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Synthesis of highly ordered Al-Zr-SBA-16 composites and their application in dibenzothiophene hydrodesulfurization

机译:高度有序的Al-Zr-SBA-16复合材料的合成及其在二苯并噻吩加氢脱硫中的应用

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Serial Al-Zr-SBA-16 composites are successfully prepared through a two-step synthetic method. The influences of Al and Zr species on the properties of Al-Zr-SBA-16 composites and NiMo corresponding catalysts are investigated by various measurements. The results showed that a series of Al-Zr-SBA-16 supports maintained the intact structure and highly ordered degree. Al and Zr modification could increase the proportion of inactive Mo (Td) and Mo(Oh) species, respectively. The DBT HDS evaluation results revealed that NiMo/AZ-2.5 presented the highest HDS efficiency of 96.2%. The reasons should be ascribed to the factors that the higher dispersion degree of active metals, the highest proportion of MoS 2 and NiMoS active phases over NiMo/AZ-2.5 sulfide catalyst, and the highest selectivity of hydrogenation (HYD) route. In addition, principle of hierarchical reaction steps in HYD route was also proposed to explain the reason why the HYD/DDS (direct desulfurization) ratio and HDS efficiency were the highest for NiMo/AZ-2.5 catalyst. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过两步合成方法成功制备串联Al-Zr-SBA-16复合材料。通过各种测量研究了Al和Zr种类对Al-Zr-Sba-16复合材料和NiMO相应催化剂的性质的影响。结果表明,一系列Al-Zr-SBA-16支撑件保持完整结构和高度有序的程度。 Al和Zr改性可以分别增加无活性Mo(Td)和Mo(OH)物种的比例。 DBT HDS评估结果表明,Nimo / AZ-2.5呈现出96.2%的最高HDS效率。原因应归因于导致活性金属的较高分散度,最高比例的MOS 2和NimoS-2.5硫化物催化剂上的最高比例和Nimos活性相的因素,以及氢化(HYP)途径的最高选择性。此外,还提出了高分音符中的分层反应步骤的原理,以解释NiMO / AZ-2.5催化剂最高的HYP / DDS(直接脱硫)比和HDS效率最高的原因。 (c)2019年elestvier有限公司保留所有权利。

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