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A sulfur-resistant CuS-modified active coke for mercury removal from municipal solid waste incineration flue gas

机译:用于从城市固体废物焚烧烟气烟道烟气去除汞的耐硫抗性CUS改性活性焦

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摘要

Adsorption is a typical method for air pollutant removal from flue gas. A CuS-modified active coke (CuS/AC) sorbent was developed to improve the elemental mercury removal efficiency from municipal solid waste incineration (MSWI) flue gas. The influences of the loading amount of CuS, reaction temperature, and flue gas components including O-2, SO2, H2O, and HCl on Hg-0 removal efficiency were investigated, respectively. The results showed that the mercury adsorption capacity of CuS/AC((20%)) sorbent was about 7.17 mg/g with 50% breakthrough threshold, which is much higher than that of virgin active coke. The analysis of XPS indicated that HgS was the main species of mercury on spent CuS/AC, which implied that adsorption and oxidation were both included in Hg-0 removal. S-2(2-) played a vital role in the oxidation of physically adsorbed Hg-0. Meanwhile, the common components of MSWI flue gas exhibited no significant inhibition effect on Hg-0 removal by CuS/AC sorbent. CuS/AC sorbent is a promising sorbent for the mercury removal from MSWI flue gas.
机译:吸附是一种典型的空气污染物去除烟道气的方法。开发了一种CUS改性的活性焦炭(CUS / AC)吸附剂,以改善城市固体废物焚烧(MSWI)烟气的元素汞去除效率。研究了CU,反应温度和烟气组分的负载量,包括O-2,SO 2,H 2 O和HCl对HG-0去除效率的影响。结果表明,CU / Ac((20%))吸附剂的汞吸附容量约为7.17mg / g,突破阈值50%,远高于原始活性焦炭。 XPS的分析表明,HGS是CUS / Ac上的主要种类的汞,这意味着吸附和氧化均包括在Hg-0中。 S-2(2-)在物理吸附的HG-0的氧化中起到了至关重要的作用。同时,MSWI烟道气的常见组分对CU / AC吸附剂的HG-0除去显着抑制作用。 CUS / AC吸附剂是从MSWI烟气中移除的有前途的吸附剂。

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