详细信息
分子筛孔结构对正己烷催化裂解性能的影响
STUDY ON INFLUENCE OF ZEOLITE PORE STRUCTURE ON CATALYTIC CRACKING OF n-HEXANE
文献类型:期刊文献
中文题名:分子筛孔结构对正己烷催化裂解性能的影响
英文题名:STUDY ON INFLUENCE OF ZEOLITE PORE STRUCTURE ON CATALYTIC CRACKING OF n-HEXANE
作者:冯敏超[1];周晓龙[1];李承烈[1];赵基钢[1]
机构:[1]华东理工大学石油加工研究所,上海200237
年份:2017
卷号:48
期号:8
起止页码:68
中文期刊名:石油炼制与化工
外文期刊名:Petroleum Processing and Petrochemicals
收录:CSTPCD;;Scopus;北大核心:【北大核心2014】;CSCD:【CSCD_E2017_2018】;
基金:国家高技术研究发展计划"863"项目(2012AA040306)
语种:中文
中文关键词:孔结构;正己烷;催化裂解;低碳烯烃
外文关键词:pore structure ; n-hexane ; catalytic cracking ; light olefin
摘要:采用小型固定床实验装置考察了正己烷在4种分子筛上的催化裂解反应性能。结果表明:孔结构对正己烷催化裂解产物分布和积炭失活有着显著的影响;在所考察的4种分子筛中,孔径越小,越有利于单分子裂解,越不利于氢转移反应,乙烯和丙烯的选择性越高;ZSM-35上乙烯和丙烯的初始选择性虽然最高,但其积炭失活较严重,而ZSM-5分子筛表现出了较好的低碳烯烃选择性和抗积炭性,其双烯选择性为45.06%,且反应4h后转化率仅下降4%左右。
Catalytic cracking of n-hexane was conducted in a fixed-bed reactor on four zeolites with different pore structures. The results show that pore structures of zeolites play significant roles in product distribution and deactivation of catalyst due to carbon deposition and that the smaller the pore size of the zeolite,the more conducive to the monomolecular cracking, the higher the selectivity of ethylene and propylene, due to a suppression of the hydrogen transfer reaction. The highest initial selectivity of ethyl- ene and propene are gained on ZSM-35,but it is rapidly inactivated,while the ZSM-5 exhibits better se- lectivity(ethylene and propylene of 45.06 %)and anti-carbon deposition ability among these zeolites. The reduction of conversion is only about 4 % after 4 h.
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