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焦化汽柴油加氢捕硅剂的制备及性能评价

杨国明 王连英 刘孝川 韩龙年 张海洪 王宁

石油与天然气化工2024,Vol.53Issue(2):23-27,5.
石油与天然气化工2024,Vol.53Issue(2):23-27,5.DOI:10.3969/j.issn.1007-3426.2024.02.004

焦化汽柴油加氢捕硅剂的制备及性能评价

Preparation and performance evaluation of hydrogenated silicon trap catalyst for coking gasoline and diesel

杨国明 1王连英 1刘孝川 2韩龙年 1张海洪 1王宁1

作者信息

  • 1. 中海油化工与新材料科学研究院
  • 2. 中海油惠州石化有限公司
  • 折叠

摘要

Abstract

Objective The aim is to remove organic silicon compounds in coking gasoline and diesel fractions and protect the catalysts from silicon poisoning.Methods The hydrogenated silicon trap catalyst was prepared by using pseudo-boehmite powder as the carrier materials and Ni-Mo as the active metal components by the equal volume impregnation process,and the catalyst was characterized by using N2 adsorption-desorption,X-ray diffraction,pyridine infrared spectroscopy,scanning electron microscopy.The desilication activity and 2 000 h activity stability of the silicon trap catalyst were investigated on a 200 mL hydrogenation pilot device.Results The self-developed silicon trap catalyst had a high specific surface and pore volume and suitable acidity,with uniform distribution of active metals and strength meeting the loading requirements of industrial units.The silicon trap catalyst had high desilication activity.Under typical industrial conditions,the desilication rate was greater than 90%.During the 2 000 h activity stability test,the desilication rate was greater than 90%steadily,indicating good activity stability and high silicon capacity.Conclusions The self-developed silicon trap catalyst has broad industrial application prospects and is of great significance for clean fuel production and long-term stable operation of the units.

关键词

焦化汽柴油/加氢捕硅剂/脱硅/物性分析/中试装置

Key words

coking gasoline and diesel/hydrogenated silicon trap catalyst/desilication/property analysis/pilot device

引用本文复制引用

杨国明,王连英,刘孝川,韩龙年,张海洪,王宁..焦化汽柴油加氢捕硅剂的制备及性能评价[J].石油与天然气化工,2024,53(2):23-27,5.

基金项目

中海石油炼化有限责任公司科技项目"焦化汽柴油加氢捕硅和精制催化剂的开发及评价"(LHTISA20200016) (LHTISA20200016)

石油与天然气化工

OA北大核心

1007-3426

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