Low temperature catalytic combustion of chlorobenzene over cobalt based mixed oxides derived from layered double hydroxides

氯苯 催化作用 催化燃烧 层状双氢氧化物 燃烧 无机化学 化学 吸附 吸附 金属 热稳定性 混合氧化物 有机化学
作者
Wei Deng,Qianxi Tang,Shushu Huang,Long Zhang,Ziye Jia,Limin Guo
出处
期刊:Applied Catalysis B-environmental [Elsevier BV]
卷期号:278: 119336-119336 被引量:142
标识
DOI:10.1016/j.apcatb.2020.119336
摘要

• Co-M mixed oxides derived from LDHs was a versatile method to gain superior properties. • The addition of M to Co 3 O 4 constrained its chlorination activity. • CoCr was an efficient and durable catalyst for chlorobenzene combustion. • CoCr showed superior activity for various CVOCs combustion. Cobalt based mixed oxides were synthesized by a thermal treatment of layered double hydroxides (LDHs) with molar ratio of Co/M = 3 (M = Al, Fe, Cr) and characterized by various techniques such as XRD, N 2 sorption, H 2 -TPR, O 2 -TPD, NH 3 -TPD-MS and so on. The results indicated that the mixed oxides derived from LDHs possessed high specific surface area and uniform morphology. Meanwhile, the elements in the mixed oxides were homogenously dispersed. The addition of a second metal (Al, Fe or Cr) enhanced not only the acidity but also the basicity, moreover, Fe and Cr notably improved the reducibility at low temperature and the oxygen mobility of pristine Co 3 O 4 . The results of chlorobenzene catalytic combustion showed the addition of Cr or Fe promoted the apparent activity of pristine Co 3 O 4 at low temperature and suppressed the formation of polychlorinated by-products. Among mixed oxides, CoCr catalyst possessed the highest activity and more obvious inhibition of dichlorobenzene formation, which was ascribed to its high redox ability, superior acidity and rapid removal of adsorbed inorganic chlorine species in the form of Cl 2 . In addition, the CoCr catalyst showed high catalytic stability.
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