Asia & the Pacific

7 Items

U.S. Energy Secretary Rick Perry is silhouetted near the words "Clean Energy"

AP/Ng Han Guan

Analysis & Opinions - Berkeley Blog

How to Globalize Clean Energy

| June 20, 2020

The authors argue that more determined efforts to globalize renewable energy transmission can confer significantly higher economic and environmental benefits from renewables on billions of people. This can be done by exploiting spatial differences between electricity loads and net renewable generation across time zones (temporal arbitrage) and latitude (seasonal arbitrage). Using very long distance, ultra-high voltage (UHV) transmission infrastructure, temporal and spatial arbitrage can move low-cost clean electricity from areas with excess capacity to high demand zones in other countries and even continents.

Drax Power Station in the Vale of York, where the Government devised plans for the future of coal-fired power stations and the technology which could be used to massively cut their emissions.

AP Photo/John Giles

Discussion Paper

"Post-Durban Climate Policy Architecture Based on Linkage of Cap-and-Trade Systems"

| July 2012

The outcome of the December 2011 United Nations climate negotiations in Durban, South Africa, provides an important new opportunity to move toward an international climate policy architecture that is capable of delivering broad international participation and significant global CO2 emissions reductions at reasonable cost. This paper addresses an important component of potential climate policy architecture for the post-Durban era: links among independent tradable permit systems for greenhouse gases.

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.

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.

Windmills generating electricity for South Africa's electric company Eskom seen near Brackenfell on the outskirts of Cape Town, South Africa,  Jan 29, 2008.

AP Photo

Discussion Paper - Energy Technology Innovation Policy Project, Belfer Center

Governmental Energy Innovation Investments, Policies and Institutions in the Major Emerging Economies: Brazil, Russia, India, Mexico, China, and South Africa

Over the past decade, countries with emerging economies like Brazil, Russia, India, Mexico, China, and South Africa have become important global players in political and economic domains. In 2007, these six countries consumed and produced more than a third of the world's energy and emitted about 35 percent of total greenhouse-gas (GHG) emissions. The changing global energy landscape has important implications for energy technology innovation (ETI) nationally and internationally. However, there is limited information available about the investments and initiatives that are taking place by the national governments within these countries. This paper presents the information available on energy RD&D investments in the emerging economies.