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Prepare a catalyst consist of rare earth minerals to denitrate via NH3-SCR

机译:制备催化剂由稀土矿物组成,通过NH3-SCR脱氮

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摘要

To research the roles of rare earth minerals in denitrification via the NH3-SCR, a mixture was made by certain ratio of rare earth concentrates and rare earth tailings, then treated by microwave roasting, and acids and bases to form a denitrification catalyst. The mineral phase structure and surface morphology of the catalyst were characterized by XRD, BET, SEM and EDS. The surface properties of the catalyst were tested by TPD and XPS methods, and the denitrification activity of the catalyst was evaluated in a denitrification reactor. The results showed that the denitrification efficiency increased up to 82% with complete processing. XRD, BET, SEM, and EDS spectrum analysis stated that the treated minerals contained cerium oxides and Fe-Ce composite oxides. The surface of the modified minerals became rough and porous, the surface area increased, and the surface-active sites were exposed. The results of NH3-TPD and NO-TPD showed that the catalyst surface could gradually adsorb more NH, and NO after each step. XPS analysis indicated that there were more Ce3-, Fe2-, and lattice oxygen in rare earth minerals catalyst after each treatment step.
机译:为了通过NH3-SCR研究稀土矿物在反硝化中的作用,通过稀土浓缩物和稀土尾矿的一定比例进行混合物,然后通过微波焙烧,酸和碱处理以形成反硝化催化剂。通过XRD,BET,SEM和EDS表征催化剂的矿物相结构和表面形态。通过TPD和XPS方法测试催化剂的表面性质,并在反硝化反应器中评价催化剂的脱氮活性。结果表明,反硝化效率高达82%,完整加工。 XRD,BET,SEM和EDS频谱分析表明,处理的矿物质含有氧化铈和Fe-Ce复合氧化物。改性矿物的表面变得粗糙,表面积增加,表面有活性位点暴露。 NH3-TPD和NO-TPD的结果表明,催化剂表面可以逐渐吸附更多NH,并且在每一步之后不均匀。 XPS分析表明,在每个处理步骤后,稀土矿物催化剂中有更多的CE3-,Fe2-和晶格氧。

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