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Adsorption chemistry of NOx on Ag/Al2O3 catalyst for selective catalytic reduction of NOx using hydrocarbons

机译:NOx在Ag / Al2O3催化剂上的吸附化学以利用烃选择性催化还原NOx

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摘要

Ag/Al2O3 is an active catalyst for selective catalytic reduction (SCR) of NOx using long paraffins as reducing agents. In view of the important role of surface nitrates in this catalytic chemistry, their formation on the Ag/Al2O3 catalyst, i.e. on the alumina support and on the silver species, was quantified in this study under typical reaction conditions of 500-1000 ppm NOx, 6% O-2 and 12% H2O. The NOx adsorption capacity and the stoichiometry of nitrate formation and elimination reactions were determined as function of the temperature and the composition of the NOx using volumetric determinations in a flow system. The silver chemistry was investigated using in situ DR UV-vis spectroscopy. In the presence of water, nitrate formation out of NOx proceeds according to two different mechanisms depending on the state of silver as Ag(0) or Ag(I) on the catalyst. Minute concentrations of hydrogen (3500 ppm) are responsible for Ag(I) reduction. The study reveals the origin of the promotion of the low temperature SCR-NOx activity of Ag/Al2O3 by hydrogen. Hydroxylation-dehydroxylation of the alumina surface of Ag/Al2O3 catalyst was found to be an oscillating reaction, whereas the alumina support itself did not display this phenomenon. (c) 2005 Elsevier Inc. All rights reserved.
机译:Ag / Al2O3是使用长链烷烃作为还原剂的NOx选择性催化还原(SCR)的活性催化剂。考虑到表面硝酸盐在催化化学中的重要作用,在这项研究中,在典型的500-1000 ppm NOx反应条件下,对它们在Ag / Al2O3催化剂上(即在氧化铝载体上和在银物种上)的形成进行了量化, 6%的O-2和12%的H2O。使用流动系统中的体积测定法确定NOx的吸附能力以及硝酸盐形成和消除反应的化学计量,作为温度和NOx组成的函数。使用原位DR UV-可见光谱法研究了银化学。在水的存在下,取决于银在催化剂上的状态为Ag(0)或Ag(I),根据两种不同的机理,会从NOx中生成硝酸盐。最小的氢气浓度(3500 ppm)负责还原Ag(I)。研究揭示了氢促进Ag / Al2O3低温SCR-NOx活性的起源。发现Ag / Al 2 O 3催化剂的氧化铝表面的羟基化-脱羟基化是振荡反应,而氧化铝载体本身未显示该现象。 (c)2005 Elsevier Inc.保留所有权利。

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