850
Views
23
CrossRef citations to date
0
Altmetric
Original Articles

Technology for mercury removal from flue gas of coal based thermal power plants: A comprehensive review

ORCID Icon & ORCID Icon
Pages 1700-1736 | Published online: 08 Mar 2019

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Jianxu Wang, Lena Qiying Ma, Rob Letcher, Scott Alan Bradford, Xinbin Feng & Jörg Rinklebe. (2022) Biogeochemical cycle of mercury and controlling technologies: Publications in critical reviews in environmental science & technology in the period of 2017–2021. Critical Reviews in Environmental Science and Technology 52:24, pages 4325-4330.
Read now

Articles from other publishers (22)

Pragati Shukla, Pallavi Singhal, S. Manivannan & D. Mandal. (2023) Silver impregnated novel adsorbents for capture of elemental Mercury: A review. Environmental Nanotechnology, Monitoring & Management 20, pages 100825.
Crossref
Vanish Kumar, Sherif A. Younis, Jan E. Szulejko & Ki-Hyun Kim. (2023) Performance of BiO1.5-xIx and composite quasi-photocatalysts for the removal of gaseous elemental Hg0 from coal combustion flue gases: A review. Renewable and Sustainable Energy Reviews 185, pages 113659.
Crossref
Chao Liu, Yu Li, Xiaoqian Gai, Zhouyang Xiang, Weikun Jiang, Shuaiming He, Yu Liu & Huining Xiao. (2023) Advances in green materials derived from wood for detecting and removing mercury ions in water. Environmental Pollution 335, pages 122351.
Crossref
Pragati Shukla, S. Manivannan & D. Mandal. (2023) Silver zeolite in ultrasonically welded packed beds for enhanced elemental mercury capture from contaminated air stream: Adsorption and kinetics study. Microporous and Mesoporous Materials 359, pages 112651.
Crossref
Long Ding, Yifan Wang, Lixin Qian, Pengyu Qi, Meng Xie & Hongming Long. (2023) Flue gas deNOxing spent V2O5-WO3/TiO2 catalyst: A review of deactivation mechanisms and current disposal status. Fuel 338, pages 127268.
Crossref
Dunyu Liu, Kailong Xu, Jingjing Ma, Qiuqi Liu, Yunpei Fan, Chaoran Wang, Xudong Wang, Jing Jin & Huancong Shi. (2023) Advances in rational design of catalysts for efficient Hg0 removal. Fuel 331, pages 125922.
Crossref
Alhadi Ishag, Yanxue Yue, Jingting Xiao, Xinshui Huang & Yubing Sun. (2022) Recent advances on the adsorption and oxidation of mercury from coal-fired flue gas: A review. Journal of Cleaner Production 367, pages 133111.
Crossref
Mingxuan Ji, Honghu Li, Kang Hu & Jiangjun Hu. (2022) Effects of Chlorine Addition on Nitrogen Oxide Reduction and Mercury Oxidation over Selective Catalytic Reduction Catalysts. ACS Omega 7:14, pages 12098-12110.
Crossref
Zbyszek Szeliga, Stanislav Honus, Zuzana Vavrova, Petr Jirsa, Vaclav Vesely, Milan Carsky, Milan Vujanovic, Paweł Regucki & Renata Krzyzynska. (2022) Effect of HCl on a sorption of mercury from flue gas evolved during incineration of hospital waste using entrained flow adsorbers. Waste Management 140, pages 74-80.
Crossref
Dongjing Liu, Lingtao Yang, Jiang Wu & Bin Li. (2022) Molten salt shielded preparation of rice straw biochars doped by copper sulfide for elemental mercury capture. Journal of the Energy Institute.
Crossref
Peng Yuan, Haofei Ma, Boxiong Shen & Zhiyong Ji. (2022) Abatement of NO/SO2/Hg0 from flue gas by advanced oxidation processes (AOPs): Tech-category, status quo and prospects. Science of The Total Environment 806, pages 150958.
Crossref
Xue-Lei Duan, Chun-Gang Yuan, Tian-Tian Jing & Xiao-Dong Yuan. (2021) One-step preparation of functionalized cotton exocarp-based sorbent for efficient Hg0 immobilization. Carbon Letters 32:1, pages 169-180.
Crossref
Yang Ling, Jiachen Li, Jiang Wu, Hailong Liu, Xu Mao, Yongfeng Qi, Qian Ma, Qizhen Liu, Zhanwei Qiao & Weiqun Chu. (2022) Enhanced photocatalytic activity on elemental mercury over pink BiOIO3 nanosheets with abundant oxygen vacancies. Korean Journal of Chemical Engineering 39:2, pages 343-352.
Crossref
Ri-Qing Yu & Tamar Barkay. 2022. 31 90 .
Xinze Geng, Yufeng Duan, Shilin Zhao, Jiwei Hu & Weimeng Zhao. (2021) Mechanism study of mechanochemical bromination on fly ash mercury removal adsorbent. Chemosphere 274, pages 129637.
Crossref
James C. Hower, Biao Fu & Shifeng Dai. (2020) Geochemical partitioning from pulverized coal to fly ash and bottom ash. Fuel 279, pages 118542.
Crossref
Zouhair Ait-Touchente, Houssem Eddine El Yamine Sakhraoui, Najla Fourati, Chouki Zerrouki, Naima Maouche, Nourdin Yaakoubi, Rachid Touzani & Mohamed M. Chehimi. (2020) High Performance Zinc Oxide Nanorod-Doped Ion Imprinted Polypyrrole for the Selective Electrosensing of Mercury II Ions. Applied Sciences 10:19, pages 7010.
Crossref
M. Sadegh Ramezani, John Ozdemir, Ahmad R. Khosropour & Hudson Beyzavi. (2020) Sulfur-Decorated Hyper-Cross-Linked Coal Tar: A Microporous Organic Polymer for Efficient and Expeditious Mercury Removal. ACS Applied Materials & Interfaces 12:39, pages 44117-44124.
Crossref
Carlos M. López-Alled, Lloyd C. Murfin, Gabriele Kociok-Köhn, Tony D. James, Jannis Wenk & Simon E. Lewis. (2020) Colorimetric detection of Hg 2+ with an azulene-containing chemodosimeter via dithioacetal hydrolysis . The Analyst 145:19, pages 6262-6269.
Crossref
Jiang Liu, Liyi Bai, Yufeng Duan, Shilin Zhao, Tianfang Huang, Zhengkang Luo & Ming Hua. (2020) Continuous Generation of HgCl 2 by DBD Nonthermal Plasma. Part I: Influences of the DBD Reactor Structure and Operational Parameters . Industrial & Engineering Chemistry Research 59:30, pages 13396-13405.
Crossref
Dongjing Liu, Bin Li, Jiang Wu & Yangxian Liu. (2019) Photocatalytic oxidation removal of elemental mercury from flue gas. A review. Environmental Chemistry Letters 18:2, pages 417-431.
Crossref
J. Crossman & C. Weisener. 2020. Contaminants of the Great Lakes. Contaminants of the Great Lakes 1 12 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.