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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Understanding the activation mechanism induced by NOx on the performances of VOx/TiO2 based catalysts in the total oxidation of chlorinated VOCs
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Understanding the activation mechanism induced by NOx on the performances of VOx/TiO2 based catalysts in the total oxidation of chlorinated VOCs

机译:了解NOx引发的活化机理对基于VOx / TiO2的催化剂在氯化VOC的总氧化中的性能

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摘要

A previous investigation of the chlorobenzene combustion activity of VOx/TiO2, VOx-WO/TiO2 and VOx-MoOx/TiO2 catalysts in the presence of NO pointed out the activation effect of NO. The suggested three-step mechanism based on catalytic performances data only was: (1) chlorobenzene is oxidized on the surface of the VOx phase (as described by Mars-van Krevelen), (2) NO gets oxidized to NO2, mainly on WOx and MoOx and (3) the in situ produced NO2 assists O-2 in the reoxidation of the VOx phase thus speeding up the oxidation step of the Mars-van Krevelen mechanism. The latter effect macroscopically corresponds to the observed increase of chlorobenzene conversion. This contribution aims at validating this hypothetical mechanism by pointing out the favourable occurrence of an oxidation of NO to NO2 on the WOx and MoOx phases and by pointing out the higher efficiency of NO2 than O-2 to reoxidize the reduced VOx sites. In addition, the present contribution clearly demonstrates that, in the absence of NO, the chlorobenzene total oxidation occurred following the Mars-van Krevelen mechanism. Moreover, a thorough characterization of the oxidation state of the vanadium proving that the improvement of the catalyst activity brought by the simultaneous presence of NO and O-2 is linked to the stronger reoxidation of the VOx active phase. Furthermore, plotting all the catalytic activity data versus the mean vanadium oxidation level clearly depicts, for the first time, the strong dependence between them. Under a mean vanadium oxidation level of 4.82 the catalyst is inactive while above 4.87 the activity is stabilized at a high level of conversion independent of the vanadium oxidation level. (c) 2006 Elsevier B.V. All rights reserved.
机译:以前对NO存在下VOx / TiO2,VOx-WO / TiO2和VOx-MoOx / TiO2催化剂的氯苯燃烧活性的研究指出了NO的活化作用。仅基于催化性能数据建议的三步机理是:(1)氯苯在VOx相的表面被氧化(如Mars-van Krevelen所述),(2)NO被氧化为NO2,主要是在WOx和MoOx和(3)原位生成的NO2有助于O-2还原VOx相,从而加快了Mars-van Krevelen机制的氧化步骤。后者的作用在宏观上对应于所观察到的氯苯转化率的增加。这一贡献旨在通过指出在WOx和MoOx相上NO氧化为NO2的有利现象并指出NO2比O-2更高的效率来再氧化还原的VOx位置,来验证这种假设机制。另外,本发明清楚地表明,在不存在NO的情况下,氯苯的总氧化遵循Mars-van Krevelen机理发生。此外,钒的氧化态的全面表征证明了同时存在NO和O-2所带来的催化剂活性的提高与VOx活性相的更强的再氧化有关。此外,绘制所有催化活性数据与平均钒氧化水平的关系图,首次清楚地表明了它们之间的强烈依赖性。在平均钒氧化水平为4.82下,催化剂是惰性的,而在高于4.87时,活性稳定在高转化率上,而与钒氧化水平无关。 (c)2006 Elsevier B.V.保留所有权利。

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