Oxidative desulfurization of refinery diesel pool fractions using LaVO4 photocatalyst

被引:59
作者
Shafiq, Iqrash [1 ,2 ]
Hussain, Murid [1 ]
Shafique, Sumeer [1 ]
Rashid, Ruhma [3 ]
Akhter, Parveen [4 ]
Ahmed, Ashfaq [1 ,5 ]
Jeon, Jong-Ki [6 ]
Park, Young-Kwon [5 ]
机构
[1] COMSATS Univ Islamabad, Dept Chem Engn, Lahore Campus,Def Rd,Off Raiwind Rd, Lahore 54000, Pakistan
[2] Pak Arab Refinery Ltd Co PARCO, Refinery Div, Korangi Creek Rd, Karachi 75190, Pakistan
[3] COMSATS Univ Islamabad, Dept Chem, Lahore Campus,Def Rd,Off Raiwind Rd, Lahore 54000, Pakistan
[4] Univ Lahore, Dept Chem, 1 Km Def Rd,Off Raiwind Rd, Lahore 54000, Pakistan
[5] Univ Seoul, Sch Environm Engn, Seoul 02504, South Korea
[6] Kongju Natl Univ, Dept Chem Engn, Cheonan 31081, South Korea
关键词
LaVO4; photocatalyst; Visible-light photocatalysis; Diesel oil blend; Photocatalytic desulfurization; HETEROJUNCTION; FUELS; DENITROGENATION; DEGRADATION; THIOPHENE; TIO2;
D O I
10.1016/j.jiec.2021.03.040
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Oxidative desulfurization (ODS) is a swiftly rising organosulfur compounds eradicating system, effective enough at a mild temperature and pressure, overwhelming the necessity of costly hydrogen in the traditional HDS systems. In this study, pure LaVO4 photocatalyst was prepared using the hydrothermal approach and employed for deep oxidative desulfurization application in the aerobic environment under visible-light irradiations. The as-prepared photocatalyst semiconductor material was characterized by FTIR, SEM, UV-vis DRS and Raman analyses. The examined photocatalyst presented a narrow bandgap, a small particle size, high photo-responsive monoclinic phase, high light photons capturability, plenteous active sites accessibility and reduced recombination of photogenerated charge carriers, ensuing a good visible-light-driven deep oxidative desulfurization ability. The photocatalytic material was tested for its performance over different petroleum refinery diesel pool fraction streams including hydrodesulfuriza-tion unit diesel rundown, mild hydrocracking unit rundown gas oil, heavy kerosene oil and the ultimate diesel oil blend, containing organosulfur compounds ranging from disulfides to the stringent organosulfur compounds, with the quantity lying between 57 and 863 ppm. The kinetic study was found in agreement with the pseudo-first-order kinetics. The conceivable desulfurization mechanism was also anticipated. Moreover, the recyclability of the photocatalytic material was also discussed. (C) 2021 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:283 / 288
页数:6
相关论文
共 32 条
[21]   Efficient catalyst development for deep aerobic photocatalytic oxidative desulfurization: recent advances, confines, and outlooks [J].
Shafiq, Iqrash ;
Shafique, Sumeer ;
Akhter, Parveen ;
Abbas, Ghulam ;
Qurashi, Ahsanulhaq ;
Hussain, Murid .
CATALYSIS REVIEWS-SCIENCE AND ENGINEERING, 2022, 64 (04) :789-834
[22]   Recent developments in alumina supported hydrodesulfurization catalysts for the production of sulfur-free refinery products: A technical review [J].
Shafiq, Iqrash ;
Shafique, Sumeer ;
Akhter, Parveen ;
Yang, Wenshu ;
Hussain, Murid .
CATALYSIS REVIEWS-SCIENCE AND ENGINEERING, 2022, 64 (01) :1-86
[23]   The effect of crystal facets and induced porosity on the performance of monoclinic BiVO4 for the enhanced visible-light driven photocatalytic abatement of methylene blue [J].
Shafiq, Iqrash ;
Hussain, Murid ;
Shehzad, Nasir ;
Maafa, Ibrahim M. ;
Akhter, Parveen ;
Amjad, Um-E-salma ;
Shafique, Sumeer ;
Razzaq, Abdul ;
Yang, Wenshu ;
Tahir, Muhammad ;
Russo, Nunzio .
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2019, 7 (04)
[24]   Desulfurization from thiophene by SO42-/ZrO2 catalytic oxidation at room temperature and atmospheric pressure [J].
Wang, Bo ;
Zhu, Jianpeng ;
Ma, Hongzhu .
JOURNAL OF HAZARDOUS MATERIALS, 2009, 164 (01) :256-264
[25]   Graphene oxide-modified LaVO4 nanocomposites with enhanced photocatalytic degradation efficiency of antibiotics [J].
Xu, Yuanguo ;
Liu, Jie ;
Xie, Meng ;
Jing, Liquan ;
Yan, Jia ;
Deng, Jiujun ;
Xu, Hui ;
Li, Huaming ;
Xie, Jimin .
INORGANIC CHEMISTRY FRONTIERS, 2018, 5 (11) :2818-2828
[26]   Quantitative risk assessment of an amine-based CO2capture process [J].
You, Chanhee ;
Kim, Jiyong .
KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2020, 37 (10) :1649-1659
[27]   Synthesis of four-angle star-like CoAl-MMO/BiVO4 p-n heterojunction and its application in photocatalytic desulfurization [J].
Yun, Limin ;
Yang, Zhanxu ;
Yu, Zong-Bao ;
Cai, Tianfeng ;
Li, Yue ;
Guo, Changyou ;
Qi, Chengyuan ;
Ren, Tieqiang .
RSC ADVANCES, 2017, 7 (41) :25455-25460
[28]   Deep desulfurization of liquid fuels with molecular oxygen through graphene photocatalytic oxidation [J].
Zeng, Xingye ;
Xiao, Xinyan ;
Li, Yang ;
Chen, Jiayi ;
Wang, Hanlu .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2017, 209 :98-109
[29]   In situ hydrothermal preparation and photocatalytic desulfurization performance of metallophthalocyanine sensitized SnO2 [J].
Zhang, Gai ;
Ren, Jingjing ;
Liu, Bulei ;
Tian, Min ;
Zhou, Hongwei ;
Zhao, Jianshe .
INORGANICA CHIMICA ACTA, 2018, 471 :782-787
[30]   Photocatalytic oxidative desulfurization and denitrogenation of fuels over sodium doped graphitic carbon nitride nanosheets under visible light irradiation [J].
Zhang, Xibiao ;
Song, Haiyan ;
Sun, Caiying ;
Chen, Chunxia ;
Han, Fuqin ;
Li, Xiangfei .
MATERIALS CHEMISTRY AND PHYSICS, 2019, 226 :34-43