Nuclear Issues

488 Items

President Joe Biden meets virtually with Chinese President Xi Jinping from the Roosevelt Room of the White House in Washington, Monday, Nov. 15, 2021.

AP Photo/Susan Walsh

- Belfer Center for Science and International Affairs, Harvard Kennedy School

The U.S.-China Future: Competition and Collaboration With a Rising China

| Fall 2021

Whether they regard it as competitive, cooperative, or confrontational, virtually all observers agree that the U.S.-China relationship is consequential. From cyber norms and AI to military tensions in the Taiwan Strait and the global struggle to turn the tide on climate change, how Washington and Beijing manage their shared future will shape the globe for decades to come. Through research and relationship-building, the Center is dedicated to helping the U.S. and China collaborate and compete without conflict.

Taishan Nuclear Power Plant in Guangdong, China, in 2019.

EDF Energy via Wikimedia Commons

Book Chapter - Cambridge University Press

Enabling a Significant Nuclear Role in China’s Decarbonization

| Dec. 02, 2021

While China is building nuclear reactors faster than any other country in the world, major constraints may limit nuclear energy’s ability to grow to the scale of hundreds of gigawatts that would be required for it to play a major part in decarbonizing China’s energy system. This chapter explores the major constraints on, and risks of, large-scale nuclear energy growth in China, and how both new policies and new technologies might address them. It focuses particularly on the two biggest constraints – economics and siting. Substantial government policies to support nuclear power and advanced reactor systems designed to address some of the key constraints are both likely to be needed for nuclear to have a chance of playing a major role in decarbonizing China’s energy system; nuclear energy’s role may be bigger in the second half of this century than in the first half.

The main hall for the IAEA’s Talks on Supplying Nuclear Fuel for Iranian Research Reactor, Vienna, Austria, 19 October 2009. 

Dean Calma/IAEA

Paper

The Deal That Got Away: The 2009 Nuclear Fuel Swap with Iran

| January 2021

With concerns and uncertainties regarding Iran’s nuclear future persisting to this day, this paper seeks to review the TRR negotiations and the context in which they unfolded in order to capture some of the lessons of negotiating with Iran regarding its nuclear program, primarily from the viewpoint of senior U.S. officials involved at the time. The paper is also informed by the personal perspective of one of the authors (Poneman) who led the U.S. delegation in the 2009 Vienna talks, and who, prior to this publication, had not publicly elaborated on his experience. The other author (Nowrouzzadeh), who supported the TRR talks in an analytical capacity within the U.S. Department of Defense, also conducted an extensive interview with Poneman as part of their collaboration on this paper. By drawing on existing literature and recent interviews with several senior U.S. officials involved in the negotiations now that over ten years have passed, the authors seek to draw useful lessons from this episode that can assist policymakers in understanding Iran’s nuclear decision-making and in their continued efforts to shape the future trajectory of Iran’s nuclear program.

In this file photo taken April 3, 2008, the control panel for Hanford nuclear reservation's famous B Reactor is shown in Richland, Wash. The B Reactor, the world's first full-sized reactor, will be part of the Manhattan Project National Historical Park, the nation's newest national park. (AP Photo/Ted S. Warren, File)

AP Photo/Ted S. Warren

Journal Article - Quarterly Journal: International Security

Death Dust: The Little-Known Story of U.S. and Soviet Pursuit of Radiological Weapons

    Authors:
  • Samuel Meyer
  • Sarah Bidgood
  • William C. Potter
| Fall 2020

A comparative analysis of the United States’ and the Soviet Union’s previously underexplored radiological weapons programs identifies the drivers behind their rise and demise. The findings of this analysis illuminate the factors likely to affect the pursuit of radiological weapons by other states in the future.

A member of the Czech Army takes part in an anti-terrorism drill at the Temelin nuclear power plant near the town of Tyn nad Vltavou, Czech Republic, April 11, 2017.

REUTERS/David W. Cerny

Report - Belfer Center for Science and International Affairs, Harvard Kennedy School

Revitalizing Nuclear Security in an Era of Uncertainty

| January 2019

Nuclear security around the world has improved dramatically over the last three decades—which demonstrates that with focused leadership, major progress is possible. But important weaknesses remain, and the evolution of the threat remains unpredictable. The danger that terrorists could get and use a nuclear bomb, or sabotage a major nuclear facility, or spread dangerous radioactive material in a “dirty bomb,” remains too high. The United States and countries around the world need to join together and provide the leadership and resources needed to put global nuclear security on a sustained path of continuous improvement, in the never-ending search for excellence in performance.

How Saudi Arabia and China Could Partner on Solar Energy

AP/Andy Wong

Analysis & Opinions - Axios

How Saudi Arabia and China Could Partner on Solar Energy

| Jan. 24, 2019

Last May, Chinese solar panel manufacturer LONGi signed an agreement with Saudi trading company El Seif Group to establish large-scale solar manufacturing infrastructure in Saudi Arabia. The deal came several months after the Trump administration's imposition of global tariffs on imports of Chinese solar panels and cells.

The Chinese flag displayed at the Russian booth of import fair.

(AP Photo/Ng Han Guan)

Analysis & Opinions - The National Interest

China and Russia: A Strategic Alliance in the Making

| Dec. 14, 2018

THE YEAR before he died in 2017, one of America’s leading twentieth-century strategic thinkers, Zbigniew Brzezinski, sounded an alarm. In analyzing threats to American security, “the most dangerous scenario,” he warned, would be “a grand coalition of China and Russia…united not by ideology but by complementary grievances.” This coalition “would be reminiscent in scale and scope of the challenge once posed by the Sino-Soviet bloc, though this time China would likely be the leader and Russia the follower.”

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Analysis & Opinions - The Nautilus Institute

China's Nuclear Spent Fuel Management and Nuclear Security Issues

| Nov. 10, 2017

In this essay, Hui Zhang reviews the status of spent fuel storage in China.  He suggest that China should take steps to improve physical protection, reduce insider threats, promote a nuclear security culture, and improve nuclear cyber security. He also recommends China, South Korea, and Japans’ nuclear security training centers should cooperate and exchange best practices on insider threat reduction, contingency plans for emergency response, and discuss regional cooperation for long-term spent fuel storage, including building a regional center of spent fuel storage.

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Paper

The History of Highly Enriched Uranium Production in China

| July 2017

China initiated its nuclear weapon program in 1955 and began to construct its fissile-material production facilities in the late 1950s. China has produced highly enriched uranium (HEU) for weapons at two complexes: Lanzhou gaseous diffusion plant (GDP, also referred as Plant 504) and Heping GDP (the Jinkouhe facility of Plant 814).

In 1958, China started the construction of the Lanzhou plant with advice from Soviet experts. Moscow withdrew all its experts in August 1960, however, forcing China to become self-reliant. On January 14, 1964, the GDP began to produce 90% enriched uranium, which made possible China’s first nuclear test on 16 October 1964.