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In situ FCC gasoline sulfur reduction using spinel based additives

机译:使用尖晶石基添加剂现场还原FCC汽油中的硫

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ZnAl2O4, MgAl2O4, and CuAl2O4 based additives were prepared, characterized, and evaluated in micro activity test unit using heavy combined hydrocarbon feedstock at the fluid catalytic cracking (FCC) unit conditions to study the gasoline sulfur reduction. These additives were prepared at identical conditions and characterized by X-Ray Diffraction, NH3-TPD & N-2 sorption analysis to establish the spinel formation, acidity measurement and pore-size distribution respectively. The performance of these additives was studied along with base FCC catalyst at 10 weight percent concentration. Hydrogen transfer reaction, aromatization and alkylation functionalities were established to rank the prepared additives for their activity, selectivity, and gasoline sulfur removal efficiency. The sulfur shifting in other liquid products such as heavy naphtha, light cycle oil and clarified oil were also studied. While studying the gasoline sulfur removal efficiency of these additives, the research octane number (RON) of gasoline property has taken into consideration as the FCC gasoline contains lot of olefins (20-40 wt%), which involves in the sulfur removal reactions. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:制备,表征和表征了基于ZnAl2O4,MgAl2O4和CuAl2O4的添加剂,并在微活性测试装置中使用重质混合烃原料在流化催化裂化(FCC)装置条件下研究了汽油的硫还原反应。这些添加剂是在相同的条件下制备的,并通过X射线衍射,NH3-TPD和N-2吸附分析进行了表征,以分别确定尖晶石的形成,酸度测量和孔径分布。研究了这些添加剂的性能以及浓度为10重量%的基础FCC催化剂。建立了氢转移反应,芳构化和烷基化的功能,以按其活性,选择性和汽油脱硫效率对制备的添加剂进行排名。还研究了其他液体产品(例如重石脑油,轻循环油和澄清油)中的硫转移。在研究这些添加剂的汽油脱硫效率时,已考虑到汽油性能的研究辛烷值(RON),因为FCC汽油包含许多烯烃(20-40 wt%),这涉及脱硫反应。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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