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首页> 外文期刊>Catalysis in industry >A New Catalyst Modified with Nanosized Molybdenum Carbides for the Hydroisomerization of n-Alkanes and Its Catalytic Properties in the Hydroisomerization of Diesel Fractions, Part II: Preparation of Bifunctional Hydroisomerization Catalysts
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A New Catalyst Modified with Nanosized Molybdenum Carbides for the Hydroisomerization of n-Alkanes and Its Catalytic Properties in the Hydroisomerization of Diesel Fractions, Part II: Preparation of Bifunctional Hydroisomerization Catalysts

机译:用纳米型钼碳化物改性的新型催化剂,用于加氢异构化<重点型=“斜体”> N - 链烷基中的柴油级分的氢化物质中的催化性质,第二部分:双官能加氢异构化催化剂的制备

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The aim of this work is to develop a new hydroisomerization catalyst based on molybdenum carbides that is resistant to the influence of sulfur compounds and applicable for the synthesis of low-pour-point diesel fuels that are similar in parameters to the fuel synthesized using platinum-containing catalysts. In the first part of the work, supports with different porous structures and acidities (Beta, ZSM-5, ZSM-12, and SAPO-31) are synthesized and studied. In the second part of the work, bifunctional catalysts prepared by modifying these supports with nanosized molybdenum carbides are studied. All samples contain the same amount of Mo~(2)C (10% in terms of the equivalent amount of MoO~(3)). The catalysts are tested using a model isomerization reaction of n -decane. The catalyst based on silicoaluminophosphate ATO (SAPO-31) proves to be the most effective one. In order to optimize its composition, larger batches of samples with different Mo~(2)C contents (5, 7 and 10% in terms of the equivalent amount of MoO~(3)) are prepared. The catalytic properties are studied using the hydroisomerization of actual diesel fractions. The optimum content of Mo~(2)C (7 wt %) in the bifunctional catalyst is determined.
机译:这项工作的目的是通过耐氧化钼的碳化物进行新的加氢异构化催化剂,该碳化物是耐硫化合物的影响,并且适用于合成使用铂的燃料的参数中类似的参数中的低倾点柴油燃料。含有催化剂。在该工作的第一部分中,合成和研究具有不同多孔结构和酸性(β,ZSM-5,ZSM-12和SAPO-31)的支持。在该工作的第二部分中,研究了通过改变与纳米氧化钼碳化物的这些载体制备的双官能催化剂。所有样品含有相同量的Mo〜(2)C(在20%的MOO〜(3)的10%)。使用N-二烷的模型异构化反应测试催化剂。基于硅铝磷酸硅磷酸盐(SAPO-31)的催化剂被证明是最有效的。为了优化其组成,制备具有不同Mo〜(2)C含量的较大批次的样品(5,7和10%,就等于Moo〜(3))。使用实际柴油级分的加氢异构化研究催化性质。确定双官能催化剂中的Mo〜(2)C(7wt%)的最佳含量。

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