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Cu Loading Dependence of Fast NH_3-SCR on Cu/SSZ-13

机译:快速NH_3-SCR对Cu / SSZ-13的Cu负载依赖性

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The fast NH_3-SCR kinetics are studied on Cu/SSZ-13 with different Cu loadings, under reaction conditions (temperature and space velocity) where both steady-state and differential NO_x conversions are readily achieved. Cu loading is found to greatly influence low-temperature NO_x turnover rates, however not to substantially affect apparent activation energies. The high reaction apparent activation energies (~ 160 kJ/mol) suggest that the rate-limiting kinetics for fast SCR involve the participation of NH4NO3, an intermediate that is of considerable stability in small-pore zeolites. The energetically demanding NH_4NO_3 + N0 reactions make low-temperature fast SCR much slower than standard SCR over Cu-exchanged small-pore zeolite catalysts, in drastic contrast to vanadium and medium/large pore zeolite-based SCR catalysts.
机译:在反应条件(温度和空速)下,容易获得稳态和不同的NO_x转化率的条件下,在不同Cu负载下,在Cu / SSZ-13上研究了快速的NH_3-SCR动力学。发现铜负载极大地影响了低温NO_x的转化率,但是基本上不影响表观的活化能。高的反应表观活化能(〜160 kJ / mol)表明快速SCR的限速动力学涉及NH4NO3的参与,NH4NO3是一种在小孔沸石中具有相当大稳定性的中间体。与钒和中/大孔沸石基SCR催化剂形成鲜明对比的是,与铜交换的小孔沸石催化剂相比,对NH_4NO_3 + N0的强烈反应使低温快速SCR比标准SCR慢得多。

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