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Elemental mercury removal from flue gas using heat and Co2+/Fe2+ coactivated oxone oxidation system

机译:使用热量和CO 2 + / Fe2 +共催递氧化氧化系统从烟气中去除烟气的元素汞

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Oxidation removal process of elemental mercury (Hg-0) from flue gas using heat and Co2+/Fe2+ coactivated Oxone oxidation system in a spraying reactor was developed. The effects of several influencing factors and main flue gas compositions on Hg-0 removal, and the active species, products, mechanism and mass transfer-reaction kinetic law of Hg-0 removal process were investigated. The results show that heat and Co2+/Fe2+ have a significant synergistic effect for activating Oxone to produce free radicals and promote Hg-0 removal. Hg-0 removal can be improved via increasing Oxone concentration, Co2+/Fe2+ concentration, activation temperature or O-2 concentration, and is inhibited with increasing solution pH, Hg-0 inlet concentration or NO concentration. Changing SO2 concentration have double impacts on Hg-0 removal. SO4-center dot and (OH)-O-center dot produced from coactivation of heat and Co2+/Fe2+ are the key oxidants, which play a leading role in Hg-0 removal. Oxone plays a complementary role in Hg-0 removal. Hg-0 removal processes using heat/Co2+ and heat/Fe2+ coactivated Oxone systems belong to fast reactions under optimized experimental conditions, and meets a total 2.8-order reaction (i.e. 1.0-order for Hg-0, 1.1-order for Oxone and 0.7-order for Co2+) in Co2+/Oxone activation system, and a total 3.0-order reaction (i.e. 1.0-order for Hg-0, 1.4-order for Oxone and 0.6-order for Fe2+) in Fe2+/Oxone activation system. Finally, the key mass transfer and kinetic parameters of Hg-0 removal processes were also determined.
机译:开发了在喷涂反应器中使用热量和CO 2 + / Fe2 +共催递氧化氧化氧化系统从烟道气中氧化去除过程的元素汞(Hg-0)。研究了几种影响因素和主要烟气组合物对HG-0去除的影响,以及活性物种,产物,机制和质量转移反应的HG-0除去方法的疗法。结果表明,热量和CO2 + / Fe2 +具有显着的协同效应,用于激活氧化力以产生自由基并促进Hg-0去除。通过增加的oxone浓度,CO 2 + / Fe2 +浓度,活化温度或O-2浓度可以提高Hg-0去除,并且抑制溶液pH,Hg-0入口浓度或不浓度。改变SO2浓度对HG-0的拆除具有双重影响。 SO4中心点和(OH)-O-中心点由热量和CO2 + / FE2 +产生的胶质激活是关键氧化剂,在HG-0去除中起着主导作用。氧化力在HG-0去除中起着互补的作用。 HG-0使用加热/ CO2 +和加热/ Fe2 +共置换的氧酮系统的除去方法属于优化的实验条件的快速反应,并满足总2.8阶反应(即1.0阶的HG-0,1.1- oxone的1.1-10.7在Fe2 + / oxone激活系统中,CO2 + / oxone激活系统中的CO2 +)中的CO2 +)和总3.0阶反应(即1.4阶的1.4阶,1.4阶至0.6阶)。最后,还确定了HG-0去除过程的关键传质和动力学参数。

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