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On the selectively catalytic reduction of NOx with methane over Ag-ZSM-5 catalysts

机译:On the selectively catalytic reduction of NOx with methane over ag-Zsm-5 catalysts

摘要

The catalytic performance of silver-modified ZSM-5 catalysts in the selectively catalytic reduction (SCR) of NOx with methane was investigated. NO was selectively reduced by CH4 to N-2 in the presence of excess O-2, and the catalytic activity depended on both the activation of CH4 and the adsorption properties of NOx. Silver incorporated in ZSM-5 zeolite activated CH4 at low temperatures and lowered the "light-off" temperature for the CH4-SCR of NOx. Temperature-programmed (TP) spectroscopy studies depicted that surface nitrosyl species directly decomposed to N-2 in the absence of O-2. CH4 could not effectively reduce surface nitrosyl species, but might facilitate the direct decomposition of NO through the removal of surface oxygen. Surface nitrates were formed in NO and O-2 coexisting system and could be effectively reduced by CR4 to nitrogen. The priority of surface nitrates to O-2 in the reaction with CH4 clearly demonstrated that CH4 selectively and preferentially reduced the surface nitrate species to N-2 in the excess of oxygen. (C) 2002 Elsevier Science B.V. All rights reserved.
机译:研究了银改性ZSM-5催化剂在甲烷选择性催化还原NOx方面的催化性能。在过量的O-2存在下,CH4选择性地将NO还原为N-2,并且催化活性取决于CH4的活化和NOx的吸附性能。掺入ZSM-5沸石中的银在低温下活化了CH4,并降低了NOx CH4-SCR的“起燃”温度。程序升温(TP)光谱研究表明,在没有O-2的情况下,表面亚硝酰基物质直接分解为N-2。 CH4不能有效地还原表面亚硝基物质,但可能会通过除去表面氧而促进NO的直接分解。在NO和O-2共存的体系中形成了表面硝酸盐,可被CR4还原为氮。在与CH4的反应中,表面硝酸盐对O-2的优先作用清楚地表明,在氧气过量的情况下,CH4选择性地将表面硝酸盐物种优先还原为N-2。 (C)2002 Elsevier Science B.V.保留所有权利。

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