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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Oxidative dehydrogenation of i-butane over nanostructured silica-supported NiMoO4 catalysts with low content of active phase
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Oxidative dehydrogenation of i-butane over nanostructured silica-supported NiMoO4 catalysts with low content of active phase

机译:活性低的纳米二氧化硅负载的NiMoO4催化剂对异丁烷的氧化脱氢

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摘要

NiMoO4 silica-supported samples (6.5% w/w) were prepared by coprecipitation technique. In order to study the influence of the surface area of the support material, silicas with different surface areas have been used: Durosil (60 m(2)/g) and Sipernat 22 (190 m(2)/g) from Degussa and silica prepared in the laboratory (590 m(2)/g). Nanosized grains of beta-NiMoO4 phase were obtained for all the prepared samples. The crystallinity of the active phase (mixed oxide) depends on the nature of the support material. The laboratory-made silica allowed reaching the highest degree of nanocrystallinity (observed by TEM) for the active phase. Results from TPR and ITR show that the sample reducibility depends on the size and crystallinity of the dispersed active phase. All the prepared samples were more reducible than the unsupported NiMoO4 sample due to the presence of P-phase instead alpha-NiMoO4 phase. In the tested conditions the sample prepared using the silica with the highest surface area displays the highest i-butane conversion, the highest i-butene selectivity and the lowest selectivity towards deep oxidation products. (c) 2005 Elsevier B.V. All rights reserved.
机译:通过共沉淀技术制备了NiMoO4二氧化硅负载的样品(6.5%w / w)。为了研究载体材料表面积的影响,使用了具有不同表面积的二氧化硅:来自德固赛公司的Durosil(60 m(2)/ g)和Sipernat 22(190 m(2)/ g)和二氧化硅在实验室中制备(590 m(2)/ g)。对于所有制备的样品,获得了纳米尺寸的β-NiMoO4相。活性相(混合氧化物)的结晶度取决于载体材料的性质。实验室制得的二氧化硅可使活性相达到最高的纳米结晶度(通过TEM观察)。 TPR和ITR的结果表明,样品的还原性取决于分散的活性相的大小和结晶度。由于存在P相而不是α-NiMoO4相,因此所有制备的样品都比不支持的NiMoO4样品具有更高的还原性。在测试条件下,使用表面积最大的二氧化硅制备的样品显示出最高的异丁烷转化率,最高的异丁烯选择性和最低的对深度氧化产物的选择性。 (c)2005 Elsevier B.V.保留所有权利。

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