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Content of sulfates and their stability: Key factors determining the catalytic activity of sulfated zirconia catalysts

机译:硫酸盐含量及其稳定性:决定硫酸化氧化锆催化剂催化活性的关键因素

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Two series of sulfated zirconia catalysts were synthesized from various precursors using mono- or multi-step sequence preparations under laboratory conditions. Their activities/selectivities in the isomerization reaction of n-hexane were correlated to their textural, structural and morphological properties. The slightly higher activity of a commercially sulfated Zr(OH)4-based catalyst is in agreement with the differences in the content of SO24 - ions and their thermal stability, textural and structural properties, i.e., crystallite size and possible imperfection of the incorporation of sulfate groups in the multi-step synthesis of the catalyst having a nitrate origin. The employment of H2 as the carrier gas resulted in no catalytic activity, regardless of the catalyst precursor, preparation method and calcination temperature. When the isomerization reaction was performed under He, the relatively short life-times of all catalyst samples were caused by fast deactivation due to coking in the absence of H2. .
机译:在实验室条件下,使用单步或多步序列制备方法,从各种前体中合成了两个系列的硫酸化氧化锆催化剂。它们在正己烷异构化反应中的活性/选择性与其结构,结构和形态特性有关。商业化硫酸盐化的Zr(OH)4基催化剂的活性稍高,这与SO24-离子含量及其热稳定性,结构和结构特性(即微晶尺寸和掺入的不纯物)的差异相符。具有硝酸盐来源的催化剂的多步合成中的硫酸根基团。不论催化剂前体,制备方法和煅烧温度如何,使用H2作为载气均没有催化活性。当在He下进行异构化反应时,所有催化剂样品的相对较短的寿命是由于在不存在H2的情况下发生焦化而导致的快速失活引起的。 。

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