Computational screening of porous metal-organic frameworks and zeolites for the removal of SO2and NOxfrom flue gases

Author:

Sun Weizhen123,Lin Li-Chiang2,Peng Xuan24,Smit Berend256

Affiliation:

1. State-Key Laboratory of Chemical Engineering; East China University of Science and Technology; Shanghai 200237 China

2. Dept. of Chemical and Biomolecular Engineering; University of California; Berkeley CA 94720

3. Key Laboratory of Advanced Control and Optimization for Chemical Processes, East China University of Science and Technology; Shanghai 200237 China

4. Dept. of Automation; College of Information Science and Technology, Beijing University of Chemical Technology; Beijing 100029 China

5. Dept. of Chemistry; University of California; Berkeley CA 94720

6. Materials Sciences Div.; Lawrence Berkeley National Laboratory; Berkeley CA 94720

Publisher

Wiley

Subject

General Chemical Engineering,Environmental Engineering,Biotechnology

Reference63 articles.

1. National Ambient Air Quality Standards 2011 www.epa.gov/air/criteria.html

2. Simultaneous adsorption of SO2-NOx from flue gases in a riser configuration;AK;AIChE J.,2001

3. Development of coal combustion pollution control for SO2 and NOx in China;Xu;Fuel Process Technol.,2000

4. Photochemical removal of mercury from flue gas;Granite;Ind Eng Chem Res.,2002

5. Carbon dioxide capture: prospects for new materials;D'Alessandro;Angew Chem Int Ed.,2010

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