Testing conditions for CoMo HDS catalyst in the kinetic region: integrated approach using the math calculations and catalytic experiments

Q4 Materials Science
P. P. Mukhacheva, Yuliya V. Vatutina, I. Mik, K. Nadeina, M. O. Kazakov, O. P. Klenov, O. Klimov, A. Noskov
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引用次数: 0

Abstract

The main idea of the investigation was to define testing parameters with the lowest influence of internal and external diffusion on catalytic activity in hydrodesulfurization of dibenzothiophene. Traditional experimental methods were used to determine the conditions for the influence of internal and external diffusion. Simultaneous change of a linear feedstock rate and a catalyst loading at constant weight hour space velocity were used to determine the process temperature (240–260 °C) at which the impact of external diffusion is minimal. Catalytic tests, including the variation of the catalyst fraction size, were carried out to define the conditions with the lowest influence of internal diffusion. It was found that when the catalyst with the fraction size of 0.1–0.25 mm was used, the fluctuation of sulfur conversion was the smallest. Besides, to validate experimental results, the calculations were performed with mass balance equations and expressions used for HDS modeling. The resulting data and catalytic experiments demonstrated that the lowest influence of internal and external diffusion is achieved at a temperature process less than 260 °C and a catalyst fraction of 0.1–0.25 mm.
CoMo HDS催化剂动力学区测试条件:数学计算与催化实验相结合的方法
研究的主要思想是确定内部和外部扩散对二苯并噻吩加氢脱硫催化活性影响最小的测试参数。采用传统的实验方法来确定内外扩散影响的条件。线性进料速率和催化剂负载在恒定重量小时空速下的同时变化用于确定外部扩散影响最小的工艺温度(240–260°C)。进行催化试验,包括催化剂馏分大小的变化,以确定内部扩散影响最小的条件。研究发现,当使用粒径为0.1–0.25 mm的催化剂时,硫转化率的波动最小。此外,为了验证实验结果,使用用于HDS建模的质量平衡方程和表达式进行了计算。所得数据和催化实验表明,在低于260°C的温度过程和0.1–0.25 mm的催化剂分数下,内部和外部扩散的影响最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chimica Techno Acta
Chimica Techno Acta Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
67
审稿时长
4 weeks
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