Zhao Jinchong, Zhang Lulu, She Nannan, Liu Yunqi, Chai Yongming, Liu Chenguang
State Key Laboratory of Heavy Oil Processing, Key Laboratory of Catalysis CNPC, China University of Petroleum, Qingdao, 266580 Shandong China.
Appl Petrochem Res. 2014;4(4):359-365. doi: 10.1007/s13203-014-0072-z. Epub 2014 Jul 19.
A compound catalyst (RA) consisted of Ni, ZnO and HZSM-5 with functions of reactive adsorption desulfurization (RADS) and olefin aromatization for fluid catalytic cracking (FCC) gasoline upgrading was prepared. X-ray powder diffraction (XRD), temperature-programmed reduction and low-temperature N adsorption were used to characterize the properties of the catalysts. Performance evaluation by FCC gasoline was carried out, and the result showed that the catalyst RA performed well in desulfurization and aromatization. For comparison, RADS catalyst (represented by DS) consisted of Ni and ZnO and aromatization catalyst (represented by Ar) consisted of HZSM-5 were prepared, respectively. They were combined in different ways to help investigating interaction between Ni and HZSM-5. Performance evaluated by FCC gasoline showed that catalyst RA performed best in desulfurization with a slight octane number loss. Interaction between Ni and HZSM-5 is a significant factor which influences the performance of the catalyst.
制备了一种由镍、氧化锌和HZSM-5组成的复合催化剂(RA),其具有反应吸附脱硫(RADS)功能以及用于流化催化裂化(FCC)汽油提质的烯烃芳构化功能。采用X射线粉末衍射(XRD)、程序升温还原和低温氮吸附对催化剂的性能进行了表征。对FCC汽油进行了性能评价,结果表明催化剂RA在脱硫和芳构化方面表现良好。为了进行比较,分别制备了以镍和氧化锌为组分的RADS催化剂(以DS表示)以及以HZSM-5为组分的芳构化催化剂(以Ar表示)。将它们以不同方式组合以有助于研究镍与HZSM-5之间的相互作用。通过FCC汽油进行的性能评价表明,催化剂RA在脱硫方面表现最佳,但辛烷值略有损失。镍与HZSM-5之间的相互作用是影响催化剂性能的一个重要因素。