Performance Evaluation of Functionalized Biocarbon for Mercury Capture

Author:

Pudasainee Deepak1ORCID,Gupta Rajender1,Khan Ataullah2

Affiliation:

1. Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 2V4, Canada

2. Bio-Thermochemical Processing Technologies, InnoTech Alberta, Vegreville, Alberta T9C 1T4, Canada

Funder

Alberta Innovates - Technology Futures

Publisher

American Chemical Society (ACS)

Subject

Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference38 articles.

1. Arctic Monitoring and Assessment Programme (AMAP)/United Nations Environmental Program (UNEP). Technical Background Report for the Global Mercury Assessment 2013; AMAP/UNEP Chemicals Branch: Oslo, Norway and Geneva, Switzerland, 2013.

2. United Nations Environmental Program (UNEP). Minamata Convention on Mercury; UNEP: Nairobi, Kenya, 2013; http://www.mercuryconvention.org/Convention (accessed December 2017).

3. United States Environmental Protection Agency (U.S. EPA). Basic Information about Mercury and Air Toxics Standards; U.S. EPA: Washington, D.C., 2016; https://www.epa.gov/mats/basic-information-about-mercury-and-air-toxics-standards (accessed September 2016).

4. Canadian Council of Ministers of the Environment (CCME). Canada-Wide Standards for Mercury Emissions from Coal-Fired Electric Power Generating Plants; CCME: Winnipeg, Manitoba, Canada, 2006; http://www.ccme.ca/files/Resources/air/mercury/hg_epg_cws_w_annex.pdf.

5. Mercury co-beneficial capture in air pollution control devices of coal-fired power plants

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