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When it comes to climate change and its impacts on agriculture, we may know less than we think.

But according to David Lobell, Assistant Professor in Stanford’s Department of Environmental Earth System Science, acknowledging the gaps in our understanding could help us to more effectively prepare the world’s food system for a warmer future.

Lobell, who has built an impressive career around the study of climate change and its implications for global food security, addressed the topic of agricultural adaptation during a two-hour symposium held on the Stanford campus in early December. His presentation summarized the strengths and weaknesses of climate models in the context of global agriculture, and suggested broad strategies for preparing agriculture for climate change’s inevitable impacts.

Lobell began his talk by reaffirming some common beliefs. The Earth as a whole is unquestionably warming, he said. Precipitation intensity is increasing in high-rainfall areas, and the world’s driest regions are becoming drier.

“Think about the hottest day we currently experience in a 20-year period,” Lobell told listeners. “By mid-century, we’ll be seeing that hottest day every year, as opposed to every 20 years.” During the same period, soil moisture content in many of the world’s major agricultural areas will decrease by as much as 10 to 15 percent, while annual precipitation at the equator and high latitudes will increase by several inches per year.

At the global scale, Lobell said, climate change will have a net negative impact on existing agricultural systems. The world’s rainfed farms will become increasingly vulnerable to heat and water stress.  Growing ranges and seasons for heat-intolerant crops, such as wheat and sorghum, will contract. Although the high latitudes may see some gains from warmer temperatures and CO2 fertilization of certain crops, low-latitude regions – including South Asia and much of Africa – will suffer disproportionate yield losses as temperatures rise.

However, Lobell said that impacts aimed at local and national scales, as opposed to broad regions or the world as a whole, are much more difficult to predict. A moderate change in average rainfall across a continent could translate to drastic increases or decreases in individual countries. For example, while climate models suggest that Africa’s annual rainfall will change by less than 10 percent over the next 50 years, model projections show rainfall in the nation of Sengal changing by anywhere from five to 40 percent over the same period.

Additionally, Lobell said, forecasts of increasing climate variability are frequently overstated. “The number one misperception I hear is that climate change is going to mean more variability,” he noted.  In fact, model projections of year-to-year variability in temperature and precipitation cover a wide range. Some models do show large increases in variability over the next century – but others show a slight decrease.

Because we understand climate impacts best at the long-term and global scales, Lobell said, global responses that address long-term trends are the most likely to serve our future needs. He cautioned against approaches that prepare farmers for short-term variability, such as sudden floods or droughts, but fail to acknowledging the effects of steadily rising average temperatures. He also stressed the value of globally coordinated efforts, particularly those aimed at developing better heat and drought-tolerant crop varieties, to supplement local infrastructure projects.

 “We’re in a world where local resilience depends on global systems,” Lobell noted. He said that the interconnectedness of modern global food markets makes global trends, and global responses, increasingly relevant for local food security.

At both local and global levels, an effective response to climate change will require robust social institutions. Dr. Fatima Denton, Program Leader for Climate Change Adaptation in Africa for the Consultative Group on International Agricultural research, stressed this point in her comments on Lobell’s presentation. “Climate change has really unmasked our governance challenges and the weaknesses in our institutions,” Denton said. “This is not just about biophysical processes…it’s about the development pathways that we choose.”

Lobell agreed. Climate change, he said, presents “an important opportunity for transformation.” He encouraged present and future leaders to think critically about all aspects of the relevant science and policy. “Be skeptical of what you hear,” he advised, “and educate yourself about what we do and don’t know.”

This was the sixth talk in FSE's Global Food Policy and Food Security Symposium Series.

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This paper was prepared for Stanford University’s Global Food Policy and Food Security Symposium Series, hosted by the Center on Food Security and the Environment, and supported by the Bill and Melinda Gates Foundation.


Food policy makers are increasingly faced with the question of how to adapt to climate change. The increased attention on climate adaptation is partly related to the fact that greenhouse gas emissions and climate change show little sign of slowing, partly because of prospects for large sums of money devoted to adaptation, and partly because of well publicized recent weather events that have affected agricultural regions and rattled global food markets. A common and reasonable reaction from the food policy and agricultural community has been to argue that climate variations have always been a challenge to agriculture, and that climate change just makes addressing these variations more important. A logical conclusion from this perspective is to emphasize activities that help build resilience to unpredictable weather events, as well as to focus on the types of weather variables that exhibit a lot of year-to-year variability and cause the bulk of farmers’ concerns in current climate.

However reasonable as a starting point, this perspective is misguided and risks taking a challenging problem and making it even harder. Anthropogenic global warming (AGW) is fundamentally different from the natural variations driven by internal dynamics in the climate system. Indeed, predicting the course of climate change is less like predicting the weather next week than it is like predicting that summer will be warmer than winter. Progress in climate science has shown that the most indelible hallmarks of AGW will be increased occurrence and severity of high temperature and heavy rainfall extremes in all regions, and increased frequency and severity of drought in sub-tropical regions. Changes in the timing and amount of seasonal rainfall also appear likely in some regions, but at a much smaller pace relative to natural variability. In all of these cases, predictions from climate science are most robust at broader spatial scales, with considerable uncertainty in predicting changes for any single country.

Meanwhile, progress in crop science has shown that most crops show fairly rapid declines in productivity as temperatures rise above critical thresholds, with as much as 10 percent yield loss for +1°C of warming in some locations. Both sub-Saharan Africa and South Asia appear particularly prone to productivity losses from climate change, in part because major staples in these regions are often already grown well above their optimum temperature.

Approaches to climate adaptation should recognize these realities, and should not equate anticipating climate changes with the considerably harder task of predicting next year’s weather. Predicting and building resilience to climate variability still remain important goals for agricultural development, but adaptation efforts should balance these activities with those focused more on the specific threats presented by climate change. Heat tolerant crop varieties and strategies to deal with heavy rainfall provide two examples of important needs. Similarly, balance is needed between the local-scale efforts that attract most of adaptation investment currently, and regional and global networks to develop needed technologies. Given the greater certainty of climate changes at broader scales, as well as the positive track record of international networks for crop breeding, investments in these global systems are very likely to deliver substantial adaptation benefits. Finally, given the downward pressures that climate change will exert on smallholder farm productivity in sub-Saharan Africa, and the critical role productivity gains play in catalyzing an escape from poverty, speeding the pace of investment in African agriculture can also be viewed as a good bet for climate adaptation.

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U.S. ethanol policy may be the single most significant contributor to world food price instability, states a Stanford study on the global costs of American ethanol. The rapid rise of biofuels has tied energy and agricultural markets together, making it difficult to assess one without understanding the other.

The price of corn recently hit an all time high, a departure from a long-term trend that has seen the cost of corn decline with each passing decade. Price spikes have happened before, and some experts viewed the latest jump as part of this familiar cycle. Stanford food policy economists Rosamond L. Naylor and Walter P. Falcon alternatively argue in a new paper released in The American Interest that we have entered a new era where agricultural commodity prices are increasingly driven by U.S. biofuel policies. This food and fuel linkage has, and will continue to have, major implications for global food prices and the world’s poor.

Over the last decade, the U.S. ethanol industry experienced a major increase in production and consumption as a result of beneficiary of tax breaks, tariffs and government mandates. In 2005, MTBE was phased out as a gasoline additive because of environmental and health risks, and ethanol became the preferred MTBE substitute. Production was further supported with a mandate to reach a minimum target of 15 billion gallons by 2015. 

A jump in the price of crude oil gave a further boost to ethanol as a potential replacement for petroleum. As a result, 40% of the U.S. corn crop is now devoted to ethanol production. These policies have been promoted under the banner of protecting the American farm industry, securing energy independence, and decreasing greenhouse gas emissions, and they have succeeded on a number of these fronts.

However, as a major global producer and exporter of corn, the rapid rise of ethanol production in the U.S. during such a short period of time has produced a fundamental change in the structure of demand for corn. Increased demand has led to higher and more volatile food prices, not only for corn but other agricultural commodities. If the United States, along with the rest of the G-20, is serious about stabilizing global food prices, U.S. domestic biofuels policy in its entirety will need to be re-examined.

High prices are a boon to the U.S. farm sector, but can be devastating for poor consumers with minimal income to spend on food. Food riots have broken out in several countries suggesting the new volatility in the price of staple crops has had a severe impact on developing economies. Where once the policies of the U.S. helped keep agricultural prices on an even keel, current support for the production of corn-based ethanol has reversed this stabilizing role. 

Given the bullish financial outlook for the U.S. agricultural sector, this is an ideal time to begin dismantling both ethanol and corn (and other major commodity) subsidies. Corn-based ethanol tax and tariff provisions together cost the federal government around $6 billion annually. Cutting these subsidies would help reduce the Federal budget deficit without harming the rural economy.

The trickier political and economic questions relate to reassessing mandates, and are likely off the table with the 2012 elections approaching. This is unfortunate, for these policies will continue to cause unrest in food markets far beyond American shores.

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David Lobell leads a 'Classes Without Quizzes' talk as part of Stanford Homecoming. Lobell discusses the latest trends in global food prices and hunger, explains how they are linked, and discusses some of the key factors to look for in understanding future developments in this area.

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Professor, Earth System Science
Senior Fellow at the Freeman Spogli Institute for International Studies
Senior Fellow at the Stanford Woods Institute for the Environment
Senior Fellow at the Stanford Institute for Economic Policy Research (SIEPR)
Affiliate, Precourt Institute of Energy
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David Lobell is the Benjamin M. Page Professor at Stanford University in the Department of Earth System Science and the Gloria and Richard Kushel Director of the Center on Food Security and the Environment. He is also the William Wrigley Senior Fellow at the Stanford Woods Institute for the Environment, and a senior fellow at the Freeman Spogli Institute for International Studies (FSI) and the Stanford Institute for Economic Policy and Research (SIEPR).

Lobell's research focuses on agriculture and food security, specifically on generating and using unique datasets to study rural areas throughout the world. His early research focused on climate change risks and adaptations in cropping systems, and he served on the Intergovernmental Panel on Climate Change (IPCC) Fifth Assessment Report as lead author for the food chapter and core writing team member for the Summary for Policymakers. More recent work has developed new techniques to measure progress on sustainable development goals and study the impacts of climate-smart practices in agriculture. His work has been recognized with various awards, including the Macelwane Medal from the American Geophysical Union (2010), a Macarthur Fellowship (2013), the National Academy of Sciences Prize in Food and Agriculture Sciences (2022) and election to the National Academy of Sciences (2023).

Prior to his Stanford appointment, Lobell was a Lawrence Post-doctoral Fellow at Lawrence Livermore National Laboratory. He holds a PhD in Geological and Environmental Sciences from Stanford University and a Sc.B. in Applied Mathematics from Brown University.

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Indonesia is currently the world’s top palm oil producer. Since the 1980s total land area planted to palm oil has increased by over 2,100 percent growing to 4.6 million hectares – the equivalent of six Yosemite National Parks. Plantation growth has predominately occurred on deforested native rainforest with major implications for global carbon emissions and biodiversity.

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World leaders are focused on agricultural supply data, insurance schemes and speculation as they try to quell volatility in global food markets. They should also turn their attention to perhaps the leading cause of price instability: U.S. ethanol policy.

Five years ago, few if any food or energy experts predicted that 40 percent of the U.S. corn crop in 2011 would be devoted to ethanol production. Nor did they imagine: that corn prices would reach all-time highs at $8 per bushel ($275 per metric ton); that July futures prices for corn in Chicago would exceed those for wheat; that the United States would be exporting ethanol to Brazil; or that an Iowa Senator would co-sponsor a bill to reduce corn-based subsidies just prior to the Iowa Caucuses for the 2012 primary season. What has caused these extraordinary circumstances? And what are the economic, political and food-security implications of a revolution in demand that has caught both economists and political leaders unaware?

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Policies promoting ethanol and biodiesel production and use in the U.S., Europe, and other parts of the world since the mid-2000s have had profound—and largely unintended—consequences on global food prices, agricultural land values, land acquisition, and food security in developing countries. They have also created regional opportunities in the form of agricultural investments, crop yield growth, and booming farm economies. Rising incomes in emerging economies are generating increased demand for transportation fuels, thus stimulating further growth of the global biofuel industry. This seminar will explore the politics, economics, and global food security implications of the expanding biofuel sector. Several policy questions will be raised, including the role of biofuel mandates on food prices, the role of trade policies for stabilizing food prices in an era of increasingly tight demand, and the role of land policies and institutions for feedstock production and income distribution in the developing world.

Siwa Msangi, Senior Research Fellow in the Environment and Production Technology Division at the International Food Policy Research Institute (IFPRI) will provide commentary. Msangi's work focuses on the major socio-economic and bio-physical drivers affecting agricultural production and trade, and their impacts on nutrition, poverty and the environment. Dr. Msangi manages a research portfolio that includes the economic and environmental implications of biofuels, and has coordinated the project Biofuels and the Poor in partnership with FSE.  

Biofuels videos: Roz Naylor talks food security and energy with Near Zero

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Senior Fellow, Emerita, Stanford Woods Institute and Freeman Spogli Institute for International Studies,
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Rosamond (Roz) Naylor is the William Wrigley Professor, Emerita, of Global Environmental Policy in the Doerr School of Sustainability; and founding Director of the Center on Food Security and the Environment (FSE) at Stanford University. Her research focuses on policies and practices to improve global food security and protect the environment on land and at sea. She has been involved in numerous field-level research projects around the world with her students and has published widely on issues related to global food systems, food policy, and aquaculture. She is the co-chair of The Blue Food Assessment, an international initiative aimed at providing a comprehensive scientific evaluation of the sustainability, nutrition, equity, and justice dimensions of aquatic foods cultured and captured in freshwater and marine environments within the global food system. She is a Member of the National Academy of Sciences, a Fellow of the American Association for the Advancement of Science (AAAS), Fellow of the Ecological Society of America (ESA), a Pew Marine Fellow, and a Leopold Leadership Fellow. She is also the Chair of the Board of Directors for the Aspen Global Change Institute and a member of the Scientific Advisory Committee for Oceana. At Stanford, she teaches courses on The World Food Economy, Human Society and Environmental Change, and Food and Security.
 

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This paper serves as background to the fourth presentation in a Symposium Series on Global Food Policy and Food Security hosted by the Center on Food Security and Environment at Stanford University and supported by the Bill and Melinda Gates Foundation.


Political dynamics, not economic analysis, drive the domestic policy response to sharply rising food prices. The political objective during a food price crisis is almost always to keep it from happening. In the short run, this means “stabilizing” domestic food prices despite whatever is happening in world markets. Stabilizing domestic food prices in the face of sharply escalating world prices is not a foolish goal—most countries try to do it. The real issue is whether this can be done effectively and efficiently. The answer is always “no” unless the country has planned well ahead for such a contingency and already has an operational food price stabilization program in place. 

As a matter of “good practice,” all countries are discouraged by international donors from conducting such programs. Instead, countries are urged to implement “social” safety nets in times of food price spikes. The economic rationale is clear: let market prices signal the scarcity of food resources so that supply and demand can adjust, and then compensate the poor for deterioration in their standard of living when food prices rise. The problem is that safety nets that reach the poor quickly and effectively take considerable time to design and implement, and are quite costly in fiscal terms if the poor are a substantial share of the total population. Historically, unless the country is already running a cash transfer program to the poor, the emergence of a food price crisis is too sudden for an effective government response. Gearing up emergency food relief safety nets is not an effective response to a sudden spike in food prices.

More active measures to prevent food price spikes are needed, both domestically and internationally. One starting point would be for countries with large populations to gradually build their grain reserves to the point where they do not feel vulnerable to spikes in world prices and to possible grain embargoes from their regular suppliers. It would be desirable to have such stockholding strategies coordinated internationally, but this is unlikely in other than rhetorical terms. Still, the mere existence of these stocks, even if domestically controlled, would have a calming influence on world grain markets (especially on the very thin world rice market). With calmer markets, recourse to more open trade policies becomes politically feasible (and it is almost always economically desirable). Eventually, the reality of the high costs of grain storage will stimulate a more balanced approach to food security, with both reserves and trade playing significant roles.

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FSE director Roz Naylor discussant in three panels at the 2011 Aspen Environment Forum, a conference sponsored by the Aspen Institute and National Geographic. Follow the conference on Twitter, @AspenInstitute and @NatGeoGreen, or via #aef2011. National Geographic will be posting daily blogs on ngm.com/aspen.

Tuesday, May 31:

Peak Planet

Population boomed in the 20th century mostly because public health and sanitation measures saved lives—but keeping those people alive and enriching many of them required an unprecedented boom in our ability to extract resources from the Earth. The debate about “peak oil” has loomed over us for decades, but other mineral resources may be nearing peaks as well. Platinum and other metals, phosphate for fertilizer, and just plain dirt—that is, fertile topsoil—have all been mentioned as approaching scarcity. Which of these resources is likely to become a real constraint on human development, and how soon?

Discussants: Marcia McNutt, Daniel Kammen, Roz Naylor, Andrew Revkin
Moderator: Elliot Gerson 

Can Science Feed the World?

Growing enough food in decades ahead at an acceptable cost to the planet will depend on research into everything from high-tech seeds to low-tech farming practices. Scientists increasingly see a critical role for “sustainable intensification,” an approach to producing more food from the same land with fewer inputs of energy and water, and at the same time reducing the negative environmental impacts that already occur. Where is this happening now and what can be learned from our attempts, and how can this be achieved at larger scale?

Discussants: Jerry Glover, Roz Naylor, Paul E. Schickler 
Moderator: Tim Appenzeller

Wednesday, June 1:

The Revolution We Need in Food Security and Population

The second global food crisis in three years is upon us – with bad weather, poor harvests and political turmoil sending food prices soaring to all-time highs. At the same time, the planet’s population is set to surpass seven billion this year, with most of the growth occurring in countries least equipped to meet the rising demands on agriculture and the environment. Experts predict that global food production must increase by 70 percent by mid-century to keep pace with current rates of growth. Join experts and policymakers for a discussion on these trends and the policies and programs needed to create lasting development and food security, including meeting the reproductive health needs of the growing world population.

Introduction: Dennis Dimick
Discussants: Dan Glickman, Roger-Mark De Souza, Roz Naylor, John Foley 
Moderator: Elliot Gerson

Aspen Institute, Aspen CO

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Senior Fellow, Emerita, Stanford Woods Institute and Freeman Spogli Institute for International Studies,
William Wrigely Professor, Emerita, Department of Environmental Social Sciences
Roz_low_res_9_11_cropped.jpg PhD

Rosamond (Roz) Naylor is the William Wrigley Professor, Emerita, of Global Environmental Policy in the Doerr School of Sustainability; and founding Director of the Center on Food Security and the Environment (FSE) at Stanford University. Her research focuses on policies and practices to improve global food security and protect the environment on land and at sea. She has been involved in numerous field-level research projects around the world with her students and has published widely on issues related to global food systems, food policy, and aquaculture. She is the co-chair of The Blue Food Assessment, an international initiative aimed at providing a comprehensive scientific evaluation of the sustainability, nutrition, equity, and justice dimensions of aquatic foods cultured and captured in freshwater and marine environments within the global food system. She is a Member of the National Academy of Sciences, a Fellow of the American Association for the Advancement of Science (AAAS), Fellow of the Ecological Society of America (ESA), a Pew Marine Fellow, and a Leopold Leadership Fellow. She is also the Chair of the Board of Directors for the Aspen Global Change Institute and a member of the Scientific Advisory Committee for Oceana. At Stanford, she teaches courses on The World Food Economy, Human Society and Environmental Change, and Food and Security.
 

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