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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Synthesis of La-K-Mn-O peorvskite-type oxides and their catalytic property for simultaneous removal of NO_x and diesel soot particulates
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Synthesis of La-K-Mn-O peorvskite-type oxides and their catalytic property for simultaneous removal of NO_x and diesel soot particulates

机译:La-K-Mn-O坡缕石型氧化物的合成及其催化同时去除NO_x和柴油机烟尘颗粒的催化性能

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摘要

Mixed metal oxides in the La-K-Mn-O system were synthesized and their catalytic properties toward the simultaneous NO_x-soot removal reaction were investigated. The solubility limit of K in La_(1-x)K_xMnO_3 was determined between 0.2 and 0.25 from X-ray diffraction (XRD) measurement and crystal structure investigation, and K_2Mn_4O_8 was by-produced beyond the solubility limit. The activity and the NO_x reduction selectivity depended significantly on the K content, and the oxides with intermediate K contents (x = 0.2 and x = 0.25) or with the compositioni close to the solubility limit were good catalysts with higher activity and selectivity. The present study revealed that the La-K-Mn-O oxides are good candidates of catalysts for the simultaneous NO_x-soot removal reaction.
机译:合成了La-K-Mn-O体系中的混合金属氧化物,研究了它们对同时去除NO_x-烟灰的催化性能。通过X射线衍射(XRD)测量和晶体结构研究,确定K在La_(1-x)K_xMnO_3中的溶解度极限在0.2至0.25之间,并且副产物K_2Mn_4O_8超出溶解度极限。活性和NO_x还原选择性很大程度上取决于K含量,具有中等K含量(x = 0.2和x = 0.25)或组成接近溶解度极限的氧化物是具有较高活性和选择性的良好催化剂。本研究表明,La-K-Mn-O氧化物是同时进行NO_x-烟灰去除反应的催化剂的良好候选者。

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