Energy

16 Items

Ethanol refinery with carbon capture equipment

AP Photo/Stephen Groves

Policy Brief

Carbon Capture, Utilization, and Storage: Technologies and Costs in the U.S. Context

| January 2022

Carbon capture, utilization, and storage (CCUS) is very likely to be a key technology for achieving the Biden administration's goal of net-zero greenhouse gas emissions by 2050. But absent regulation requiring its use, CCUS needs to become more economical in order for deployment in the United States to expand significantly.

In this Nov. 28, 2019 file photo, smoke and steam rise from a coal processing plant in Hejin in central China's Shanxi Province.

AP Photo/Sam McNeil

Policy Brief

China’s National Carbon Market: Paradox and Potential

| December 2020

China announced it would launch a national carbon market in 2017, yet this policy is taking years to come into effect. What will it take for a carbon market to work in command-and-control China? This policy brief explores an understudied challenge—emissions accounting—and identifies potential opportunities that have arisen in the first phase of China’s national carbon market.

Clouds over forest

Boris Misevic via Unsplash

Policy Brief

The Future of Carbon Offset Markets

| Oct. 22, 2020

Corporations, organizations, and even governments are purchasing offsets to reduce their carbon footprint. This policy brief provides an overview of the offset process – who buys them, who produces them, and who certifies them; describes the emerging challenges facing this market; and makes recommendations for the future.

Visitors look at a Intelligent Energy hydrogen fuel cell motorcycle at the 10th Auto Expo in New Delhi, India, Jan. 6, 2010.

AP Photo

Policy Brief - Energy Technology Innovation Policy Project, Belfer Center

Energy Innovation Policy in Major Emerging Countries

New Harvard Kennedy School research finds that energy research, development, and demonstration (ERD&D) funding by governments and 100 percent government-owned enterprises in six major emerging economies appears larger than government spending on ERD&D in most industrialized countries combined. That makes the six so-called BRIMCS countries—Brazil, Russia, India, Mexico, China, and South Africa—major players in the development of new energy technologies. It also suggests there could be opportunities for cooperation on energy technology development among countries.

Policy Brief - Consortium for Energy Policy Research

Acting in Time on Energy Policy

| May 20, 2009

This policy brief outlines urgent priorities for U.S. energy policy at the dawn of the Obama administration, and recommends specific steps that the U.S. government should take to address the numerous energy-related challenges facing the United States. It is based on the book, Acting in Time on Energy Policy (Brookings 2009), edited by Kelly Sims Gallagher, director of the Energy Technology Innovation Policy research group at the Harvard Kennedy School's Belfer Center.

We concentrate on six topics: climate change policy, carbon capture and storage policy, oil security policy, energy-technology innovation policy, electricity market structure, and infrastructure policy. The United States cannot afford to wait any longer to enact long-term policies on these topics. In fact, acting early is clearly in the longer-term interest of the United States.

teaser image

Policy Brief - Harvard Project on Climate Agreements, Belfer Center

Technology and International Climate Policy—Summary

    Authors:
  • Leon Clarke
  • Kate Calvin
  • James A. Edmonds
  • Page Kyle
  • Marshall Wise
| May 2009

Both the nature of international climate policy architectures and the development and diffusion of new energy technologies could dramatically influence future costs of reducing global emissions of greenhouse gases. This paper explores the implications of interactions between technology availability and performance and international policy architectures for technology choice and the social cost of limiting atmospheric CO2 concentrations to 500 ppm by the year 2095. Key issues explored in the paper include the role of bioenergy production with CO2 capture and storage (CCS), overshoot concentration pathways, and the sensitivity of mitigation costs to policy and technology.