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Modified manganese oxide octahedral molecular sieves M '-OMS-2 (M ' = Co,Ce,Cu) as catalysts in post plasma-catalysis for acetaldehyde degradation

机译:改性氧化锰八面体分子筛M'-OMS-2(M'= Co,Ce,Cu)作为等离子催化乙醛降解的催化剂

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Metal ions-modified cryptomelane-type manganese oxide octahedral molecular sieves M'-OMS-2 (M = Co,Ce,Cu) were synthesized and characterized by XRD, BET, EDS, ICP, TEM, XPS, FTIR, H-2-TPR in this work. The obtained materials were supported on Al2O3 pellets and investigated for acetaldehyde degradation in a post plasma-catalysis system. The results showed that the introduction of M'-OMS-2/Al2O3 catalysts improved acetaldehyde removal efficiency and inhibited ozone formation of plasma significantly, while the intermediates such as acetic acid, amine and nitromethane were suppressed. Co-OMS-2/Al2O3 exhibited the best catalytic activity to combine with plasma among all the prepared catalysts. The excellent activity is ascribed to the redox property, oxygen vacancies, oxygen mobility and surface area of catalyst. It can be inferred that, ozone formed in plasma was catalytically dissociated into active oxygen species by metal ions in M'-OMS-2 catalysts and contributed to acetaldehyde oxidation and intermediates removal. (C) 2015 Elsevier B.V. All rights reserved.
机译:合成了金属离子改性的隐锰烷型氧化锰八面体分子筛M'-OMS-2(M = Co,Ce,Cu),并通过XRD,BET,EDS,ICP,TEM,XPS,FTIR,H-2-表征TPR在这项工作中。将获得的材料负载在Al2O3颗粒上,并在后等离子体催化系统中研究乙醛的降解。结果表明,M'-OMS-2 / Al2O3催化剂的引入显着提高了乙醛的去除效率,并抑制了血浆中臭氧的形成,同时抑制了乙酸,胺和硝基甲烷等中间体。在所有制备的催化剂中,Co-OMS-2 / Al2O3表现出与等离子体结合的最佳催化活性。优异的活性归因于氧化还原性质,氧空位,氧迁移率和催化剂的表面积。可以推断,在等离子体中形成的臭氧在M'-OMS-2催化剂中被金属离子催化分解为活性氧,并有助于乙醛氧化和中间体的去除。 (C)2015 Elsevier B.V.保留所有权利。

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