Modeling of mercuric chloride removal in ductwork and fabric filter by raw activated carbon injection

Author:

Sriram Vishnu,Liu Zhouyang,Lee Joo-Youp

Funder

National Science Foundation

Ohio Development Service Agency

Publisher

Elsevier BV

Subject

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

Reference27 articles.

1. Federal Implementation Plans: Interstate Transport of Fine Particulate Matter and Ozone and Correction of SIP Approvals, 40 CFR Parts 51, 52, 72, 78, and 97. EPA US; 2011. p. 48207–712.

2. National Emission Standards for Hazardous Air Pollutants From Coal and Oil-Fired Electric Utility Steam Generating Units and Standards of Performance for Fossil-Fuel-Fired Electric Utility, Industrial-Commercial Institutional, and Small Industrial Commercial. EPA US; 2016.

3. Sjostrom S, Bustard J, Durham M, Chang R. Analysis of key parameters impacting mercury control on coal-fired boilers. Proceedings of Air Qual IV Meeting. Arlington, VA; 2003.

4. Sjostrom S, Ebner T, Slye R, Chang R, Strohfus M, Pelerine J, et al. Full-Scale Evaluation of Mercury Control at Great River Energy’s Stanton Generating Station using Injected Sorbents and a Spray Dryer/Baghouse. Proceedings of Air Qual III Conf. Arlington, VA; 2002. p. 9–12.

5. Simulation of mercury capture by activated carbon injection in incinerator flue gas. 1. In-duct removal;Scala;Environ Sci Technol,2001

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