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David Lobell
David Lobell
Luigi Guarino
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Feeding a growing population in a hotter world will require exploiting a far broader range of crop diversity than now — and that means valuing wild genes.

Over much of the world, the growing season of 2050 will probably be warmer than the hottest of recent years, with more variable rainfall. If we continue to grow the same crops in the same way, climate change will contribute to yield declines in many places. With potentially less food to feed more people, we have no choice but to adapt agriculture to the new conditions.

To some extent, adaptation can be done by moving crops to more favourable areas and by agronomic tweaks. But that will almost certainly not be enough. We will have to give crops a genetic helping hand, infusing them with new genes to allow them to better cope with new climates, and the new pests and diseases they will bring. Where are these genes going to come from?

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Reducing carbon-dioxide emissions is primarily a political problem, rather than a technological one. This fact was well illustrated by the fate of the 2009 climate bill that barely passed the U.S. House of Representatives and never came up for a vote in the Senate. The House bill was already quite weak, containing many exceptions for agriculture and other industries, subsidies for nuclear power and increasingly long deadlines for action. In the Senate, both Republicans and Democrats from coal-dependent states sealed its fate. Getting past these senators is the key to achieving a major reduction in our emissions.

Technological challenges to reducing emissions exist, too. Most pressing is the need to develop the know-how to capture carbon dioxide on a large scale and store it underground. Such technology could reduce by 90 percent the emissions from coal- fired power stations. Some 500 of these facilities in the U.S. produce 36 percent of our CO2 emissions.

But these plants aren’t evenly spaced around the country. And therein may lie the key to addressing the political and technological challenges at the same time. If the federal government would invest in carbon capture and storage, it could go a long way toward persuading politicians in every state to sign on to emission reductions.

I’ll get to the specifics of the technology shortly. But first, consider how the costs of emission reduction fall hardest on certain parts of the country: A carbon tax levied on all major sources of released CO2, the approach favored by most of the environmental community, would make energy from coal-fired power plants cost more. To make a significant difference, such a tax would have to amount to $60 a ton.

Midwest Carbon Footprint

As a result, gasoline prices would rise 26 percent, and natural gas for household usage by 25 percent, nationwide. Rich and urbanized states could probably tolerate this. The West Coast, with its hydroelectric power, and the Northeast, which relies to a large extent on natural gas, could most easily absorb the associated increase in energy costs.

But the price of energy in the rural, Midwestern states would more than quadruple because of their large carbon footprint. Midwesterners get most of their electricity from coal; they drive relatively long distances to get to work, shopping and entertainment; and rural homes and buildings use more energy for heating and cooling.

One carbon-tax proposal now being considered is a “cap and dividend” plan that would send the tax revenue back to all U.S. citizens equally. But that would also favor the rich states that are less dependent on driving and coal.

It would be more helpful for the coal-dependent states if the federal government would use revenue from a carbon tax to help develop the technology for carbon capture and storage.

And that brings us to the technological challenges: No plant of any size with the capacity for CCS yet exists, but it has been demonstrated to work at small scales. Three different processes for capturing the CO2 are being tested, and scaling them up for 500-megawatt or 1,000-megawatt facilities should be possible.

For two years, the Mountaineer plant in New Haven, West Virginia, has been capturing and storing a tiny amount of its CO2 -- 2 percent of it -- but plans to build a full-scale carbon-capture plant here have been abandoned. Because Congress has dropped any idea of imposing a tax on carbon emissions, the investment doesn’t make sense.

A large plant in Edwardsport, Indiana, was being constructed with the expensive gasification process that makes it easy to add carbon-capture facilities, but it, too, has been shelved.

China may finish its large demonstration carbon-capture plant before the U.S. gets any model up to scale. Others are planned in Europe, and a small one is operating in Germany. This plant has been unable to get permission for underground storage, so it is selling some of its CO2 to soft-drink companies and venting the rest.

Subterranean Storage

Storing captured CO2 is eminently possible, too. For 15 years, the Sleipner facility in Norway has been storing 3 percent of that country’s CO2 underneath the ocean floor, with no appreciable leakage. Algeria has a similar facility, the In Salah plant, operating in the desert.

One storage strategy under consideration in the U.S. is to inject captured CO2 into huge basalt formations off both the east and west coasts. Inside the basalt, the carbon gas would gradually turn into bicarbonate of soda.

There are other ways to dispose of carbon dioxide. It has been used for enhanced oil recovery for many decades without any danger, and has been effectively stored in depleted oil reservoirs. (The gas is dangerous only in high concentration.)

It remains uncertain how much of the captured CO2 might leak during storage. Even if this were as much as 10 percent, however, it would mean that 90 percent of it would stay underground.

As CCS technology develops, it will have to be made more efficient so that it uses less energy. As it is, the capture phase is expected to require that a power plant burn 20 percent to 25 percent more coal than it otherwise would.

The technological challenges may explain why energy companies haven’t lobbied for subsidies to develop CCS. The electric-energy sector isn’t known for innovation and risk- taking. Just look at the U.S.’s outdated power grid.

But the federal government could pay for the subsidies through a tax on carbon. Such a levy would have other advantages, too: It would raise the cost of energy to reflect the damage that burning coal and oil now do to the environment, and spur the development of renewable sources.

If states with large carbon footprints can’t accept such a tax, the CCS subsidies could be paid from the general fund. The cost to build coal-fired power plants with CCS technology is estimated to be about $5 billion to $6 billion -- about the price of a single nuclear power plant. The total price for the U.S.’s 500 large plants would be $250 billion. That’s as much as the planned modernization and expansion of our missile defense system over 10 years.

But it would slash our carbon emissions by at least 20 percent. There is no other politically possible way to cut CO2 as much, and as quickly -- in a decade or two. And devastating climate change is far more likely than a missile attack.

U.S. investment in CCS technology could also induce China and Europe to follow suit. And this would allow the world time for renewable-energy technologies to mature -- to the point where we could do away with coal burning altogether.

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Charles Perrow

Yang and Yamazaki Environment and Energy Building
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Stanford University
Stanford, CA 94305

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Richard and Rhoda Goldman Professor of Environmental Studies, Senior Fellow at the Woods Institute for the Environment, FSE Affiliated Faculty
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MS, PhD

Pamela Matson is an interdisciplinary sustainability scientist, academic leader, and organizational strategist. She served as dean of Stanford University’s School of Earth, Energy and Environmental Sciences from 2002-2017, building interdisciplinary departments and educational programs focused on resources, environment and sustainability, as well as co-leading university-wide interdisciplinary initiatives. In her current role as the Goldman Professor of Environmental Studies and Senior Fellow in the Woods Institute for the Environment, she leads the graduate program on Sustainability Science and Practice. Her research addresses a range of environment and sustainability issues, including sustainability of agricultural systems, vulnerability and resilience of particular people and places to climate change, and characteristics of science that can contribute to sustainability transitions at scale.

Dr. Matson serves as chair of the board of the World Wildlife Fund-US and as a board member of the World Wildlife Fund-International and several university advisory boards. She served on the US National Academy of Science Board on Sustainable Development and co-wrote the National Research Council’s volume Our Common Journey: A transition toward sustainability (1999); she also led the NRC committee on America’s Climate Choices: Advancing the Science of Climate Change. She was the founding chair of the National Academies Roundtable on Science and Technology for Sustainability, and founding editor for the Annual Review of Environment and Resources. She is a past President of the Ecological Society of America. Her recent publications (among around 200) include Seeds of Sustainability: Lessons from the Birthplace of the Green Revolution (2012) and Pursuing Sustainability (2016).

Pam is an elected member of the National Academy of Science and the American Academy of Arts and Sciences, and is a AAAS Fellow. She received a MacArthur Foundation Award, contributed to the award of the Nobel Prize to the Intergovernmental Panel on Climate Change, among other awards and recognitions, and is an Einstein Fellow of the Chinese Academy of Sciences.

Dr. Matson holds a Bachelor of Science degree with double majors in Biology and Literature from the University of Wisconsin (Eau Claire), a Master degree in Environmental Science and Policy from Indiana University’s School of Public and Environmental Affairs, a Doctorate in Forest Ecology from Oregon State University, and honorary doctorates from Princeton, McGill and Arizona State Universities. She spent ten years as a research scientist with NASA-Ames Research Center before moving to a professorship at the University of California Berkeley and, in 1997, to Stanford University.

Introduction to the Problem: Agricultural productivity is highly dependent on climate variability and is thus susceptible to future changes including temperature extremes and drought. The latter is expected to increase in frequency regionally over this century.

David Lobell to present at AGU's Fall conference.

AGU Fall Meeting
San Francisco, CA

Energy and Environment Building
473 Via Ortega
Stanford CA 94305

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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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PhD

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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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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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
shg_ff1a1284.jpg
PhD

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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The Program on Human Rights Collaboratory Series is an interdisciplinary investigation of human rights in the humanities. It is funded under the Stanford Presidential Fund for Innovation in International Studies as the third in a sequence of pursuing peace and security, improving governance and advancing we

Maxine Burkett is an Associate Professor of Law at the William S. Richardson School of Law, University of Hawai‘i and serves as the inaugural Director of the Center for Island Climate Adaptation and Policy (ICAP), at the University of Hawai‘i Sea Grant College Program.

Professor Burkett’s courses include Climate Change Law and Policy, Torts, Environmental Law, Race and American Law, and International Development. She has written in the area of Race, Reparations, and Environmental Justice. Currently, her work focuses on "Climate Justice," writing on the disparate impact of climate change on vulnerable communities, in the United States and globally. Her March 2007 conference "The Climate of Environmental Justice," at the University of Colorado, brought together leading academics, activists, and legal practitioners in the Environmental Justice field to consider the emerging interplay between race, poverty, and global warming.

Professor Burkett has presented her research on Climate Justice throughout the United States and in West Africa, Asia, Europe and the Caribbean. She most recently served as the Wayne Morse Chair of Law and Politics at the Wayne Morse Center, University of Oregon, as the Fall 2010 scholar for the Center’s “Climate Ethics and Climate Equity” theme of inquiry. She is the youngest scholar to hold the Wayne Morse Chair.

As the Director of ICAP, she leads projects to address climate change law, policy, and planning for island communities in Hawai‘i, the Pacific region, and beyond. In its first eighteen months, ICAP has completed several climate change adaptation related policy documents for Hawai‘i and other Pacific Island nations, specifically the Federated States of Micronesia. It has also hosted numerous outreach and education programs on island resiliency and climate change and engaged planning agencies in all four counties in Hawai‘i and seven state agencies and offices, as well as several federal entities and many state legislators. Most notably, ICAP has partnered with the Hawai‘i State Office of Planning to conduct early planning and assessment for a statewide Climate Change Adaptation Plan.

Professor Burkett attended Williams College and Exeter College, Oxford University, and received her law degree from Boalt Hall School of Law at the University of California, Berkeley. She has worked in private practice in Honolulu with Davis, Levin, Livingston and Paul, Johnson, Park & Niles, and served as a law clerk with The Honorable Susan Illston of the United States District Court, Northern District of California. Prior to her appointment at the University of Hawai‘i, Professor Burkett taught at the University of Colorado Law School. Professor Burkett is from the island of Jamaica, and now she and her husband raise their two young children on the island of O‘ahu, Hawai‘i.

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Helen Stacy Director, Program on Human Rights Moderator
Maxine Burkett Associate Professor of Law, Director Center for Island Climate Adaptation and Policy Speaker University of Hawai at Manoa
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The Program on Human Rights Collaboratory Series is an interdisciplinary investigation of human rights in the humanities. It is funded under the Stanford Presidential Fund for Innovation in International Studies as the third in a sequence of pursuing peace and security, improving governance and advancing well-being.

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Andrew Light Center for American Progress and George Mason University Speaker
David Magnus Host
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2011-2012 Koret Fellow
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Joon-woo Park, a former senior diplomat from Korea, is the 2011–12 Koret Fellow with the Korean Studies Program (KSP).

Park brings over 30 years of foreign policy experience to Stanford, including a deep understanding of the U.S.-Korea relationship, bilateral relations, and major Northeast Asian regional issues. In view of Korea’s increasingly important presence as a global economic and political leader, Park will explore foreign policy strategies for furthering this presence. In addition, he will consider possibilities for increased U.S.-Korea collaboration in their relations with China, as well as prospects for East Asian regional integration based on the European Union (EU) model. He will also teach a course during the winter quarter, entitled Korea's Foreign Policy in Transition.

In 2010, while serving as ambassador to the EU, Park signed the EU-South Korea Free Trade Agreement (FTA) in Brussels. That same year he also completed the Framework Agreement, strengthening EU-South Korea collaboration on significant global issues, such as human rights, the non-proliferation of nuclear weapons, and climate change. Park’s experience with such major bilateral agreements comes as the proposed Korea-U.S. FTA is nearing ratification.

Park holds a BA and an MA in law from Seoul National University.

The Koret Fellowship was established in 2008 through the generosity of the Koret Foundation to promote intellectual diversity and breadth in KSP, bringing leading professionals in Asia and the United States to Stanford to study U.S.-Korea relations. The fellows conduct their own research on the bilateral relationship, with an emphasis on contemporary relations, with the broad aim of fostering greater understanding and closer ties between the two countries.

Center on Food Security and the Environment
473 Via Ortega, room 365
Stanford, CA 94305-4205

(650) 721-2203
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Cargill Visiting Fellow
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PhD

Hertel is a Distinguished Professor of Agricultural Economics at Purdue University. His research focuses on the economy-wide impacts of global trade and environmental policies with a particular interest in the impacts of energy and climate policies on global land use and poverty. He is also Executive Director, and founder of the Center for Global Trade Analysis, and Past-President of the Agricultural and Applied Economics Association (AAEA).

During his stay at Stanford he undertook research into the impacts of climate change and climate policy on agriculture, food security and poverty. In the winter quarter he co-taught an FSE seminar (with David Lobell) on the long run determinants of global agricultural land use.

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