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Research Affiliate
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David Hults is a Research Affiliate at Stanford University's Program on Energy and Sustainable Development (PESD).  His areas of academic interest include the role of energy in the developing world, climate change, and Latin American law.  From 2008 to 2009, David served as a Postdoctoral Fellow at PESD.  David received a J.D. with distinction from Stanford Law School in 2008, where he was Senior Editor for the Stanford Law Review and Senior Articles Editor for the Stanford Journal of International Law.  Before coming to Stanford, David worked on Latin American economic issues at the U.S. Department of State for more than three years.  David previously earned a B.A. in International Studies from the University of Florida and an M.A. in International Relations from Yale University. 

The Stanford Program on Energy and Sustainable Development (PESD) is concluding a major study aimed at understanding the future role for natural gas in the rapidly growing economies of China and India. On June 4-5, 2007 PESD will convene a meeting at Stanford to present the results of the study and engage with participants from industry and academia on the implications of this work for global energy markets.

PESD has partnered with leading regional research centers in both China and India to construct detailed assessments of the key drivers for future gas demand in both countries. At the June meeting PESD and its research collaborators will share results from the natural gas study and explore the study's broader implications on China and India's role in the future world energy market. Meeting participants will include representatives from government, industry, academia, and non-government organizations from the United States, China, India, Europe, and others.

Panels at the meeting with focus primarily on the implications of the study on larger questions of energy and global geopolitics, including:

§ Competitiveness of natural gas vis a vis coal in the power sector

§ Geopolitical implications of major supply projects

§ Regulatory reform and pricing

§ Implications for CO2 and climate change

Bechtel Conference Center

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In Boston Review's January/February 2007 issue, PESD Director David G. Victor and PESD researcher Danny Cullenward discuss why pursuing technologies that burn coal more cleanly is the "only practical approach" to stopping global warming. Their proposal is part of a larger forum on climate change led by MIT meteorology professor Kerry Emanuel.

Almost every facet of modern life - from driving to the grocery store to turning on a light - relies on inexpensive and abundant fossil fuels. When burned for power, these fuels yield emissions of carbon dioxide that accumulate in the atmosphere. They are the leading cause of global warming.

Assuring ample energy services for a growing world economy while protecting the climate will not be simple. The most critical task will be curtailing emissions from coal; it is the most abundant fossil fuel and stands above the others in its carbon effluent. Strong lobbies protect coal in every country where it is used in abundance, and they will block any strategy for protecting the climate that threatens the industry. The only practical approach is to pursue technologies that burn coal much more cleanly.

Such new technologies exist on the drawing board, but governments and regulators are failing to bring designs into practice with deliberate speed. Instead, most of the policy effort to tackle global warming has focused on creating global institutions, such as the Kyoto Protocol, to entice change. Although noble, these global efforts usually fall hostage to the interests of critical countries. After negotiating the Kyoto treaty, for example, the United States refused to sign when it found that it could not easily comply with the provisions. Australia did the same, and Canada is also poised to withdraw. Nor have treaties like Kyoto crafted a viable framework for engaging developing countries; these countries' share of world emissions is rising quickly, yet they are wary of policies that might crimp economic growth.

Breaking the deadlocks that have appeared in the Kyoto process requires, first and foremost, a serious plan by the United States to control its emissions. The United States has a strong historical responsibility for the greenhouse-gas pollution that has accumulated in the atmosphere, but little has been done at the federal level. (A few states are implementing some policies, and they, along with rising political pressure, might help to catalyze a more aggressive federal approach.) It will be difficult, however, for the United States (and other industrial countries) to sustain much effort in cutting emissions unless its economic competitors in China and the other developing countries make some effort as well. Without a strong policy framework to contain emissions throughout the world, levels of greenhouse-gas pollution will reflect only the vagaries in world energy markets. We need a proper strategy for moving away from harmful emissions.

A few years ago, many analysts thought that market forces were already shifting away from coal. They predicted the growth of natural gas, a fuel prized for its cleanliness and flexibility. That vision was good news for the climate because electricity made from natural gas leads to half of the carbon-dioxide emissions of electricity from coal. But natural-gas prices, which tend to track oil prices, have skyrocketed over the past few years, and, unsurprisingly, the vision for the growth of natural has dimmed. Natural-gas plants, which accounted for more than 90 percent of new plants built in the 1990s, are harder to justify in the boardroom. Most analysts now see a surge in the use of coal. One hundred new coal-fired plants are in the planning stages in the United States. Absent an unlikely plunge in gas prices, coal is here to stay.

Despite the challenges of handling coal responsibly, the potential of research and deployment of advanced technologies to help the United States and the major developing countries find common interest on the climate problem is great. In advanced industrialized countries, the vast majority of coal is burned for electricity in large plants managed by professionals - exactly the setting where such technology is usually best applied. In the United States, for example, coal accounts for more than four fifths of all greenhouse-gas emissions from the electricity sector.

Most of the innovative effort in coal is focused on making plants more efficient. Raising the temperature and pressure of steam to a "supercritical" point can yield improvements in efficiency that, all told, can reduce emissions about 20 to 25 percent. Boosting temperature and pressure still again, to "ultra-supercritical" levels, can deliver another slug of efficiency and lower emissions still further. Encouraging investments in this technology is not difficult: most countries and firms are already searching for gains in efficiency that can cut the cost of fuel; a sizeable fraction of new Chinese plants are supercritical; India is a few steps behind, in part because coal is generally cheaper in that country, but even there the first supercritical unit is expected soon. Across the advanced industrialized world, supercritical is the norm, at least for new plants. A few companies are taking further steps, investing in ultra-supercritical units. Two such plants are going up outside Shanghai, using mainly German technology, evidence that the concept of "technology transfer" is becoming meaningless in the parts of the world economy that are tightly integrated. Markets are spreading the best technologies worldwide where their application makes economic sense. In other countries, technologies to gasify coal - which also promise high efficiency - are also being tested.

But power-plant efficiency alone won't account for the necessary deep cuts in emissions. Already the growth in demand for electricity is outstripping the improvements in power plants such that the need for more plants and fuel is rising ever higher, as are emissions. This is spectacularly true in fast-growing China.

A radical redesign of coal plants will be needed if governments want to limit emissions of carbon dioxide. Here, the future is wide open. One track envisions gasifying the coal and collecting the concentrated wastes. Another would use more familiar technologies and separate carbon dioxide from other gases. All approaches require injecting the pollution underground where it is safe from the atmosphere. This is already done at scale in oil and gas production, where injection is used to pressurize fields and boost output. The consequences of injecting the massive quantities of pollution from power plants, however, are another matter. Regulatory systems are not in place or tested, and public acceptance is unknown.

While these technologies can work, they won't be used widely before they progress on two fronts. First, they must become commercially viable. Despite the huge potential of adopting them, it is striking how little money is being spent on advanced coal technologies. The U.S. government has created some financial incentives to build advanced coal plants, but much of that investment is slated for plants that are not actually designed to sequester CO2. In fact, the uncertainty of American policy gives investors in power plants an incentive to build conventional high-carbon technology, because it is more familiar to regulators and bankers. Worse yet, increased emissions today might actually improve a negotiating position in the future when targets for controlling emissions are ratcheted down from whatever is business as usual. Some private firms, such as BP and Xcel, are putting their own money into carbon-free power - but the totality of the private effort is small compared with the size of the problem. There are good mechanisms in place for encouraging public research and private investment in such technologies; the real shortcoming is in the paucity of the effort.

The second problem is that countries such as China, India, and other key developing nations won't spend the extra money to install carbon-free coal. Yet these countries' share of global coal consumption has soared almost 35 percent over the past ten years.

The inescapable conclusion is that the advanced industrialized countries must create a much larger program to test and apply advanced coal technologies. Electricity from plants with sequestration might eventually cost half more than from plants without the technology. That's not free, but it is affordable and is less than the changes in electric rates that many Americans already experience and accept.

State and federal regulators need to create direct incentives - such as a pool of subsidies - to pay the extra cost until the technology is proven and competitive with conventional alternatives. That subsidy, along with strict limits on emissions, will set a path for cutting the carbon from U.S. electricity without eliminating a future for coal. They must also extend the same incentives to the major developing countries, which have no interest in paying higher rates for electricity because their priorities do not rest on controlling CO2. Yet these countries' involvement now is essential. Averting emissions has a global benefit regardless of where the emissions are controlled. And developing countries are especially unlikely to shoulder more of the burden themselves, in the more distant future, unless they are first familiar with the technologies.

Solving the climate problem will be one of the hardest problems for societies to address - it entails complicated and uncertain choices with real costs today, and benefits in the distant future. Yet the stakes are high and the consequences of indecision severe. Serious action must contend with existing political constituencies and aim at existing resources that are most abundant. The technologies needed to make coal viable will not appear automatically. An active policy effort - pursued worldwide and initially financed by the industrialized world - is essential.

Originally published in the January/February 2007 issue of Boston Review.

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As part of PESD's ongoing research on power sector reform, the program has focused on the special role of independent power projects (IPPs). Many countries institute reform with the goal of attracting private (usually foreign) investors in new generating capacity. IPPs, rather than across-the-board reform, are usually the mechanism employed; yet the IPP market has been highly volatile in the last decade and has evaporated in most countries in recent years.

Private investment in electricity generation in developing countries grew dramatically during the 1990s, only to decline equally dramatically in the wake of the Asian financial crisis and other troubles in the late 1990s. The Program on Energy and Sustainable Development at Stanford University has undertaken a detailed review of the IPP experience in developing countries. The study has sought to identify the principal factors that explain the wide variation in outcomes for IPP investors and hosts. It also aims to identify lessons for the next wave in private investment in electricity generation.

This article presents the conclusions and analysis of the study of the experience of investment in greenfield IPPs in developing countries. The term "independent power producer" has been used to refer to several types of enterprises, but for this paper, "IPP" refers to a privately developed power plant that sells electricity to a public electricity grid, often under long term contract with a state utility. For this study and report, the lead actors in every IPP are private investors usually foreign, but often with local partners. The classic foreign-sponsored, project-financed IPP has taken root in more than fifty emerging countries that display wide variation in economic, political and social environments. The wide variation in settings for IPPs affords a special opportunity for researchers to probe systematically the critical factors that contribute to outcomes for host countries and for investors.

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N.Y.U. Journal of International Law and Politics
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Erik Woodhouse
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Erik Woodhouse
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Erik Woodhouse publishes the final report from PESD's multi-year study on privately owned power plants in emerging markets. The study, appearing in the next issue of the New York University Journal of International Law & Politics, explains the wide variation in experiences as foreign investors have built and operated overseas power plants. The study explains why key contracts for these types of projects often fail and how to make private infrastructure investment more sustainable. More detailed findings from the study, including individual case studies in thirteen countries, are found at Experience with Independent Power Projects in Developing Countries.

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National Security Consequences of U.S. Oil Dependency, a report by the Council on Foreign Relations Independent Task Force on Energy, concludes that the “lack of sustained attention to energy issues is undercutting U.S. foreign policy and U.S. national security.” The report goes on to examine how America’s dependence on imported oil—which currently comprises 60 percent of consumption— increasingly puts it into competition with other energy importers, notably the rapidly growing economies of China and India.

The task force was chaired jointly by James R. Schlesinger, a former secretary of defense and secretary of energy, and John Deutch, former director of Central Intelligence and undersecretary of energy, and drew from industry, academia, government, and NGOs. PESD Director David Victor directed the task force and FSI senior fellow by courtesy James Sweeney, director of Stanford’s new Precourt Institute for Energy Efficiency, served as a member.

The task force unanimously concluded that incentives are needed to slow and eventually reverse the growth in petroleum consumption, particularly in the transportation sector, but was unable to agree on which specific incentives—such as gasoline tax-funded energy technology R&D, more stringent and broadly applied Corporate Average Fuel Efficiency (CAFE) standards, and a cap-and-trade permit system for gasoline—would most effectively achieve this result.

The task force report included additional recommendations regarding the supply and consumption of energy including the following:

  • Encourage oil supply from all sources
  • Promote better management and governance of oil revenues
  • Remove the protectionist tariff on imported ethanol
  • Increase the efficiency of oil and gas consumption in the United States and elsewhere
  • Switch from oil-derived products to alternatives such as biofuels
  • Make the oil and gas infrastructure more efficient and secure
  • Increase investment in energy technology R&D
  • Promote the proper functioning and efficiency of energy markets
  • Revitalize international institutions such as the International Energy Agency (IEA)

The report stressed that the U.S. government must reorganize to integrate energy issues with foreign policy to address the threats to national security created by energy dependence. The task force offered a number of recommendations to better promote energy issues in foreign policy deliberations as follows:

  • Establish an energy security directorate at the National Security Council to lead an interagency process to influence the discussion and thinking of the NSC principals
  • Fully inform and engage the secretary of energy on all foreign policy matters with an important energy aspect
  • Include energy security issues in the terms of reference of all planning studies at the NSC, Defense, State, and the intelligence community

The task force restricted its inquiry to the challenges of managing U.S. and global dependence on imported oil and gas and did not address other important energy security issues such as nuclear proliferation and global warming.

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Council on Foreign Relations
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David G. Victor
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0876093659
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PESD director David G. Victor testifies to the Senate Committee on Energy and Natural Resources that the U.S.-India nuclear deal currently being debated by Congress could have a large impact on greenhouse gas emissions and be a major step towards engaging developing countries in the fight against climate change.

David Victor shows that by displacing coal-fired electricity generation, the U.S.-India nuclear deal could realize carbon dioxide emission reductions that rival the European Union's efforts under the Kyoto Protocol and far exceed previous efforts to engage developing countries in combating climate change.

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The debate over the India nuclear deal has been too one-dimensional. Nearly all commentary has focused on whether this proposal would undermine efforts to contain the proliferation of nuclear weapons. Dissent along these lines has been based on a series of largely overblown claims. And the singular focus on proliferation has allowed the debate to lose sight of other ways that this deal is in the interests of the United States and India alike.

Chief among those other reasons is environmental. The fuller use of commercial nuclear power, if done to exacting standards of safety and protection against proliferation, can play an important role as part of a larger strategy to slow the growth in emissions of the gases that cause global warming. That's because nuclear power emits essentially no carbon dioxide (CO2), the most prevalent of these so-called "greenhouse gases." While this benefit is hardly the chief reason for initiating this deal, with time it will become one of the main benefits from the arrangement. The nuclear deal probably will lead India to emit substantially less CO2 than it would if the country were not able to build such a large commercial nuclear fleet. The annual reductions by the year 2020 alone will be on the scale of all of the European Union's efforts to meet its Kyoto Protocol commitments. In addition, if this arrangement is successful it will offer a model framework for a more effective way to engage developing countries in the global effort to manage the problem of climate change. No arrangement to manage climate change can be adequately successful without these countries' participation; to date the existing schemes for encouraging these countries to make an effort have failed; a better approach is urgently needed.

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PESD
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David G. Victor
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Michael Wara shows while inducing significant participation by developing countries, the Clean Development Mechanism has failed to realize its full environmental potential. Reductions are much smaller than claimed, politicization is prominent, and the scheme has done little to encourage the profound changes in energy technology needed to address climate change.

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Global warming is one of the most difficult and important challenges facing the international community. To date, the most substantial effort to address this problem is the Kyoto Protocol. Although not adopted by the United States or Australia, this international agreement was adopted and ratified by every other large developed country and entered into force on February 16th, 2005. The Protocol is likely the largest ever international effort to combat a global environmental commons problem.

The Clean Development Mechanism ("CDM") is a market based trading mechanism

created by the Kyoto Protocol that functions by delivering a subsidy to the developing world in return for lower emissions of greenhouse gases. The subsidy offsets the cost of reducing GHG emissions, thereby encouraging less developed countries to emit less GHG than they otherwise would. As such, it represents the first attempt to address a global atmospheric commons problem using a global market. During the past 18 months, the CDM took on roughly the shape that it will likely have during the first commitment period of the Kyoto Protocol.

The goal of this paper will be to describe in some detail what that broad outline looks like and also what it can teach us about the design of future treaty architectures aimed at the control of GHG emissions and global warming.

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Program on Energy and Sustainable Development Working Paper #56
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