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Urea thermolysis and NO_x reduction with and without SCR catalysts

机译:有和没有SCR催化剂时尿素热解和NO_x还原

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摘要

Urea-selective catalytic reduction (SCR) has been a leading contender for removal of nitrogen oxides (deNO_x) from diesel engine emissions.Despite its advantages,the SCR technology faces some critical detriments to its catalytic performance such as catalyst surface passivation (cused by deposit formation) and consequent stoichiometric imbalance of the urea consumption.Deposit formation deactivates catalytic performance by not only consuming part of the ammonia produced during urea decomposition but also degrading the structural and thermal properties of the catalyst surface.We have characterized the urea thermolysis with and without the urea-SCR catalyst using both spectroscopic (DIFTS and Raman) and thermal techniques (thermal gravimetric analysis (TGA) and differential scanning calorimetry (DSC) to identify the deposit components and their correspondintg thermal properties.Urea thermolysis exhibits two decomposition stages,involving ammonia generation and consumption,respectively.The decomposition after the second stage leads to the product of melamine complexes,(HNC=NH)_x(HNCO)_y,that hinder catalytic performance.The presence of catalyst accompanied with a good spray of the urea solution helps to eliminate the second stage.In this work,kinetics of the direct reduction of NO_x by urea is determined and the possibility of using additives to the urea solution in order to rejuvenate the catalyst surface and improve its performance will be discussed.
机译:尿素选择性催化还原(SCR)一直是从柴油机废气中去除氮氧化物(deNO_x)的主要竞争者。尽管其优势,SCR技术仍面临着对其催化性能的一些关键损害,例如催化剂表面钝化(由沉积物引起)沉积物的形成不仅使尿素分解过程中消耗的一部分氨消耗掉,而且使催化剂表面的结构和热性能降低,从而使催化性能失活。尿素-SCR催化剂使用分光光度法(DIFTS和拉曼光谱)和热技术(热重量分析(TGA)和差示扫描量热法(DSC)来鉴定沉积物成分及其相应的热性质。尿素热分解表现出两个分解阶段,涉及氨分别产生和消费。第二阶段分解后会生成三聚氰胺配合物(HNC = NH)_x(HNCO)_y,这会阻碍催化性能。催化剂的存在与良好的尿素溶液喷雾一起有助于消除第二阶段。通过这项工作,确定了尿素直接还原NO_x的动力学,并讨论了在尿素溶液中使用添加剂以活化催化剂表面并改善其性能的可能性。

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