Agriculture

Energy and Environment Building
473 Via Ortega
Stanford CA 94305

(650) 721-6207
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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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387 Plant Science Hall
Department of Agronomy and Horticulture
University of Nebraska-Lincoln
P. O. Box 830915
Lincoln, NE 68583-0915

(402) 472-5554 (402) 472-8650
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Professor of Agronomy and Horticulture, University of Nebraska
cassman_web_copy.jpg PhD

The need to meet food demand while protecting environmental quality and natural resources for future generations is a scientific challenge that has been grossly underestimated, and this theme provides a unifying framework for my research. Agricultural systems must ultimately contribute to solving the most pressing environmental problems facing humankind because agriculture is practiced on 33% of the earth's surface. Hence, the ultimate goal of my research and educational programs is to ensure that increases in food production do not compromise the quality of soil and water resources or threaten the ecological integrity of natural ecosystems. Current projects focus on understanding process controls on carbon sequestration in agricultural soils, energy efficiency of major rainfed and irrigated cropping systems in the north-central USA, the potential for ecological intensification of maize-based cropping systems, and use of crop simulation models to improve crop and soil management decisions. As a member of interdisciplinary research teams, our goal is to seek fundamental knowledge about the dynamic, interactive effects of climate and crop/soil management practices on short- and long-term performance of agroecosystems-with a focus on carbon sequestration, greenhouse gas emissions, nitrogen and energy efficiency, and crop productivity.

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The project studies the impact of China's current economic transition on its agricultural economy with special reference to the consequences of trade liberalization and of changing trade flows. The project will track impacts on social conditions and on the environment in China's rural areas as well as on markets in the rest of the world, with particular emphasis on the EU. For this, the research considers (a) the dynamic, rapid pace of the transition; (b) the size and geographical diversity of the country; and (c) the effect of the changes on the rest of the world. The research opts for a quantitative approach, supplemented by qualitative investigations, and focuses on three themes: trade, social conditions, and environment. On trade, the research aims to account for the size of China's trade and take a closer look at trade between the EU and China with scenario simulations over the period 2000-2030, by establishing a linkage between (a) the Chinagromodel, a spatially explicit equilibrium model that comprehensively depicts China's farm sector in 2433 counties, while connecting these through trade and transportation flows; (b) the GTAPmodel of world trade; (c) FEA-27, a model of EU-agriculture for 27 members states. The research on social conditions proceeds by linking geo-referenced household surveys to a population census of China and a detailed geographical data set, relying on a suitable adaptation of poverty mapping methodology, so as to trace impacts at household level. Finally, we use agro-ecological assessment tools to quantify the environmental pressures resulting from intensified livestock industry as well as from intensified horticulture production. Findings on the three themes are subsequently integrated to arrive at policy suggestions that account for efficiency, equity and sustainability considerations. Throughout the project, a policy dialogue and dissemination program, conducted in both China and the EU, maintains communication with policy makers.

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Scott Rozelle
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Rosamond L. Naylor
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This past autumn the Freeman Spogli Institute for International Studies (FSI) in conjunction with the Woods Institute for the Environment launched a program on Food Security and the Environment (FSE) to address the deficit in academia and, on a larger scale, the global dialogue surrounding the critical issues of food security, poverty, and environmental degradation.

"Hunger is the silent killer and moral outrage of our time; however, there are few university programs in the United States designed to study and solve the problem of global food insecurity," states program director Rosamond L. Naylor. "FSE's dual affiliation with FSI and the new Stanford Institute for the Environment position it well to make significant steps in this area."

Through a focused research portfolio and an interdisciplinary team of scholars led by Naylor and CESP (Center for Environmental Science and Policy) co-director Walter P. Falcon, FSE aims to design new approaches to solve these persistent and under-prioritized problems, expand higher education on food security and the environment at Stanford, and provide direct policy outreach.

Productive food systems and their environmental consequences are at the core of the program. While many of these systems are global in character, but they are influenced significantly by differing food objectives, income level, and instruments among nations. The program thus seeks to understand the food security issues that are of paramount interest to poor countries, the food diversification challenges that are a focus of middle-income nations, and the food safety and subsidy concerns prominent in richer nations.

Chronic hunger in a time of prosperity

Although the world's supply of basic foods has doubled over the past century, roughly 850 million people (12 percent of the world's population) suffer from chronic hunger. Food insecurity deaths during the past 20 years outnumber war deaths by a factor of at least 5 to 1. Food insecurity is particularly widespread in agricultural regions where resource scarcity and environmental degradation constrain productivity and income growth.

FSE is currently assessing the impacts of climate variability on food security in Asian rice economies. This ongoing project combines the expertise of atmospheric scientists, agricultural economists, and policy analysts to understand and mitigate the adverse effects of El Niño-related climate variability on rice production and food security under current and future global warming conditions. As a consequence of Falcon and Naylor's long-standing roles as policy advisors in Indonesia, models developed through this project have already been embedded into analytical units within Indonesia's Ministry of Agriculture, the Planning Ministry, and the Ministry of Finance.

"With such forecasts in hand, the relevant government agencies are much better equipped to mitigate the negative consequences of El Niño events on incomes and food security in the Indonesian countryside," explain Falcon and Naylor.

Food diversification and intensification

With rapid income growth, urbanization, and population growth in developing economies, priorities shift from food security to the diversification of agricultural production and consumption. "Meat production is projected to double by 2020" states Harold A. Mooney, CESP senior fellow and an author of the Millennium Ecosystem Assessment. "In China alone, meat consumption has more than doubled in the past generation." As a result, land once used to provide grains for humans now provides feed for hogs and poultry.

These trends will have major consequences on the global environment-affecting the quality of the atmosphere, water, and soil due to nutrient overloads; impacting marine fisheries both locally and globally through fish meal use; and threatening human health, as, for example, through excessive use of antibiotics.

An FSE project is looking at these trends as it relates to intensive livestock production and assessing the environmental impacts to gain a better understanding of the true costs of this resource-intensive system. A product of this work recently appeared as a Policy Forum piece in the December 9, 2005, issue of Science titled "Losing the Links Between Livestock and Land".

Numerous factors have contributed to the global growth of livestock systems, lead author Naylor notes, including declining feed-grain prices, relatively inexpensive transportation costs, and trade liberalization. "But many of the true costs remain largely unaccounted for," she says. Those costs include destruction of forests and grasslands to provide farmland for corn, soybeans, and other feed crops destined not directly for humans but for livestock; utilization of large quantities of freshwater; and nitrogen losses from croplands and animal manure.

Naylor and her research team are seeking better ways to track all costs of livestock production, especially the hidden ones related to ecosystem degradation and destruction. "What is needed is a re-coupling of crop and livestock systems," Naylor says. "If not physically, then through pricing and other policy mechanisms that reflect social costs of resource use and ecological abuse."

Such policies "should not significantly compromise the improving diets of developing countries, nor should they prohibit trade," Naylor adds. Instead, they should "focus on regulatory and incentive-based tools to encourage livestock and feed producers to internalize pollution costs, minimize nutrient run-off, and pay the true price of water."

Looking ahead

The future of the program on Food Security and the Environment looks bright, busy, and expansive. While a varied portfolio of projects is in line for the upcoming year, a strong emphasis remains in the area of food security. Building on existing research at Stanford, researchers are identifying avenues for enhancing orphan crop production in the world's least developed countries-crops with little international trade and investment, but with high local value in terms of food and nutrition security. The work seeks to identify advanced genetic and genomic strategies, along with natural resource management strategies, to improve orphan crop yields and stability, enhance crop diversity, and increase rural incomes through orphan crop production.

Another priority area of research centers on the development of biofuels. Biofuels are becoming increasingly a part of the policy set for world food and agriculture. As countries such as the United States seek energy self-reliance and look for alternatives to food and feed subsidies under WTO (World Trade Organization) rules, the conversion of corn, sugar, and soybeans to ethanol and other energy sources becomes more attractive. New extraction methods are making the technology more efficient, and crude oil prices at $60 per barrel are fundamentally changing the economics of biomass energy conversion. A large switch by key export food and feed suppliers, such as the United States and Brazil, to biofuels could fundamentally alter export prices, and hence the world food and feed situation. A team of FSE researchers will assess the true costs of these conversions.

The FSE program recently received a grant through the Presidential Fund for Innovation in International Studies to initiate new interdisciplinary research activities. One such project links ongoing research at Stanford on the environmental and resource costs of industrial livestock production and trade to assess the extent and rate of Brazil's rainforest destruction for soybean production. "Tens of millions of hectares of native grassland and rainforest are currently being cleared for soybean production to supply the global industrial livestock sector," says Naylor. A significant share of Brazil's soybeans is being shipped to China, where rapid income growth is fueling tremendous increases in meat consumption."

A team of remote-sensing experts, ecologists, agronomists, and economists will be looking at the ecological effects on the landscape through biogeochemical changes and biodiversity loss, the impacts of land clearing on the regional hydrologic cycle and climate change, the economic patterns of trade, and the role of policies to achieve an appropriate balance between agricultural commodity trade, production practices, and conservation in Brazil's rainforest states.

"I'm extremely pleased to see the rapid growth of FSE and am encouraged by the recent support provided through the Presidential Fund for Innovation in International Studies," states Naylor. "It enables the program to engage faculty members from economics, political science, biology, civil and environmental engineering, earth sciences, and medicine-as well as graduate students throughout the university-in a set of collaborative research activities that could significantly improve human well-being and the quality of the environment."

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Meeting the world's energy needs and at the same time reducing emissions of greenhouse gases is one of the grand challenges humans must face in this century. China's situation illustrates the magnitude of the challenge as well as any place in the world. Its economy is growing rapidly, energy shortages abound, and a primary source of energy is coal. This talk reviews China's current and projected future emissions of carbon dioxide, examines alternatives for meeting the combined goals of increasing energy supply and reducing emissions, and describes research underway to provide more options to meet the challenges China faces.

Lynn Orr focuses his research activities on the interactions of fluid phase behavior with multiphase flow in porous media, the design of gas injection processes for enhanced oil recovery, and C02 sequestration in subsurface porous media. In August 2005, Dr. Orr and the Global Climate and Energy Project hosted an international conference at Tsinghua University in Beijing, China, to explore opportunities for collaborative research to integrate advanced coal technologies with CO2 capture and storage in China.

This series is co-sponsored with the Center for East Asian Studies at Stanford University.

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Franklin M. Orr Keleen and Carlton Beal Professor of Petroleum Engineering, Professor, by courtesy, in Chemical Engineering and Director of the Precourt Institute for Energy, FSI senior fellow by courtesy Speaker Stanford University
Seminars
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National security and global climate change are key motivations for seriously examining strategies for sustainable energy independence. We currently import more than 60% of our oil -- soon to be 70% -- from sources that are either unfriendly or unstable. We are also importing a substantial and increasing amount of natural gas from outside of North America.

The effectiveness of recent widespread supply abuses provides evidence of the fragility of the US economy to interruption of that energy supply stream for whatever end. This vulnerability and the mounting evidence of greenhouse gas induced climate change demand a fundamental change in US energy policies and behavior.

This paper draws on data presented at a National Academy of Engineering meeting last June and other sources to examine the options proposed and endeavors to separate the signal from the considerable noise associated with the subject. I propose a set of solutions that appear readily achievable to eliminate all dependency on imported oil and gas. The seminar provides an opportunity to get some expert feedback and discussion of the policy changes involved.

L. David Montague, an independent consultant, retired as President of the Missile Systems Division at Lockheed Martin Missiles and Space in 1996. A member of the National Academy of Engineering, Mr. Montague has 50 years of background in design, development and management of strategic and tactical military weapon systems. In addition to his development expertise in both tactical and strategic strike and defensive systems, his experience includes the requirements, development, and national security policy issues of strategic forces and defense systems to protect against weapons of mass destruction.

CISAC Conference Room
616 Serra St.
Encina Hall Central (2nd floor)
Stanford University
Stanford, CA 94305

David Montague CISAC Affiliate; Former President, Missile Systems Division, Speaker Lockheed Martin Missiles and Space
Seminars
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Professor Park will address the changes that have occurred in the Chinese labor market over the past quarter century, focusing on the extent to which labor market reforms have successfully created a well-functioning market for labor with a high degree of labor mobility. Like other rapidly growing developing countries, China has experienced rapid structural change featuring a steady flow of labor from agriculture to industry, and from rural areas to urban areas. As a transition economy, China has shifted gradually from planned allocation of labor in state-sector jobs to a more open labor market. Although the large magnitudes of these changes are impressive, reform of the labor market has been halting, uneven, and difficult, with much additional reform still required. Prof. Park will look at several dimensions of the Chinese labor market: labor allocation, wage setting, regional differences, and ownership sectors. He will conclude by discussing the key policy challenges that lie ahead.

Albert Park is Associate Professor of Economics and Faculty Associate of the Center for Chinese Studies at the University of Michigan. He is also a research affiliate at the Population Studies Center and chairs the faculty steering committee for Michigan's China Data Center. Dr. Park has been a visiting professor and researcher at Harvard University and Peking University, as well as other research institutions in China and Taiwan, and has served as a consultant for the World Bank on several projects analyzing economic development issues in China, including the Bank's current China Poverty Assessment project. Dr. Park earned a Ph.D. in applied economics from the Food Research Institute and Department of Economics at Stanford University in 1996. His research interests include economic development, economic transition, labor, applied microeconomics, and the Chinese economy. He is involved in numerous collaborative research activities in China, including several large survey projects to study labor market developments in urban areas, and rural education, health, and labor outcomes. He has published over thirty journal articles and chapters in edited volumes, and is the coeditor of a forthcoming volume titled Education and Reform in China. At Michigan, he teaches a graduate course on the microeconomics of development and an undergraduate course on the Chinese economy.

This series is co-sponsored with the Center for East Asian Studies at Stanford University.

Philippines Conference Room

Albert Park Associate Professor of Economics Speaker University of Michigan
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One of the few ways to get a taste of North Korea, short of leaping through numerous hoops to get a visa to visit the country, is to eat cold noodles (naengmyen). Most South Korean cities and even a few American ones offer several types of North Korean-style noodle restaurants. The version often prepared in Pyongyang, North Korea's capital, is mul naengmyen, or cold noodles in broth. It is served in a large metal bowl and looks like a flowering mountain rising up from the sea. Artfully balanced atop the mound of noodles made from buckwheat flour are julienned cucumbers, several slices of beef, half a hardboiled egg, and a few pieces of crisp Korean pear. When prepared Hamhung-style -- named after the industrial city on North Korea's east coast -- noodles are made from sweet potato flour and often topped with raw skate, which has a slightly ammoniac flavor.

The signs in the South advertising Northern-style cold noodles are a reminder of the Korean War and the division of the peninsula. After the Korean War, refugees from the conflict set up stalls in the markets of Seoul to sell the "taste of the north" to those who could no longer travel there. The recipes they brought with them to the south were sometimes the only valuables they carried. In the 1990s, a new wave of North Koreans came to the South and established naengmyen restaurants. Hailing from the North lends a certain authenticity to the preparation of the dish. Whether prepared by the refugees of the 1950s and their descendents, the defectors of the 1990s, or North Koreans themselves in Pyongyang or Hamhung, cold noodles are something that North Koreans are widely credited with doing better than South Koreans.

But the way naengmyen is "consumed" in the South reveals the great disparity between the two countries. There are many jokes in South Korea about the number of North Korean defectors who have only this one marketable skill. Since cooking in Korea is largely a woman's job, the close association of North Koreans with the production and sale of cold noodles subtly feminizes and, according to patriarchal Korean values, devalues them. North Koreans are thus second-class citizens, both those who are unemployed (the majority) and those who are employed only to provide service to the real "breadwinners" of the country. Anthropologist Roy Richard Grinker relates how South Korean textbooks and popular culture often depict North Korea as the younger brother of the more advanced South Korean older brother. Given the cultural associations of naengmyen, wife to husband might be the more appropriate analogy. A recent Joongang Ilbo Photoshop cartoon reinforces this sexist gloss on inter-Korean relations by depicting South Korean President Roh Moo Hyun dressed as a Choson-era husband with North Korean leader Kim Jong Il as his bride.

In a divided country, cold noodles serve as an important reminder of a common culture. They also represent a unique contribution that the economically weaker North Korea can bring to the reunification process. But however tasty Pyongyang-style mul naengmyen may be, cold noodles ensure neither a sustainable livelihood for every North Korean defector nor an equal place at the reunification table for North Korea.

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Shorenstein APARC
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Global meat production is becoming increasingly industrialized, spatially concentrated, and geographically detached from the agricultural land base. This Policy Forum reviews the process of livestock industrialization and globalization, and its consequences for water, nitrogen, and species-rich habitats in meat- and feed-producing regions often vastly separated in space. It argues that pricing and other policy mechanisms which reflect social costs of resource use and ecological change are needed to re-couple livestock and land in producer countries, drawing on examples from Europe and the United States. It also argues that consumers can play an important role in setting a sustainable course.

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Science
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Rosamond L. Naylor
Henning Steinfeld
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