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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >A comparative activity study of a new ultra-dispersed catalyst system for a hydrocracking/hydrotreating technology using vacuum residue oil: Merey/Mesa
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A comparative activity study of a new ultra-dispersed catalyst system for a hydrocracking/hydrotreating technology using vacuum residue oil: Merey/Mesa

机译:使用真空渣油的加氢裂化/加氢处理技术的新型超分散催化剂体系的比较活性研究:Merey / Mesa

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Ultra-dispersed catalysts give an improvement over the main reactions activity by having a low deactivation rate. They provide as well other advantages like a diminution in the catalysts metal concentration, a reduction in contaminants and also these catalysts can be used in almost every area where heterogeneous catalysts are used. Catalysts synthesis optimization is important to improve process recovery, especially in hydrocracking/hydrotreating processes, where feedstock is vacuum residue. Here, we have evaluated the catalytic performance of two molybdenum-nickel catalysts prepared using different emulsion formulation, named E-T (base catalyst) and AT-48 (new catalyst). Our results showed that, the percentage of converted products for VR 500 C~+, asphaltenes and microcarbon are comparable for both E-T and AT-48 catalysts, despite the fact that for the latter a lower molybdenum concentration was used. In addition, post-catalytic particles analyses using SEM and TEM techniques demonstrated that AT-48 catalyst showed a non-aggregated and homogeneous narrower distribution of metallic particles than E-T one. The lower average particle size distribution is related to the improvement of the liquid product yields for the hydroconversion of Mery/Mesa VR using the AT-48 catalyst.
机译:超分散的催化剂具有低的失活速率,从而改善了主要反应活性。它们还具有其他优点,例如减少了催化剂中的金属浓度,减少了污染物,而且这些催化剂几乎可以在使用多相催化剂的每个区域中使用。催化剂合成的优化对于提高工艺回收率非常重要,尤其是在加氢裂化/加氢处理工艺中,其中原料是减压渣油。在这里,我们评估了使用不同乳液配方制备的两种钼镍催化剂的催化性能,分别称为E-T(基础催化剂)和AT-48(新催化剂)。我们的结果表明,尽管E-T和AT-48催化剂使用了较低的钼浓度,但VR 500 C〜+,沥青质和微碳的转化产物百分数与E-T和AT-48催化剂相当。此外,使用SEM和TEM技术进行的催化后颗粒分析表明,AT-48催化剂比E-T催化剂显示出非聚集且均匀的窄金属颗粒分布。较低的平均粒度分布与使用AT-48催化剂进行Mery / Mesa VR加氢转化的液体产物收率的提高有关。

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