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The effects of oxygen and metal oxide catalysts on the reduction reaction of NO with lignite char during combustion flue gas cleaning

机译:氧气和金属氧化物催化剂对燃烧烟气净化过程中NO与褐煤焦还原反应的影响

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The development of lignite-char-supported metal oxide catalyst for reduction of nitric oxide (NO) is investigated in this paper. The characteristics of NO reduction by copper and iron oxide catalysts supported on activated lignite chars (ALC) was studied using a fixed-bed reactor at 300 degrees C. The results showed that the impregnation of Cu on ALC resulted in higher catalytic reactivity during NO reduction compared with that of Fe. Chemisorption of O-2 and NO on Cu/ALC catalyst was found to play an important role in denitrification. Fourier transform infrared spectroscopy (FTIR) and X-ray diffraction (XRD) analyses showed that chemically adsorbed oxygen facilitates the formation of C(O) complex and oxidation of Cu-0 to Cu+ for Cu/ALC catalyst. The C(O) intermediates and C* production formed due to the fact that C/O-2 reaction promoted the reduction of NO. It is suggested that the catalytic reaction of NO in this case comprised of C/O-2 reaction, C(O)/NO reaction and formation of N-2 and CO2. Cu seemed to have significantly promoted the C(O) formation and CO oxidation compared with Fe. The catalytic reactivity of Cu species for C(O) formation and CO oxidation followed the order of Cu-0>Cu+>Cu2+. Fe3O4 was believed to be the active phase in Fe catalyst. The oxygen and char-supported metal catalysts significantly promoted C/NO reaction, and therefore may lead to a lower operation temperature of NOx removal. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文研究了褐煤炭负载金属氧化物还原一氧化氮(NO)的催化剂的开发。使用固定床反应器在300℃下研究了负载在活性褐煤炭(ALC)上的铜和铁氧化物催化剂对NO的还原特性。结果表明,在ALC上浸渍Cu会导致NO还原过程中更高的催化反应性与铁相比。发现O-2和NO在Cu / ALC催化剂上的化学吸附在反硝化中起重要作用。傅里叶变换红外光谱(FTIR)和X射线衍射(XRD)分析表明,化学吸附的氧有助于C / O络合物的形成,并促进Cu / ALC催化剂将Cu-0氧化为Cu +。 C(O)中间体和C *生成是由于C / O-2反应促进NO还原这一事实而形成的。建议在这种情况下,NO的催化反应包括C / O-2反应,C(O)/ NO反应以及N-2和CO2的形成。与铁相比,铜似乎显着促进了C(O)的形成和CO的氧化。 Cu物种对C(O)形成和CO氧化的催化反应性依次为Cu-0> Cu +> Cu2 +。认为Fe 3 O 4是Fe催化剂中的活性相。氧和炭载金属催化剂显着促进了C / NO反应,因此可能导致较低的NOx去除操作温度。 (C)2016 Elsevier B.V.保留所有权利。

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