Nuclear Issues

15 Items

Roland Timerbaev.

University of California Irvine/Quest for Peace via YouTube

Analysis & Opinions - Arms Control Today

Roland Timerbaev (1927–2019), At the Vanguard of Nuclear Nonproliferation

| September 2019

From the 1950s, after a brief stint at the fledgling United Nations, Timerbaev was directly supporting Soviet Foreign Minister Andrei Gromyko on nuclear weapons issues. (He remembered drafting the first Soviet proposal for a fissile material cutoff treaty in 1958.)  Preventing nuclear annihilation became his consuming, life-long passion. He retired from the Foreign Ministry just as the Soviet Union was collapsing, resigning as permanent representative to the international organizations in Vienna, including, of course, the International Atomic Energy Agency (IAEA).

Finnish President Sauli Niinisto speaks during a press conference regarding the upcoming Trump-Putin Summit, in his official residence, Helsinki, Finland on Thursday, June 28, 2018. (Roni Rekomaa/Lehtikuva via AP)

Roni Rekomaa/Lehtikuva via AP

Analysis & Opinions - Foreign Policy

The Trump-Putin Summit’s Potential Nuclear Fallout

| July 10, 2018

The July 16 summit in Helsinki between Presidents Donald Trump and Vladimir Putin presents a unique opportunity to reverse the dangerous nuclear competition between the United States and Russia and should be welcomed, despite its inherent risks. The opportunity to stabilize U.S.-Russian nuclear relations by extending New START, a key nuclear treaty that is set to expire in 2021, is paramount and worth the issues that come with any meeting between Trump and Putin.

Discussion Paper - Energy Technology Innovation Policy Project, Belfer Center

Energy Technology Expert Elicitations for Policy: Workshops, Modeling, and Meta-analysis

| October 2014

Characterizing the future performance of energy technologies can improve the development of energy policies that have net benefits under a broad set of future conditions. In particular, decisions about public investments in research, development, and demonstration (RD&D) that promote technological change can benefit from (1) an explicit consideration of the uncertainty inherent in the innovation process and (2) a systematic evaluation of the tradeoffs in investment allocations across different technologies. To shed light on these questions, over the past five years several groups in the United States and Europe have conducted expert elicitations and modeled the resulting societal benefits. In this paper, the authors discuss the lessons learned from the design and implementation of these initiatives.

Nuclear Fuel Rod Assembly

NEAMS/DOE Photo

Journal Article - Environmental Science and Technology

Expert Judgments about RD&D and the Future of Nuclear Energy

| 2012

Probabilistic estimates of the cost and performance of future nuclear energy systems under different scenarios of government research, development, and demonstration (RD&D) spending were obtained from 30 U.S. and 30 European nuclear technology experts. The majority expected that such RD&D would have only a modest effect on cost, but would improve performance in other areas, such as safety, waste management, and uranium resource utilization. The U.S. and E.U. experts were in relative agreement regarding how government RD&D funds should be allocated, placing particular focus on very high temperature reactors, sodium-cooled fast reactors, fuels and materials, and fuel cycle technologies.

Policy Brief - Energy Technology Innovation Policy Project, Belfer Center

Research, Development, and Demonstration for the Future of Nuclear Energy

| June 2011

Dramatic growth in nuclear energy would be required for nuclear power to provide a significant part of the carbon-free energy the world is likely to need in the 21st century, or a major part in meeting other energy challenges. This would require increased support from governments, utilities, and publics around the world. Achieving that support is likely to require improved economics and major progress toward resolving issues of nuclear safety, proliferation-resistance, and nuclear waste management. This is likely to require both research, development, and demonstration (RD&D) of improved technologies and new policy approaches.

Report

International Workshop on Research, Development, and Demonstration to Enhance the Role of Nuclear Energy in Meeting Climate and Energy Challenges

| April 2011

Dramatic growth in nuclear energy would be required for nuclear power to provide a significant part of the carbon-free energy the world is likely to need in the 21st century, or a major part in meeting other energy challenges. This would require increased support from governments, utilities, and publics around the world. Achieving that support is likely to require improved economics and major progress toward resolving issues of nuclear safety, proliferation-resistance, and nuclear waste management. This is likely to require both research, development, and demonstration (RD&D) of improved technologies and new policy approaches.

President Barack Obama shares the podium with MIT's Susan Hockfield and Paul Holland of Serious Materials during the President's remarks on investments in clean energy and new technology, March 23, 2009, in the Eisenhower Executive Office Building.

White House Photo

Journal Article - Wiley Interdisciplinary Reviews: Climate Change

Trends in Investments in Global Energy Research, Development, and Demonstration

| May/June 2011

Recent national trends in investments in global energy research, development, and demonstration (RD&D) are inconsistent around the world. Public RD&D investments in energy are the metric most commonly used in international comparative assessments of energy-technology innovation, and the metric employed in this article. Overall, the data indicate that International Energy Agency (IEA) member country government investments have been volatile: they peaked in the late 1970s, declined during the subsequent two decades, bottomed out in 1997, and then began to gradually grow again during the 2000s.

- Belfer Center for Science and International Affairs, Harvard Kennedy School Quarterly Journal: International Security

Belfer Center Newsletter Spring 2011

| Spring 2011

The Spring 2011 issue of the Belfer Center newsletter features recent and upcoming activities, research, and analysis by members of the Center community on critical global issues. This issue highlights the Belfer Center’s continuing efforts to build bridges between the United States and Russia to prevent nuclear catastrophe – an effort that began in the 1950s. This issue also features three new books by Center faculty that sharpen global debate on critical issues: God’s Century, by Monica Duffy Toft, The New Harvest by Calestous Juma, and The Future of Power, by Joseph S. Nye.

The world's first grid-scale, flywheel-based energy storage plant is being built in Stephentown, N.Y. The plant is being built by Beacon Power Corporation (NASDAQ: BCON) & is supported by a $43 million loan guarantee from DOE.

Beacon Power Corp. Photo

Report - Energy Technology Innovation Policy Project, Belfer Center

Transforming the Energy Economy: Options for Accelerating the Commercialization of Advanced Energy Technologies

"The focus of the workshop was on the demonstration stage of the technology innovation cycle. Current policies do not adequately address the private sector’s inability to overcome the demonstration "valley of death" for new energy technologies. Investors and financiers fear that the technology and operational risks at this stage of the cycle remain too high to justify the level of investment to build a commercial-sized facility."

Conceptual drawing of a single B&W mPower™ nuclear reactor module inside its own independent, underground containment.

Babcock & Wilcox Photo

Report - Energy Technology Innovation Policy Project, Belfer Center

Tranforming the Energy Economy: Options for Accelerating the Commercialization of Advanced Energy Technologies—Framing Statement

"There is broad political consensus that the current energy system in the United States is unable to meet the nation's future energy needs, from the security, environment, and economic perspectives. New energy technologies are required to increase the availability of domestic energy supplies, to reduce the negative environmental impacts of our energy system, to improve the reliability of current energy infrastructure (e.g., smart grid, energy storage), and to increase energy efficiency throughout the economy."