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Dual resistance to alkali metals and SO2: vanadium and cerium supported on sulfated zirconia as an efficient catalyst for NH3-SCR

机译:双抗碱金属和二氧化硫:钒和支持在硫酸铈氧化锆高效催化剂NH3-SCR

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摘要

Vanadium and cerium supported on sulfated zirconia is an efficient SCR catalyst with dual resistance toward both potassium and SO2 poisoning. To the best of our knowledge, no examples of catalysts with a tolerance to both alkali metals and SO2 have been reported. Herein, the catalyst with a Ce : V molar ratio of 1 : 1 showed the highest activity (> 97%) in the presence of potassium and SO2. The formation of thermally stable Ce-2(SO4)(3) disrupted the Ce(IV)/Ce(III) redox cycle, resulting in a significant deactivation of the CeSZ catalyst (93% to 63% in 400 min). Addition of a vanadium additive led to the transformation of CeO2 to CeVO4, thereby cutting off the reaction between CeO2 and SO2 and retaining the reactivity of the active sites. In addition, vanadium weakened the adsorption/oxidation of SO2 on the catalysts and thereby enhanced the tolerance toward SO2 by inhibiting the formation of ammonium bisulfate (NH4HSO4).
机译:钒硫酸氧化锆铈支持是一种有效的SCR催化剂具有双重阻力对钾和二氧化硫中毒。我们所知,没有催化剂的例子宽容碱金属和二氧化硫已报告。Ce: V摩尔比率为1:1显示最高的活动(> 97%)和钾的存在二氧化硫。Ce-2 (SO4)(3)扰乱了Ce (IV) / Ce (III)氧化还原循环,导致显著失活CeSZ催化剂在400分钟(93%对63%)。添加钒添加剂了CeVO4 CeO2的变换,从而降低了CeO2二氧化硫和之间的反应保持积极的反应性网站。此外,削弱了钒吸附/氧化催化剂和二氧化硫从而提高了公差对二氧化硫抑制硫酸氢铵的形成(NH4HSO4)。

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