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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >A four-way catalytic system for control of emissions from diesel engine
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A four-way catalytic system for control of emissions from diesel engine

机译:一种四元催化系统,用于控制柴油发动机排放的四元催化系统

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摘要

The pollution caused by diesel-fuelled vehicles has become a subject of global concern. Presently, various separate technologies such as diesel oxidation catalyst, diesel particulate filter, selective catalytic reduction and ammonia selective catalytic reduction are used to control these pollutants. The four-way catalytic (FWC) system integrates all the separate control systems into a single compact unit. FWC technique using a combination of oxidation-reduction catalysts under various strategies has been investigated to simultaneously remove CO, HC, PM and NOx emitted from diesel engines. An oxidation catalyst (La0.6K0.4CoO3) was prepared by two different methods (sol-gel and co-precipitation). The reduction catalysts: Ag/Al2O3 and Cu-ZSM5 were synthesized by impregnation and ion-exchange method, respectively. The FWC was characterized by N-2-sorption, X-ray diffraction, Fourier transform spectroscopy and scanning electron microscopy. The catalytic activities of FWC containing double-layer of catalysts were evaluated in a fixed-bed-tubular-reactor. The highest catalytic activity resulted by the two-layered system of La0.6K0.4CoO3 (sol-gel) + Cu-ZSM5 showing 100% NO conversion to N-2 at 415A degrees C, maximum-temperature of soot-combustion at 410A degrees C, complete C3H8 conversion at 450A degrees C and 100% CO conversion at 388A degrees C. Maximum NO conversion was maintained up to 427A degrees C; conversion started decreasing with further increase in temperature and 75.4% conversion remained up to 450A degrees C. The performance of double-layered-catalytic-system was as follows: La0.6K0.4CoO3(sol-gel) + Cu-ZSM5 La0.6K0.4CoO3(sol-gel) + Ag/Al2O3 La0.6K0.4CoO3(co-ppt) + Ag/Al2O3 La0.6K0.4CoO3(co-ppt) + Cu-ZSM5.
机译:柴油燃料车辆造成的污染已成为全球关注的主题。目前,使用柴油氧化催化剂,柴油颗粒过滤器,选择性催化还原和氨选择性催化还原等各种单独的技术用于控制这些污染物。四通催化(FWC)系统将所有单独的控制系统集成到单个紧凑型单元中。已经研究了在各种策略下使用氧化还原催化剂组合的FWC技术,同时除去从柴油发动机发出的CO,HC,PM和NOx。通过两种不同的方法(溶胶 - 凝胶和共沉淀)制备氧化催化剂(LA0.6K0.4COO3)。通过浸渍和离子交换法合成还原催化剂:Ag / Al 2 O 3和Cu-ZSM5。 FWC的特征在于N-2吸附,X射线衍射,傅里叶变换光谱和扫描电子显微镜。在固定床管 - 反应器中评价FWC含有双层催化剂的FWC的催化活性。最高催化活性由La0.6K0.4COO3(溶胶 - 凝胶)+ Cu-ZSM5的两层系统产生100%,在415A C的N-2中显示为N-2,在410A度下的烟灰燃烧的最高温度C,在450A℃下完成C3H8转化率为388A℃的100%CO转化率。最大不将转化率维持高达427A℃;随着温度的进一步增加,转化转化率为75.4%转化率为450A℃。双层催化系统的性能如下:LA0.6K0.4COO3(溶胶 - 凝胶)+ Cu-ZSM5> LA0.6K0.4COO3(SOL-GEL)+ AG / AL2O3> LA0.6K0.4COO3(CO-PPT)+ AG / AL2O3> LA0.6K0.4COO3(CO-PPT)+ CU-ZSM5。

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