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首页> 外文期刊>The Science of the Total Environment >Preparation of microwave-activated magnetic bio-char adsorbent and study on removal of elemental mercury from flue gas
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Preparation of microwave-activated magnetic bio-char adsorbent and study on removal of elemental mercury from flue gas

机译:微波活化磁性生物炭吸附剂的制备及烟气中汞的去除研究

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In this study, novel activatedmagnetic bio-char adsorbents were proposed to remove the element mercury (Hg-0) from flue gas. Microwave activation and Mn-Fe mixed oxides impregnation assisted by ultrasound treatment were applied on the modification of renewable cotton straw chars. The influence of different preparation methods, loading value ofMn-Fe, molar ratio ofMn/Fe, calcining temperature, reaction temperature and individual flue gas ingredients (O-2, NO, SO2 and H2O) on removal of Hg-0 was investigated in a fixed bed system. The characterization results reveal thatmicrowave activation is advantageous for the development of the pore structure, and ultrasound treatment can optimize the dispersion of Mn and Fe active ingredients. MnFe4%(3/10)/CSWU700 adsorbent exhibits the optimal Hg-0 removing performance. O-2, NO, low concentration of SO2 (b600 ppm) and low concentration of H2O (b2%) are found to be favourable for the capture of Hg-0, while high concentrations of SO2 and H2O inhibit the removal of Hg-0. Chemical adsorption acts a pivotal part in the process of Hg-0 removal. Mn and Fe active ingredients are consumed in large quantities during the Hg-0 capture. In addition, chemisorbed oxygen (O-beta) also plays an indispensable in the oxidation process of Hg-0. Furthermore, the magnetic adsorbent MnFe4%(3/10)/CSWU700 presents a good regeneration performance and adsorption capacity. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项研究中,提出了一种新型的活化磁性生物炭吸附剂,以去除烟道气中的汞(Hg-0)。超声处理辅助微波活化和Mn-Fe混合氧化物浸渍技术对再生棉秸秆炭进行改性。研究了不同制备方法,Mn-Fe的负载量,Mn / Fe的摩尔比,煅烧温度,反应温度和烟道气成分(O-2,NO,SO2和H2O)对去除Hg-0的影响。固定床系统。表征结果表明,微波活化有利于孔结构的发展,超声处理可以优化Mn和Fe活性成分的分散。 MnFe4%(3/10)/ CSWU700吸附剂表现出最佳的Hg-0去除性能。发现O-2,NO,低浓度的SO2(b600 ppm)和低浓度的H2O(b2%)有助于捕获Hg-0,而高浓度的SO2和H2O则抑制了Hg-0的去除。在Hg-0去除过程中,化学吸附起着关键作用。在捕获Hg-0期间,大量消耗了Mn和Fe活性成分。此外,化学吸附的氧(O-beta)在Hg-0的氧化过程中也起着不可或缺的作用。此外,磁性吸附剂MnFe4%(3/10)/ CSWU700具有良好的再生性能和吸附能力。 (C)2019 Elsevier B.V.保留所有权利。

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