INTEGRATED ANALYSIS FOR ACID RAIN IN ASIA: Policy Implications and Results of RAINS-ASIA Model

Author:

Shah Jitendra12345,Nagpal Tanvi12345,Johnson Todd12345,Amann Markus12345,Carmichael Gregory12345,Foell Wesley12345,Green Collin12345,Hettelingh Jean-Paul12345,Hordijk Leen12345,Li Jia12345,Peng Chao12345,Pu Yifen12345,Ramankutty Ramesh12345,Streets David12345

Affiliation:

1. The World Bank, Washington, DC 20433;

2. International Institute for Applied Systems Analysis (IIASA), Laxenburg, Austria;

3. Department of Chemical & Biochemical Engineering, University of Iowa, Iowa City, Iowa 52240;

4. Resource Management Associates of Madison, Madison, Wisconsin 53703;

5. National Renewable Energy Laboratory, Washington, DC 20024;

Abstract

▪ Abstract  Fossil fuels account for about 80% of energy consumption in Asia. Because of its abundance and easy recoverability, especially in India and China, coal will remain the fuel of choice in the foreseeable future. If current trends continue, sulfur dioxide emissions from Asia may soon equal the emissions from North America and Europe combined. These trends portend a variety of local, regional, and global environmental impacts. Acid rain damages human health, ecosystems, and built surfaces. Many ecosystems will be unable to absorb these increased acidic depositions, leading to irreversible ecosystem damage with far-reaching implications for health, forestry, agriculture, fisheries, and tourism. RAINS-ASIA is a scenario-generating tool used to estimate the extent of damages caused by acid rain and to review the costs and impacts of alternatives to provide a look into the future. Its use extends from national-, regional-, and city-scale evaluation and inputs for cost-effective options analyses, to international negotiations on transboundary pollution.

Publisher

Annual Reviews

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Environmental Engineering

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