Literature DB >> 18350905

Impacts of halogen additions on mercury oxidation, in a slipstream selective catalyst reduction (SCR), reactor when burning sub-bituminous coal.

Yan Cao1, Zhengyang Gao, Jiashun Zhu, Quanhai Wang, Yaji Huang, Chengchung Chiu, Bruce Parker, Paul Chu, Wei-Ping Pant.   

Abstract

This paper presents a comparison of impacts of halogen species on the elemental mercury (Hg(0)) oxidation in a real coal-derived flue gas atmosphere. It is reported there is a higher percentage of Hg(0) in the flue gas when burning sub-bituminous coal (herein Powder River Basin (PRB) coal) and lignite, even with the use of selective catalytic reduction (SCR). The higher Hg(0)concentration in the flue gas makes it difficult to use the wet-FGD process for the mercury emission control in coal-fired utility boilers. Investigation of enhanced Hg(0) oxidation by addition of hydrogen halogens (HF, HCl, HBr, and HI) was conducted in a slipstream reactor with and without SCR catalysts when burning PRB coal. Two commercial SCR catalysts were evaluated. SCR catalyst no. 1 showed higher efficiencies of both NO reduction and Hg(0) oxidation than those of SCR catalyst no. 2. NH3 addition seemed to inhibit the Hg(0) oxidation, which indicated competitive processes between NH3 reduction and Hg(0) oxidation on the surface of SCR catalysts. The hydrogen halogens, in the order of impact on Hg(0) oxidation, were HBr, HI, and HCl or HF. Addition of HBr at approximately 3 ppm could achieve 80% Hg(0) oxidation. Addition of HI at approximately 5 ppm could achieve 40% Hg(0) oxidation. In comparison to the empty reactor, 40% Hg(0) oxidation could be achieved when HCl addition was up to 300 ppm. The enhanced Hg(0) oxidation by addition of HBr and HI seemed not to be correlated to the catalytic effects by both evaluated SCR catalysts. The effectiveness of conversion of hydrogen halogens to halogen molecules or interhalogens seemed to be attributed to their impacts on Hg(0) oxidation.

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Year:  2008        PMID: 18350905     DOI: 10.1021/es071281e

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  3 in total

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Authors:  Constance Senior; Evan Granite; William Linak; Wayne Seames
Journal:  Energy Fuels       Date:  2020-09-23       Impact factor: 3.605

2.  Oxidation of elemental mercury by modified spent TiO2-based SCR-DeNOx catalysts in simulated coal-fired flue gas.

Authors:  Lingkui Zhao; Caiting Li; Xunan Zhang; Guangming Zeng; Jie Zhang; Yin'e Xie
Journal:  Environ Sci Pollut Res Int       Date:  2015-09-15       Impact factor: 4.223

3.  Enhancement of CeO2 modified commercial SCR catalyst for synergistic mercury removal from coal combustion flue gas.

Authors:  Shibo Zhang; Qingzhu Zhang; Yongchun Zhao; Jianping Yang; Yang Xu; Junying Zhang
Journal:  RSC Adv       Date:  2020-07-03       Impact factor: 4.036

  3 in total

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