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Copper modified manganese oxide with tunnel structure as efficient catalyst for low-temperature catalytic combustion of toluene

机译:具有隧道结构的铜改性锰氧化物作为甲苯的低温催化燃烧的有效催化剂

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摘要

Copper-modified manganese oxide catalysts with tunnel, layer, and transitional structure were successfully prepared by a one-step hydrothermal method and investigated for the catalytic oxidation of toluene. The catalysts were characterized by XRD, SEM, TEM, BET, H-2-TPR, XPS and ICP-AES techniques. The tunnel-structured catalyst exhibited the best activity among the three Cu-Mn oxide catalysts and excellent water resistance. Abundant surface oxygen species, good low temperature reducibility, low average oxidation state of manganese, and high surface area lead to remarkable catalytic performance of this catalyst. The toluene catalytic combustion over these catalysts was found to follow the Mars-van-Krevelen mechanism and the unique copper states found in the tunnel-structured catalyst play a key role in promoting the cyclic redox process.
机译:通过一步水热法成功制备铜改性的锰氧化物催化剂,层,层,层,并研究了甲苯的催化氧化。 催化剂的特征在于XRD,SEM,TEM,BET,H-2-TPR,XPS和ICP-AES技术。 隧道结构催化剂表现出三种Cu-Mn氧化物催化剂的最佳活性和优异的耐水性。 表面氧气种类丰富,低温再蒸馏性,锰的低平均氧化状态,高表面积导致该催化剂的易催化性能。 发现对这些催化剂的甲苯催化燃烧遵循MARS-VAN-KREVELEN机制,并且在隧道结构催化剂中发现的独特铜状态在促进循环氧化还原过程中起着关键作用。

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