Energy

321 Items

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

Testimony on China’s Cyber, Energy Plans

| Spring 2022

In February and March, Belfer Center Student Fellow Winnona DeSombre and Environment and Natural Resources Program Director Henry Lee testified before the U.S.-China Economic and Security Review Commission in Washington, D.C. During separate hearings on China’s capabilities and plans related to cyber and to energy, DeSombre and Lee recommended actions Congress should take for the U.S. to remain competitive with China.

Tree Trunks

Harvard File Photo/Rose Lincoln

Newspaper Article - Harvard Gazette

New Committee to Advise Bacow on Sustainability Goals

    Author:
  • Nate Herpich
| Apr. 20, 2020

Harvard University has created a Presidential Committee on Sustainability (PCS) to advise President Larry Bacow and the University's leadership on sustainability vision, goals, strategy, and partnerships. The Harvard Gazette spoke with committee chairs Rebecca Henderson, the John and Natty McArthur University Professor; John Holdren, the Teresa and John Heinz Professor of Environmental Policy at Harvard Kennedy School; and Katie Lapp, executive vice president, about why it is so important to act now; the role of the PCS in developing collaborative and innovative projects; and how the campus community can get involved.

The Minister of State (I/C) for Power and New and Renewable Energy, Shri Raj Kumar Singh

Ministry of New and Renewable Energy (GODL-India)

Journal Article - World Development

Urban Waste to Energy Recovery Assessment Simulations for Developing Countries

In this paper, a quantitative Waste to Energy Recovery Assessment (WERA) framework is used to stochastically analyze the feasibility of waste-to-energy systems in selected cities in Asia.

A photo of electrolysis in action. (Flickr: ca_heckler)

Flickr: ca_heckler / CC by-nc-nd 2.0

Report

Geopolitical and Market Implications of Renewable Hydrogen: New Dependencies in a Low-Carbon Energy World

| March 2020

To accelerate the global transition to a low-carbon economy, all energy systems and sectors must be actively decarbonized. While hydrogen has been a staple in the energy and chemical industries for decades, renewable hydrogen is drawing increased attention today as a versatile and sustainable energy carrier with the potential to play an important piece in the carbon-free energy puzzle. Countries around the world are piloting new projects and policies, yet adopting hydrogen at scale will require innovating along the value chains; scaling technologies while significantly reducing costs; deploying enabling infrastructure; and defining appropriate national and international policies and market structures.

What are the general principles of how renewable hydrogen may reshape the structure of global energy markets? What are the likely geopolitical consequences such changes would cause? A deeper understanding of these nascent dynamics will allow policy makers and corporate investors to better navigate the challenges and maximize the opportunities that decarbonization will bring, without falling into the inefficient behaviors of the past.

Discussion Paper - Harvard Project on Climate Agreements

Creating Subnational Climate Institutions in China

| December 2019

This discussion paper (available in English and Chinese) describes the evolution of decentralization over the reform period that began in China in 1978, different theories of institutional change in China, and how the empirical and theoretical literatures help scholars and policymakers understand the development of institutions for governing GHG-emitting activities.

Antwerp, Belgium Industrial Plant

AP Photo/Virginia Mayo

Analysis & Opinions

The Sunset of an Industrial Plant and the Global Decommissioning Challenge

| Sep. 24, 2019

After many years of productive service, industrial plants reach the end of their useful life and must be dismantled. This complex and costly process, know as decommissioning (commissioning refers to the beginning of a plant useful life), is a confluence of economic, environmental, physical, and regulatory challenges.