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XANES study of elemental mercury oxidation over RuO2/TiO2 and selective catalytic reduction catalysts for mercury emissions control

机译:XANES研究RuO2 / TiO2上元素汞的氧化和用于控制汞排放的选择性催化还原催化剂

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Linear combination fitting of the X-ray Absorption Near Edge Spectroscopy (XANES) was used to quantify oxidized mercury species over RuO2/TiO2 and Selective Catalytic Reduction (SCR) catalysts under different simulated flue gas conditions. Halogen gases play a major role in mercury oxidation. In the absence of halogen gas, elemental mercury can react with sulfur that is contained in both the RuO2/TiO2 and SCR catalysts to form HgS and HgSO4. In the presence of HCI or HBr gas, HgCl2 or HgBr2 is the main oxidized mercury species. When both HCI and HBr gases are present, HgBr2 is the preferred oxidation product and no HgCl2 can be found. The formation of HgO and HgS cannot be neglected with or without halogen gas. Other simulated flue gas components such as NO, NH3, SO3 and CO2 do not have significant effect on oxidized mercury speciation when halogen gas is present. (C) 2016 Elsevier B.V. All rights reserved.
机译:X射线吸收近边缘光谱法(XANES)的线性组合拟合用于量化RuO2 / TiO2和选择性催化还原(SCR)催化剂在不同模拟烟气条件下的氧化汞种类。卤素气体在汞氧化中起主要作用。在没有卤素气体的情况下,元素汞会与RuO2 / TiO2和SCR催化剂中所含的硫反应形成HgS和HgSO4。在HCl或HBr气体存在下,HgCl2或HgBr2是主要的氧化汞物质。当同时存在HCl和HBr气体时,HgBr2是首选的氧化产物,找不到HgCl2。在有或没有卤素气体的情况下,都不能忽略HgO和HgS的形成。当存在卤素气体时,其他模拟烟道气成分(如NO,NH3,SO3和CO2)对氧化汞形态没有明显影响。 (C)2016 Elsevier B.V.保留所有权利。

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