[1] |
LI Haidong, YANG Yuankun, GUO Shushu, WANG Benjin, YUE Tingting, FU Kaibin, WANG Zhe, HE Shouqin, YAO Jun, CHEN Shu.
Effect of carbonization and calcination temperature on As(Ⅲ) removal performance of plant-based Fe-C microelectrolytic materials
[J]. Chemical Industry and Engineering Progress, 2023, 42(7): 3652-3663.
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[2] |
KONG Qian, SUN Jinchao, GE Jiaqi, ZHANG Peng, MA Yanlong, LIU Baijun.
Effect of precipitant on the hydrocracking performance of NiW/TiO2-ASA catalyst
[J]. Chemical Industry and Engineering Progress, 2023, 42(1): 265-271.
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[3] |
HAN Jingjing, TAN Juan, LIU Jing, LIU Yu.
Controllable synthesis of small size ZSM-22 zeolites and their performance in the production of bio-jet fuel by hydrocracking and hydroisomerization of long-chain normal bio-paraffins
[J]. Chemical Industry and Engineering Progress, 2022, 41(4): 1916-1924.
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[4] |
ZANG Jiazhong, WANG Yinbin, HONG Luwei, YU Haibin, PENG Xiaowei, LI Chen, WANG Yang, GUO Chunlei.
Application of hydrocracking and hydroalkylation to enhance the value of C9 aromatics
[J]. Chemical Industry and Engineering Progress, 2021, 40(5): 2593-2602.
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[5] |
DU Yanze, QIN Bo, WANG Huigang, HAO Wenyue, GAO Hang, FANG Xiangchen.
Development of hierarchical zeolites in hydrocracking catalysts of heavy oil
[J]. Chemical Industry and Engineering Progress, 2021, 40(4): 1859-1867.
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[6] |
Ce XIAN, Yichao MAO, Xiangyun LONG, Ping YANG, Qinghe YANG.
Advances on the application of zeolite Y in the producing light aromatic hydrocarbons from dicyclic aromatics hydrocracking
[J]. Chemical Industry and Engineering Progress, 2020, 39(S1): 133-140.
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[7] |
Yu LIU, Juan TAN, Jing LIU, Huifeng WANG.
Production of bio-jet fuel by hydrocracking and hydroisomerization of long-chain normal bio-paraffins over Pt/ZSM-35 catalysts
[J]. Chemical Industry and Engineering Progress, 2020, 39(12): 5086-5094.
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[8] |
SONG Changcai, DENG Zhonghuo, NIU Chuanfeng.
Advances in production of chemicals such as light oilfins from heavy oil
[J]. Chemical Industry and Engineering Progress, 2019, 38(s1): 86-94.
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[9] |
HUANG Tangshun, WANG Zijun, ZHANG Shuhong, LIU Bixin, GUO Xin.
Research progress of kinetic modeling of hydrocracking of heavy oil
[J]. Chemical Industry and Engineering Progress, 2017, 36(S1): 149-154.
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[10] |
LI Zhonghua, XIAO Wu, HE Gaohong, DU Yanze, FANG Xiangchen, LUO Li.
Optimization and reformation of heat exchanger network for wax oil hydrocracking unit by pinch technology and exergy analysis
[J]. Chemical Industry and Engineering Progress, 2017, 36(04): 1231-1239.
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[11] |
REN Wenpo, LI Zhenyu, LI Xuejing, JIN Yuhao.
Application situation and new progress of residuum deep hydrocracking technologies
[J]. Chemical Industry and Engineering Progree, 2016, 35(08): 2309-2316.
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[12] |
YANG Xu, WANG Kun, XIAO Xiang, ZHOU Jing, SHI Bin, YAN Liexiang.
Operation optimization of hydrocracking reaction process based on rough set and intelligent visualization optimization method
[J]. Chemical Industry and Engineering Progree, 2016, 35(03): 722-726.
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[13] |
HU Xinyue, CHEN Ping, LIU Xuejun, LU Leigang, ZHANG Haiyan, LU Meizhen, YU Fengwen, JI Jianbing.
Production of liquid biofuels: Normal bio-alkane selective hydrocracking over Pt/ZSM-5 catalysts
[J]. Chemical Industry and Engineering Progree, 2015, 34(04): 1007-1013.
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[14] |
YANG Chao1,JIANG Jian1,LU Dan2,CAO Fahai1.
Advances in Fischer-Tropsch wax hydrocracking process
[J]. Chemical Industry and Engineering Progree, 2013, 32(12): 2882-2891.
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[15] |
DU Yanze,ZHANG Xiaoping,GUAN Minghua,FANG Xiangchen.
The domestic application status and growing trend of vacuum distillates hydrocracking technology
[J]. Chemical Industry and Engineering Progree, 2013, 32(10): 2523-2528.
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