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Impact of Mn addition on catalytic performance of Cu/SiBEA materials in total oxidation of aromatic volatile organic compounds

机译:Mn添加对芳族挥发性有机化合物总氧化催化性能的影响

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摘要

Dealuminated BEA zeolite (SiBEA) was chosen as a support of metal oxide(s) phase for catalytic combustion of volatile organic compounds (VOCs). Copper and/or manganese oxide(s) were deposited at various Cu/Mn molar ratios. Factors influencing the catalytic activity were found by chosen physicochemical methods, including XRD, XRF, low-temperature N-2 adsorption, FT-IR, UV-Vis-DRS, STEM-EDX, XPS and H-2-TPR. Depending on the chemical composition, CuO, (CuxMn3-x)(1-delta)O-4, Cu-doped Mn3O4 or Mn2O3 was formed as the dominant phase. The active phase particles were located mainly in the interparticle voids of the zeolite support. SiBEA gained Lewis acid sites after the introduction of the metal oxide phase, especially in the case of CuO deposition. The presence of copper in the catalytic system resulted in enhanced reducibility of the active phase, and in a consequence in high catalytic activity in the total oxidation of aromatic VOCs, which proceeds according to the Mars-van Krevelen mechanism. After the introduction of Mn, the co-existence of different valence forms was found due to the redox equilibrium: Cu2+ + Mn3+ = Cu+ + Mn4+. Definitely, the addition of Mn to Cu/SiBEA increased the number of available surface vacancies and had a beneficial effect on the catalytic performance.
机译:选择浸润的BEA沸石(SIBEA)作为挥发性有机化合物(VOC)的催化燃烧的金属氧化物相的载体。以各种Cu / Mn摩尔比沉积铜和/或锰氧化物。通过选择的物理化学方法发现影响催化活性的因素,包括XRD,XRF,低温N-2吸附,FT-IR,UV-Vis-DRS,茎EDX,XPS和H-2-TPR。取决于化学成分,CuO,(CuxmN3-X)(1-Delta)O-4,Cu掺杂Mn3O4或Mn2O3形成为优势相。活性相颗粒主要位于沸石载体的颗粒间隙中。在引入金属氧化物相后,Sibea获得了路易斯酸部位,特别是在CuO沉积的情况下。催化系统中铜的存在导致活性相的还原性,并且在芳香VOC的总氧化中的高催化活性后,根据MARS-VAN KREVELEN机制进行。在引入Mn之后,由于氧化还原平衡:Cu 2 ++ Mn3 + = Cu + + Mn4 +,发现了不同价形式的共存。绝对,添加Mn至Cu / Sibea增加了可用表面障碍的数量,对催化性能有益效果。

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