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An Experimental Study on Oxidized Mercury Adsorption by Bromide Blended Coal Combustion Fly Ash

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摘要 The application of forced mercury oxidation technology would lead to an increase of Hg^(2+)concentration in the flue gas.Although Hg^(2+)can be easily removed in the WFGD,the mercury re-emission in the WFGD can decrease the total removal of mercury from coal-fired power plants.Hence,it is necessary to control Hg^(2+)concentration in the devices before the WFGD.Fly ash adsorbent is considered as a potential alternative for commercial activated carbon adsorbent.However,the adsorption efficiency of the original fly ash is low.Modification procedure is needed to enhance the adsorption performance.In this study,the adsorption of Hg^(2+)by brominated fly ash was studied.The fly ash was collected from the full-scale power plant utilizing bromide-blended coal combustion technology.The brominated fly ash exhibited excellent performance for Hg^(2+)removal.The flue gas component HBr and SO_(2)could improve adsorbent’s performance,while HCl would hinder its adsorption process.Also,it was demonstrated by Hg-TPD experiments that the adsorbed Hg^(2+)mainly existed on the fly ash surface in the form of HgBr_(2).In summary,the brominated fly ash has a broad application prospect for mercury control.
出处 《Energy Engineering》 EI 2021年第5期1277-1286,共10页 能源工程(英文)
基金 financially supported by the National Key Research and Development Program of China(Grant No.2016YFB0600603) National Natural Science Foundation of China(Grant No.51776084) Shenzhen Science and Technology Innovation Committee(Grant No.JCYJ20190809095003718).
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