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BIFUNCTIONAL CATALYSTS FOR THE SELECTIVE CATALYTIC REDUCTION OF NO BY HYDROCARBONS

机译:选择性催化还原NO的双功能催化剂

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摘要

Novel bifunctional catalysts combining two active phases, typically Cu-ZSM-5 and a modifier, were prepared and tested for the selective catalytic reduction of nitrogen oxides using propylene in order to overcome the hindering effects of water typically seen for single-phase catalysts such as Cu-ZSM-5. The catalysts were made by typical preparation techniques, but parameters could be varied to influence the catalyst. The physical characterization of the materials showed that the modification phase was added strictly to the external surface of the zeolite without hindering any internal surface area. Chemical characterization by temperature-programmed reactions, DRIFTS and x-ray absorption spectroscopy indicated strong interaction between the two phases, primarily producing materials that exhibited lower reduction temperatures. Two improvements in NOx reduction activity (1000 ppm NO, 1000 ppm C_3H_6, 2% O_2, 30,000 hr~(-1) GHSV) were seen for these catalysts compared with Cu-ZSM-5: a lower temperature of maximum NOx conversion activity (as low at 250℃), and an enhancement of activity when water was present in the system. The use of a second phase provides a way to further tune the properties of the catalyst in order to achieve mechanistic conditions necessary to maximize NOx remediation.
机译:制备了结合了两种活性相(通常为Cu-ZSM-5和改性剂)的新型双功能催化剂,并测试了使用丙烯选择性催化还原氮氧化物的目的,从而克服了水对单相催化剂(例如:铜-ZSM-5。通过典型的制备技术制备催化剂,但是可以改变参数以影响催化剂。材料的物理特性表明,改性相被严格地添加到沸石的外表面上,而没有阻碍任何内表面积。通过程序升温反应,DRIFTS和X射线吸收光谱进行的化学表征表明,两相之间存在强相互作用,主要是产生还原温度较低的材料。与Cu-ZSM-5相比,这些催化剂在NOx还原活性方面有两个改善(1000 ppm NO,1000 ppm C_3H_6、2%O_2、30,000 hr〜(-1)GHSV):较低的最大NOx转化活性温度(最低温度为250℃),并且当系统中存在水时,活性会增强。第二相的使用提供了一种进一步调节催化剂性能的方法,以便获得使NOx修复最大化所需的机械条件。

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