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NiO/ZnO-TiO吸附剂上具有高穿透硫容量的流化催化裂化轻汽油深度吸附脱硫

Deep Adsorption Desulfurization of Fluid Catalytic Cracking Light Gasoline on NiO/ZnO-TiO Adsorbents with a High Breakthrough Sulfur Capacity.

作者信息

Zhou Guanglin, Chen Sheng, Jiang Weili, Li Qin, Zhou Hongjun, Gong Xuecheng, Zhang Xiance

机构信息

College of New Energy and Materials, State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, China.

出版信息

ACS Omega. 2022 Mar 27;7(13):11068-11074. doi: 10.1021/acsomega.1c06645. eCollection 2022 Apr 5.

Abstract

Two kinds of NiO/ZnO-TiO adsorbents were prepared by equal volume impregnation (NiO/ZnO-TiO-) and kneading (NiO/ZnO-TiO-) methods. The adsorbents were characterized by X-ray diffraction, mercury intrusion porosimetry, scanning electron microscopy, energy dispersive X-ray spectroscopy, H temperature-programmed reduction, and H temperature-programmed desorption. It was found that NiO/ZnO-TiO- had a smaller average pore diameter and a larger specific surface area as well as a more uniform distribution of the nickel element. Additionally, more Ni active sites together with a stronger interaction between the active component and the support were detected on the surface of NiO/ZnO-TiO-, which was beneficial to the inhibition of olefin saturation during desulfurization. The desulfurization performance of the adsorbents was investigated in a fixed bed reactor with fluid catalytic cracking light gasoline as a feed oil. The evaluation results confirmed NiO/ZnO-TiO- with a better desulfurization performance with less olefin saturation. It could reduce the total sulfur content from 300 ppmw to less than 5 ppmw, and the breakthrough time and breakthrough sulfur capacity were 91 h and 6.71% (67.1 mg S/g adsorbent), respectively.

摘要

采用等体积浸渍法(NiO/ZnO-TiO-)和捏合法(NiO/ZnO-TiO-)制备了两种NiO/ZnO-TiO吸附剂。通过X射线衍射、压汞法、扫描电子显微镜、能量色散X射线光谱、H程序升温还原和H程序升温脱附对吸附剂进行了表征。结果表明,NiO/ZnO-TiO-的平均孔径较小,比表面积较大,镍元素分布更均匀。此外,在NiO/ZnO-TiO-表面检测到更多的Ni活性位点以及活性组分与载体之间更强的相互作用,这有利于抑制脱硫过程中的烯烃饱和。以流化催化裂化轻汽油为原料油,在固定床反应器中考察了吸附剂的脱硫性能。评价结果证实,NiO/ZnO-TiO-具有较好的脱硫性能,烯烃饱和程度较低。它可以将总硫含量从300 ppmw降低到5 ppmw以下,穿透时间和穿透硫容量分别为91 h和6.71%(67.1 mg S/g吸附剂)。

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