Environment

FSI scholars approach their research on the environment from regulatory, economic and societal angles. The Center on Food Security and the Environment weighs the connection between climate change and agriculture; the impact of biofuel expansion on land and food supply; how to increase crop yields without expanding agricultural lands; and the trends in aquaculture. FSE’s research spans the globe – from the potential of smallholder irrigation to reduce hunger and improve development in sub-Saharan Africa to the devastation of drought on Iowa farms. David Lobell, a senior fellow at FSI and a recipient of a MacArthur “genius” grant, has looked at the impacts of increasing wheat and corn crops in Africa, South Asia, Mexico and the United States; and has studied the effects of extreme heat on the world’s staple crops.

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Climate change is projected to have adverse impacts on public health. Cobenefits may be possible from more upstream mitigation of greenhouse gases causing climate change. To help measure such cobenefits alongside averted disease-specific risks, a health impact assessment (HIA) framework can more comprehensively serve as a decision support tool. HIA also considers health equity, clearly part of the climate change problem. New choices for energy must be made carefully considering such effects as additional pressure on the world's forests through large-scale expansion of soybean and oil palm plantations, leading to forest clearing, biodiversity loss and disease emergence, expulsion of subsistence farmers, and potential increases in food prices and emissions of carbon dioxide to the atmosphere. Investigators must consider the full range of policy options, supported by more comprehensive, flexible, and transparent assessment methods.

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Annual Reviews of Public Health
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Holly Gibbs
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What does it cost to produce a barrel of oil? CDDRL research associate and PESD affiliate Christine Jojarth provides a systematic answer to this question, taking into account geography, the "difficulty" of the oil field, and other factors. The results help quantify how much extra revenue is flowing to oil producers worldwide.
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Former PhD student, Emmett Interdisciplinary Program in Environment & Resources
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Andy earned his doctorate in the Emmett Interdisciplinary Program in Environment and Resources at Stanford University where he studied the Chilean salmon farming industry to understand human relationships with marine environments. He is in the process of writing an environmental and social history of the industry.

Before coming to Stanford, he researched aquaculture policy with Dr. Becky Goldburg at The Environmental Defense Fund; instructed in and administered marine science education programs at the Catalina Island Marine Institute; and worked for the National Marine Fisheries Service in the Alaskan pollock and California drift-gillnet swordfish fisheries.

Previously he attended the Colorado College as a Boettcher scholar to study environmental science, history and literature. His interest in environmental studies largely coalesced during a year spent teaching at Uthongathi School in Kwa-Zulu Natal, South Africa.

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PhD student (former)
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Joanne Gaskell comes from Vancouver, where she first developed her taste for the outdoors. She graduated with honors from Swarthmore College, with a Bachelor's Degree in Biology and Economics.

Prior to joining IPER she worked for two years at the International Food Policy Research Institute (IFPRI) in Washington, D.C. as a Research Assistant in the Environment and Production Technology Division. Joanne's research addressed the impact of food production on the environment, and the contribution of environmental factors to food security. While at IFPRI, Joanne served as an author on the Food and Cultivated Systems chapters of the Millennium Ecosystem Assessment. She also co-authored a United Nations Hunger Task Force-commissioned paper on environmental and social correlates of child hunger in Africa.

Joanne's current research interests include biofuels, the value of genetic diversity to crop production systems and the water and nutrient implications of intensive livestock production. She is a member of Sigma Xi and a recipient of the Science Council of British Columbia's "Headed for Success" award.

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Nuclear energy production today and in the near future will still be dominated by light-water reactors and therefore there will be a continued need for uranium enrichment. There is currently a focused attention on gas centrifuge enrichment. Gas centrifuge technology is much cheaper and efficient, but also poses a greater security concern, than the former gas diffusion technology.

In order to address the increased security concerns, the International Atomic Energy Agency (IAEA) is planning and implementing strengthened safeguards procedures involving an increased reliance on continuous and remote monitoring technologies, and environmental sampling. The IAEA is also promoting multilateral enrichment centers as an additional avenue to enhance international security. Much of the current enrichment industry today already involves international partnerships such as between the US and European companies, or the tripartite agreement between Russia, China and the IAEA.

In order for safeguards and multilateral approaches to be viable and effective, they need to be accepted by industry, operators, states and the regulatory agencies. This talk will address how strengthened safeguards could be implemented while accommodating potentially conflicting interests such as: the protection of proprietary information, transparency in monitoring, applicability in multilateral arrangements, cost-effectiveness, and the ultimate goal of ensuring that enrichment activities remain peaceful.

Elena Rodriguez-Vieitez is a postdoctoral science fellow at CISAC, Stanford. Her research concerns proliferation risks associated with the global expansion of nuclear power. She received her PhD in nuclear engineering at the University of California, Berkeley. Her dissertation focused on nuclear physics experimental work conducted at cyclotron facilities at the Lawrence Berkeley National Lab and Michigan State University, where she analyzed nuclear structure and fragmentation reaction data of neutron-rich unstable nuclei. As a nuclear engineering graduate student, she collaborated on a Department of Energy research project on radioactive waste transmutation in molten-salt reactors, where she modeled actinide transmutation efficiency and evaluated proliferation and environmental risks. As a graduate student, Rodriguez-Vieitez was also a research associate on public policy and nuclear threats at the University of California Institute on Global Conflict and Cooperation. Prior to her PhD studies, she was an intern at the National Academy of Sciences' Board on Radioactive Waste Management in Washington, DC.

Reuben W. Hills Conference Room

Elena Rodriguez-Vieitez Speaker
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The National Plant Diagnostic Network (NPDN) was created to enhance the capabilities of existing diagnostic laboratories in the nation to detect and report introduced pathogens, pests and weeds of high consequence to plant agriculture and natural ecosystems.  An important goal of the network is to coordinate diagnostic and scientific expertise at land-grant universities, state departments of agriculture, agencies within the USDA (CSREES and APHIS), and other organizations involved in agricultural production and security.  The program, which is administered through the USDA, was established in 2002 through funding created by the Homeland Security Act in response to concerns that agricultural pests and pathogens could be used as agents of bio-terrorism.  Responsibilities of the NPDN include the compilation and establishment of diagnostic protocols for priority agents, the development of a web-based distributed plant pest diagnostic and reporting system for the nation, the provision of up-to-date information on plant pests for the nation, the development of analytical tools to exploit these data, and the recruitment and training of first detectors.  The national network is organized into 5 regions, with regional centers located at the University of California, Davis (Western Region), Kansas State University (Great Plains Region), Michigan State University (North Central Region), the University of Florida (Southern Region), and Cornell University (Northeastern Region).  A parallel network for veterinary medicine, the National Animal Health Laboratory Network, also has been established with regional centers located at the same institutions as the NPDN regional centers.  The mission and design of the NPDN, its programs, and progress towards meeting network objectives, will be presented and discussed.

Richard Bostock is a professor and former chair (1999-2005) of the Department of Plant Pathology at the University of California, Davis.  In 2002, he was appointed as the founding Director of the Western Region of the National Plant Diagnostic Network (NPDN).  The NPDN is a distributed system comprised of public institutions for the purpose of quickly detecting and identifying high consequence pests and pathogens.  The network links plant health professionals, researchers and diagnostic labs throughout the region, providing a way for them to share information about occurrences of plant diseases and pests that could have an impact on the region's most economically important crops.   This information also is reported to first responders and decision makers. Funding for the network is provided through the United States Department of Agriculture. Dr. Bostock received his Ph.D. in Plant Pathology at the University of Kentucky in 1981, and was appointed to the faculty at UC Davis that year.  His research and teaching interests are the biochemistry and molecular biology of plant-microbe interactions and general plant pathology.  He teaches several courses in the department and in the Science and Society program on various aspects of plant pathology, plant-microbe interactions, and issues related to food production. 

Reuben W. Hills Conference Room

Richard Bostock Professor of Plant Pathology and Director, Western Plant Diagnostic Network Speaker University of California, Davis
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As we find ourselves at the start of the "biological century" with a wealth of potential benefits to public health, agriculture, and global economies, it is almost deliberately naive to think that the extraordinary growth in the life sciences might not be exploited for nefarious purposes. A report published in 2006 by an ad hoc committee of the National Academies of Science recognized that the breadth of biological threats is much broader than commonly appreciated and will continue to expand for the foreseeable future. The nature of these threats, and a set of potential approaches with which to mitigate these threats, will be reviewed.

David Relman, MD, is professor of medicine, and of microbiology and immunology at Stanford University. He is also chief, infectious diseases section, at the VA Palo Alto Health Care System in Palo Alto, California. His research is directed towards the characterization of the human indigenous microbial communities, with emphasis on understanding variation in diversity, succession, the effects of disturbance, and the role of these communities in health and disease.  This work brings together approaches from ecology, population biology, environmental microbiology, genomics and clinical medicine.  In addition, his research explores the classification structure of humans and non-human primates with systemic infectious diseases, based on patterns of genome-wide gene transcript abundance in blood and other tissues. The goals of this work are to recognize classes of pathogen and predict clinical outcome at early time points in the disease process, as well as to gain further insights into virulence. Past scientific achievements include the description of a novel approach for identifying previously-unknown pathogens, the identification of a number of new human microbial pathogens, including the agent of Whipple's disease, and some of the most extensive analyses to date of the human indigenous microbial ecosystem. See http://relman.stanford.edu

Among his other activities, Dr. Relman currently serves as Chair of the Board of Scientific Counselors of the National Institute of Dental and Craniofacial Research (NIH), Chair of the Institute of Medicine's Forum on Microbial Threats (U.S. National Academies of Science), member of the National Science Advisory Board for Biosecurity, and advises several U.S. Government departments and agencies on matters related to pathogen diversity, the future life sciences landscape, and the nature of present and future biological threats.  He co-chaired a three-year study at the National Academy of Sciences that produced a report entitled, "Globalization, Biosecurity, and the Future of the Life Sciences" (2006). He is a member of the American Academy of Microbiology. Dr. Relman received the Squibb Award of the IDSA in 2001, and was the recipient of both the NIH Director's Pioneer Award, and the Distinguished Clinical Scientist Award from the Doris Duke Charitable Foundation, in 2006.

Reuben W. Hills Conference Room

David Relman Professor of Medicine and of Microbiology and Immunology Speaker Stanford University
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The world’s energy infrastructure stands on the brink of a major revolution. Much of the large power generation infrastructure in the industrialized world will need replacement over the next two to three decades while in the developing world, including China and India, it will be installed for the first time. Concurrently, the risks of climate change and unprecedented high prices for oil and natural gas are transforming the economic and ethical incentives for alternative energy sources leading to growth of nuclear and renewables, including solar, wind, biofuels and geothermal technologies. The transition from today’s energy systems, based on fossil fuels, to a future decarbonized or carbon-neutral infrastructure is a socio-technical problem of global dimensions, but one for which there is no accepted solution, either at the international, national, or regional levels.

This talk describes a novel methodology to understand global energy systems and their evolution. We are incorporating state-of-the-art open tools in information science and technology (Google, Google Earth, Wikis, Content Management Systems, etc.) to create a global real time observatory for energy infrastructure, generation, and consumption. The observatory will establish and update geographical and temporally referenced records and analyses of the historical, current, and evolving global energy systems, the energy end-use of individuals, and their associated environmental impacts. Changes over time in energy production, use, and infrastructure will be identified and correlated to drivers, such as demographics, economic policies, incentives, taxes, and costs of energy production by various technologies. As time permits Dr. Gupta will show, using Google Earth, existing data on power generation infrastructure in three countries (South Africa, India and the USA) and highlight examples of unanticipated crisis (South Africa), environment (USA) and exponential growth (India). Finally Dr. Gupta will comment on how/why trust and transparency created by democratization of information that such a system would provide could motivate cooperation, provide a framework for compliance and monitoring of global treaties, and precipitate action towards carbon-neutral systems.

Rajan Gupta is the leader of the Elementary Particles and Field Theory group at Los Alamos National Laboratory and a Laboratory fellow.  He came to the USA in 1975 after obtaining his Masters in Physics from Delhi University, India, and earned his PhD in Theoretical Physics from The California Institute of Technology in 1982. The main thrust of his research is to understand the fundamental theories of elementary particle interactions, in particular the interactions of quarks and gluons and the properties hadrons composed of them. In addition, he uses modeling and simulations to study Biological and Statistical Mechanics systems, and to push the envelope of High Performance Computing. Starting in 1998 his interests broadened into the areas of health, education, development and energy security. He is currently carrying out an integrated systems analysis of global energy systems. In 2000 Dr. Gupta started the forum “International Security in the new Millennium” at Los Alamos National Laboratory. Its goals are to understand global issues dealing with societal and security challenges.

Reuben W. Hills Conference Room

Rajan Gupta Group Leader, Elementary Particles and Field Theory Speaker Los Alamos National Laboratory
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Projects to enhance health security and child survival in Africa with improvements in water and sanitation, examine why poor business-management practices persist in India, study the relationship of legal courts to politics and human rights, and understand why the Middle East has lagged in economic progress were recent recipients of grants totaling just under $1 million from Stanford's Presidential Fund for Innovation in International Studies.

"These projects have great potential to advance academic knowledge, social capital and human development around the world, and to create a healthier, more promising future for hundreds of millions of people," President John Hennessy said. "When we launched The Stanford Challenge, we committed to marshal university resources to address the great challenges of the 21st century in human health, the environment and international affairs, and it is gratifying to see the response from our remarkable faculty."

The 2008 projects and their principal investigators follow:

Enhancing Health Security Through Infrastructure and Behavioral Intervention: Water, Sanitation and Child Survival in Africa. Alexandria Boehm and Jenna Davis, Civil and Environmental Engineering; Abby King, Health Research and Policy and Medicine; Gary Schoolnik, Medicine and Microbiology and Immunology. The project seeks to improve the health and well-being of the 1.2 billion people in low-income countries who lack access to clean water and the 2.6 billion who lack access to sanitation services, with a focus on mortality reduction in children. It will be carried out in sub-Saharan Africa, where the toll of water- and sanitation-related illness on health is severe, and will investigate the extent to which information and education about water and sanitation at the household level motivates behavior changes that result in reduced morbidity. Results will inform international efforts to design and implement effective water supply and sanitation interventions for more than 400 million Africans currently lacking access.

Why Are Indian Firms Poorly Managed? A Survey and Randomized Field Intervention. Nicholas Bloom and Aprajit Mahajan, Economics; Thomas C. Heller and Erik Jensen, Law School; John Roberts, Graduate School of Business. The biggest single reduction in poverty in the history of mankind was achieved by the industrialization of China since 1978, which lifted almost 500 million people out of poverty. India has not experienced this level of poverty reduction because its manufacturing firms have not achieved the productivity gains seen in China. Recent evidence suggests one key factor is the poor management practices adopted by Indian firms. This project examines why poor management practices persist in India and are much more common there. It focuses in particular on evaluating the relative importance of informational, legal and development barriers. The project will undertake a field survey of Indian firms to evaluate their knowledge of modern management techniques and a field intervention aimed at upgrading management practices in a randomized sample of Indian firms, comparing their progress to a control group of untouched firms.

Courts, Politics and Human Rights. Joshua Cohen, Philosophy, Political Science, and Law School; Terry L. Karl, Political Science; Jenny S. Martinez, Law School; Helen Stacy, Law School. This project examines the role of courts as the centerpiece of strategies for promoting human rights by asking if courts should be a preferred human rights venue or if there are other more accessible and effective ways to secure human rights. It addresses three broad themes: the interplay between national, regional and international courts in the protection of human rights; the role of governments and nongovernmental organizations in influencing legal proceedings; and how courts construct historical truth and shape public opinion, memory, attitudes and discourse about human-rights abuses. The multidisciplinary project will span countries, regions, issue areas and historical timeframes to ask what reasonably can be expected from international, regional and domestic courts in safeguarding human rights.

The Middle East and the World Economy. Matthew Harding, Economics; Lisa Blaydes, Political Science. This project examines why the Middle East has lagged in economic progress compared to much of the developing world and the implications of this underdevelopment for two overarching trends in Middle Eastern politics today: authoritarian government and Islamic fundamentalism. The researchers also will examine how political instability originating in the Middle East has affected world oil prices and world markets by constructing economic models of the world economy. The project seeks broadly to understand the macro- and microeconomic determinants of Islamic fundamentalism and authoritarian rule, and the extent to which these two outcomes have affected the stability and prosperity of the world economy. It measures global factors resulting from increased globalization and quantifies their impact on the development of economies in the Middle East.

The $3 million Presidential Fund for Innovation in International Studies was first established in 2005 by the Office of the President and the Stanford International Initiative to support new cross-campus, interdisciplinary research and teaching among Stanford's seven schools on three overarching global challenges: pursuing peace and security, reforming and improving governance at all levels of society, and advancing human well-being.

The first $1 million in interdisciplinary grants was awarded in February 2006; the second round of grants was awarded in February 2007.

"In all three rounds of funding, it has been heartening to see the imaginative and innovative ways that Stanford faculty are combining intellectual forces across disciplines to tackle some of the most pressing and persistent problems of our day," said Coit D. Blacker, chair of the International Initiative Executive Committee and director of Stanford's Freeman Spogli Institute for International Studies. "It is especially gratifying to see the younger faculty competing for these grants, eager to generate new knowledge and new solutions and help train a new generation of leaders."

Priority in funding has been given to teams of faculty who do not typically work together, who represent multiple disciplines and who address issues falling broadly within the three central research areas of the Stanford International Initiative. Projects are to be based on collaborative research and teaching involving faculty from two or more disciplines and, where possible, from two or more of the university's seven schools.

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This unit explores the long-term effects of radiation through the examination of issues surrounding the atomic bombs dropped on Japan in 1945; and the 1986 explosion at the Chernobyl power plant. We hope the unit provides teachers with the tools and background information necessary to more confidently discuss recent events in Japan with their students.
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