford University Press, September) brings together 19 Stanford scholars from across campus to explore the many faces and facets of global food security. Copies of the book will be available for purchase at the event.

The annual Earth Matters lecture series is jointly sponsored by Stanford Continuing Studies and the Stanford School of Earth Sciences.

Cubberley Auditorium

The Jerry Yang and Akiko Yamazaki
Environment and Energy Building
Stanford University
473 Via Ortega, Office 363
Stanford, CA 94305

(650) 723-5697 (650) 725-1992
0
Senior Fellow, Stanford Woods Institute and Freeman Spogli Institute for International Studies
William Wrigley Professor of Earth System Science
Senior Fellow and Founding Director, Center on Food Security and the Environment
Roz_low_res_9_11_cropped.jpg
PhD

Rosamond Naylor is the William Wrigley Professor in Earth System Science, a Senior Fellow at Stanford Woods Institute and the Freeman Spogli Institute for International Studies, the founding Director at the Center on Food Security and the Environment, and Professor of Economics (by courtesy) at Stanford University. She received her B.A. in Economics and Environmental Studies from the University of Colorado, her M.Sc. in Economics from the London School of Economics, and her Ph.D. in applied economics from Stanford University. Her research focuses on policies and practices to improve global food security and protect the environment on land and at sea. She works with her students in many locations around the world. She has been involved in many field-level research projects around the world and has published widely on issues related to intensive crop production, aquaculture and livestock systems, biofuels, climate change, food price volatility, and food policy analysis. In addition to her many peer-reviewed papers, Naylor has published two books on her work: The Evolving Sphere of Food Security (Naylor, ed., 2014), and The Tropical Oil Crops Revolution: Food, Farmers, Fuels, and Forests (Byerlee, Falcon, and Naylor, 2017).

She is a Fellow of the Ecological Society of America, a Pew Marine Fellow, a Leopold Leadership Fellow, a Fellow of the Beijer Institute for Ecological Economics, a member of Sigma Xi, and the co-Chair of the Blue Food Assessment. Naylor serves as the President of the Board of Directors for Aspen Global Change Institute, is a member of the Scientific Advisory Committee for Oceana and is a member of the Forest Advisory Panel for Cargill. At Stanford, Naylor teaches courses on the World Food Economy, Human-Environment Interactions, and Food and Security. 

CV
Rosamond Naylor Speaker
Lectures
Subscribe to Climate