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    刘计省

    发布日期:2024年02月29日 11:35 点击:

    副教授/硕士生导师

    E-mail: jxliu0804@ujs.edu.cn/18832036687

    刘计省,江苏大学副教授,硕士生导师,中国石油大学(北京)博士,田纳西大学/美国橡树岭国家实验室博士后。长期致力于多孔材料的设计、制备及其在油品(石脑油、甘油)升级及固定源烟气净化方面的研究工作。迄今为止,以第一及通讯作者身份在AIChE Journal、Chemical Engineering Science、Environmental Science & Technology、ACS Catalysis等期刊发表SCI论文50余篇。

    研究方向:

    1. 固定源烟气NOx与VOCs协同净化催化剂设计与研发

    2. 石脑油正构/异构化分子筛催化剂设计与反应机制研究

    3. 甘油加氢制备1,3-丙二醇分子筛限域Cu基分子筛催化剂设计

    学术兼职:

    中国稀土学会催化专业委员会委员

    中国化学学会会员、中国化工学会会员

    催化科学与技术期刊编委

    eScience青年编委

    Rare Metals青年编委

    Scientific Reports编委

    Engineered Science青年编委

    Advanced Powder Materials青年编委

    Chinese Journal of Structural Chemistry青年编委

    Journal of Fuel Chemistry and Technology青年编委

    在研科研项目

    1. 中石化石科院横向课题(2024.11-2026.10);

    2. 国家重点研发计划(2024.10-2028.12);

    3. 广东省自然科学基金面上项目(2024.01-2026.12);

    4. 重质油全国重点实验室开放基金(2024.10-2026.09);

    代表性论文

    2026年

    [1] Hua Mingqing, Yan Ying, Zhang Senqi, Liang Shuqin, Li Jiacheng,* Cheng Huifang, Huang Yan, Liu Jixing,* Zhu Wenshuai,* Enhanced Tetracycline Hydrochloride Adsorption from Wastewater by Magnesium-Copper-Iron Layered Double Hydroxide, Eng. Sci., 2026, 39, 2041.

    [2] Cheng Huifang, Zhang Ziteng, Liu Junhao, Fu Xiaoqi, Cheng Kai,* Dai Chunyan,* Hua Mingqing, Li Jiacheng,* Li Huaming, Liu Jixing,* Transition-metal-driven CeWOx for efficient low-temperature selective catalytic reduction of NOx, Chem. Eng. Sci., 2026, 326, 123592.

    2025年

    [1] Liu Jixing,* Liu Yufeng, Wang Yan, Zhang Wenfang, Liang Shuqin, You Feng, Cheng Huifang,* Zheng Peng,* Wu Peiwen, Liu Jian, Zhu Wenshuai*, Regulating the Electron Affinity of NiMo/Al2O3 to Enhance Ultra-deep Hydrodesulfurization of Diesel, Appl. Catal. B-Environ. Energy, 2025, 337, 125565.

    [2] Zhu Jingyi, Jin Chao, Duan Yongjian, Zhu Linhua,* Liu Junhao, Cheng Kai,* Cheng Huifang,* Liu Feng, Li Huaming, Liu Jixing,* Fe-Triggered Mn-mullite oxides for Efficient Low-Temperature Reduction of Nitrogen Oxides: Insights into the structure-activity relationship, Appl. Catal. B-Environ. Energy, 2025, 366, 125028.

    [3] Liu Junhao, Pan Yu, Duan Yongjian, Liang Shuqin, Cheng Huifang,* Hua Mingqing, Dai Xiaohui, Liu Feng, Li Huaming, Liu Jixing,* Fe1-yMnyZr4Ox solid solution for efficient low-temperature selective catalytic reduction of NOx, Chem. Eng. Sci., 2025, 313, 121750.

    [4] Wang Yan, Luan Hao, Gong Jiahong, Hua Mingqing,* Wu Peiwen, Cheng Huifang, Huang Yan, Liu Hui, Liu Jixing,* Zhu Wenshuai,* Mechanochemical driven Oxidative Desulfurization of High-Sulfur Petroleum Coke over [Bpy]PMoVn Coupled with Amide-Based Binary Deep Eutectic Solvents, Chem. Eng. Sci., 2025, 304, 121021.

    [5] Zhou Shuhui, Pan Yu, Wang Yan, Liang Shuqin, Cheng Huifang,* Huang Yan, Yang Pengfei, Hua Mingqing, Zhu Wenshuai,* Liu Jixing,* Structure-reactivity relationship of Fe-triggered NiMoS active phase for ultradeep hydrodesulfurization of diesel, Chem. Eng. Sci., 2025, 317, 122071.

    [6] Cheng Huifang, Wu Yang, Shao Shijia, Liang Shuqin, You Feng, Wu Huadong,* Huang Yan, Wu Peiwen, Zhu Wenshuai,* Liu Jixing,* Regulating the metal-support interaction of MoO3/LaTiOx to enhance ultra-deep aerobic oxidative desulfurization of diesel, Chem. Eng. J., 2025, 519, 165375.

    [7] Liu Junhao, Zhu Jingyi, Yan Ying, Cheng Huifang,* Zheng Huiling,* Wang Yun,* Li Huaming, Liu Jian, Liu Jixing,* Regulating A-site elements to boost ultra-low-temperature selective catalytic reduction of NOx on AFeMnO5 catalysts, Chem. Eng. J., 2025, 526, 171396.

    [8] Zhang Ziteng, Feng Junlong, Jin Chao, Liu Junhao, Zhu Jingyi, Cheng Kai,* Cheng Huifang,* Liu Feng, Li Huaming, Liu Jixing,* Highly efficient Ce0.8WyMn0.2-yOx oxides for Low-Temperature Reduction of Nitrogen Oxides: Balance of acidity and reducibility, Sep. Purif. Technol., 2025, 360, 131218.

    [9] Liu Junhao, Shao Yuankai, li Zhenguo,* Li Kaixiang, Ren Xiaoning, Cheng Huifang,* Yang Pengfei, Li Huaming, Dai Chunyan,* Liu Jixing,* Facile synthesis of MnZryOx solid solutions for enhanced low-temperature selective catalytic reduction of NOx, Sep. Purif. Technol., 2025, 377, 134303.

    [10] Han Wei, Gao Yang, Zhou Shuhui, Long Xiangyun, Liu Jixing,* Hong Nie,* A novel and facile strategy for the preparation of highly reactive NiMo/γ-Al2O3 hydrodesulfurization catalyst, Sep. Purif. Technol., 2025, 359, 130685.

    [11] Hua Mingqing, Gong Jiahong, Wang Yan, Lu Shichao,* Wu Peiwen, Cheng Huifang, Huang Yan, Liu Jixing,* Zhu Wenshuai,* Mechanochemistry assisted oxidative desulfurization of high-sulfur petroleum coke over HPMo coupled binary deep eutectic solvent, Sep. Purif. Technol., 2025, 356, 129882.

    [12] Shen Yuge, Qiao Liang, Zhang Zhenli, Gao Shanbin,* Han Yang, Liu Jixing,* Jian Liu, Synthesis, structure, and acidity regulation of ZSM-12 zeolite in alkane isomerization, Fuel, 2025, 380, 133221.

    [13] Jia Lingfeng, Liu Jixing,* Cheng Huifang, Zhao Zhen, Liu Jian,* Review of Core-shell structure zeolite-based catalysts for NOx emission control, J. Environ. Sci., 2025, 150, 451-465.

    [14] Li Fengxin, Wang Yan, Li Fumin, Hua Mingqing,* Huang Yan, Cheng Huifang, Wu Haibo, Li Jiacheng,* Liu Jixing,* Efficient oxidative desulfurization of high-sulfur petroleum coke over polyoxometalates HPA coupled CeO2, Surf. Interfaces, 2025, 70, 106821.

    [15] Zhang Wenfang, Shen Yuge, Li Fumin, Hua Mingqing,* Wu Peiwen, Cheng Huifang, Liu Hui, HuangYan, Li Jiacheng,* Liu Jixing,* Zhu Wenshuai,* Effective oxidative desulfurization of high-sulfur petroleum coke over 4A zeolite reinforced Mo@CeO2, Surf. Interfaces, 2025, 72, 107137.

    [16] Zhang Fengren, Yan Ying, Liu Feng,* Wu Yang, Liang Shuqin, Cheng Huifang, Han Shanlei,* Liu Jixing,* Zhu Wenshuai,* Regulating the Fe/Mo ratio of FeMoOx/LaTiOy to boost aerobic oxidative desulfurization of diesel, J. Fuel Chem. Technol., 2025, 53 (8), 1255-1268.

    [17] Hua Mingqing, Hu Jinghua, Zhang Senqi, Li Fengxin, Liang Shuqin, Xu Jundong, Cheng Huifang, Huang Yan, Liu Jixing,* Zhu Wenshuai,* Mo-Doped CuAl-Layered Double Hydroxide for High-Efficiency Adsorption of Tetracycline Hydrochloride in Wastewater, Environ. Res., 2025, 286, 122918.

    [18] Huang Yanan, Xie Wenjing, Li Jia, Liu Jixing,* Chen Hao,* Fabrication of MoS2/h-BN Heterojunctions to Tune Interfacial Electronic Properties for Enhanced Oxidative Desulfurization, Ind, Eng. Chem. Res., 2025, 64, 19525-19533.

    [19] Zhang Ziteng, Xia Wangzhe, Yan Ying, Liu Junhao, Cheng Huifang,* Cheng Kai,* Liu Jixing,* Regulating the interface of Fe-SSZ-13/CeWMnOx coupling catalyst for selective catalytic reduction of NOx, J. Ind. Eng. Chem., 2025. https://doi.org/10.1016/j.jiec.2025.11.013

    2024年

    [1] Jia Lingfeng, Zhang Li, Liu Bing,* Cheng Huifang, Li Huiquan, Zhao Zhen, Zhu Wenshuai, Song Weiyu, Liu Jian,* Liu Jixing,* Interface Induced by Hydrothermal Aging Boosts the Low Temperature Activity of Cu-SSZ-13 for Selective Catalytic Reduction of NOx, Environ. Sci. Technol., 2024, 58, 15038-15051.

    [2] Wang Yan, Hua Mingqing, Zhou Shuhui, Hu Damin, Liu Feng, Cheng Huifang, Wu Peiwen, Wu Haibo, Liu Jixing,* Zhu Wenshuai,*ÜRegulating the coordination environment of surface alumina on NiMo/Al2O3 to enhance ultra-deep hydrodesulfurization of diesel, Appl. Catal. B-Environ. Energy, 2024, 357, 124265.

    [3] Shao Shijia, Liu Hui,* Wang Xiangdong, Jia Lingfeng, Zhou Shuhui, Huang Yan, Cheng Huifang, Liu Feng, Wang Yun,* Liu Jixing,* Zhu Wenshuai,* Unveiling the structure-performance of MoO3/La2O2CO3 for ultra-deep aerobic oxidative desulfurization of diesel, Chem. Eng. J., 2024, 495, 153654.

    [4] Zhou Shuhui, Wu Zejian, Liu Jixing,* Wang Yan, Shao Shijia, Liu Feng, Cheng Huifang,* Liu Hui, Li Huaming, Wenshuai Zhu,* Modifying the active phase structure of Ni2P/Al2O3 by Ga introduction for improved hydrodesulfurization of diesel, Chem. Eng. J., 2024, 479, 147776.

    [5] Zhou Shuhui, Liu Yuanchen, Zhu Jingyi, Liu Feng, Cheng Kai,* Cheng Huifang, Cheng Ying,* Li Huaming, Liu Jixing,* Zhu Wenshuai,* Modulating hydrogen spillover effect to boost ultradeep hydrodesulfurization of 4,6-dimethyldibenzothiophene over Pt-Ni2P/Al2O3, Sep. Purif. Technol., 2024, 351, 128095.

    [6] Zhou Shuhui, Liu Junhao, Liu Feng, Cheng Kai,* Cheng Huifang, Hu Mingqing, Liu Hui, Liu Jixing,* Zhu Wenshuai,* Tailoring the electronic structure of Ni2P/Al2O3 by Pt introduction to boost the ultradeep hydrodesulfurization performance, Fuel, 2024, 371, 131921.

    [7] Wang Jiachen, He Ning, Zhang Yanxue, Chang Yuan, Liu Chunyan, Jiang Xiangmei, Xie Hongbin, Chen Shaoyun, Liu Jixing,* Gao Junfeng,* Zhu Wenshuai, Liu Jiaxu,* Enhancing the sulfur resistance of Mn/HZSM-5 catalyst for selective catalytic reduction of NOx by coupling the adsorbent, Fuel, 2024, 375, 132594.

    [8] Zhu Jingyi, Shao Yuankai, li Zhenguo,* Li Kaixiang, Ren Xiaoning, Jia Lingfeng, Li Huiquan,* Cheng Huifang,* Liu Jian, Liu Jixing,* Modulating the acidity and reducibility of FeMn/TiO2 to boost the low-temperature selective catalytic reduction of NOx, Fuel, 2024, 366, 131316.

    [9] Jia Lingfeng, Shao Yuankai, Li Zhenguo, Li Kaixiang, Ren Xiaoning, Wu Hanming, Cheng Kai, Li Huiquan, Cheng Huifang, Liu Jian,* Liu Jixing,* Atomically Dispersed Pt-Triggered CZO/Cu-SSZ-13 Coupling Catalyst for Efficient Low-Temperature Selective Catalytic Reduction of NOx, ACS EST Engg., 2024, 4(5), 1007-1015.

    [10] Zhou Shuhui, Pan Yu, Wang Yan, Cheng Huifang,* Wu Peiwen, Li Huaming, Huang Yan, Hua Mingqing, Liu Jixing,* Zhu Wenshuai,* Modulating the reaction pathway of Ni2P/Al2O3 by introducing different noble metals for hydrodesulfurization of diesel, Inorg. Chem., 2024, 63(36), 16928–16939.

    [11] Cheng Huifang, Zhang Ziteng, Zhang Lu, Liu Feng, Deng Jianlin,* Hua Mingqing, Cheng Ying,* Li Huaming, Liu Jixing,* Zhu Wenshuai,* Crystal-Plane-Engineered TiO2 Anchored Vanadium Single-Atom and Cluster for Boosting Ultra-deep Aerobic Oxidative Desulfurization of Diesel, Inorg. Chem., 2024, 63, 2, 1488–1498.

    [12] Zhu Jie, Yu Jiangtao, Zhu Linhua, Yu Xiaoxiao, Liu Jixing,* Chao Yanhong, Yin Jingzhou, Wu Peiwen,* Zhu Wenshuai.* 3D-printing of attapulgite monoliths with superior low-temperature selective catalytic reduction activity: the influence of thermal treatment. New J. Chem., 2024, 48(2), 898–909.

    2023年

    [1] Yan Rixin, Liu Xiangqi, Liu Jixing,* Zhang Lu, Zhou Shuhui, Jia Lingfeng, Hua Mingqing, Li Huaming, Ji Haiyan,* Zhu Wenshuai,* Modulating the active phase structure of NiMo/Al2O3 by La modification for ultra-deep hydrodesulfurization of diesel, AIChE J., 2023, 69, e17873.

    [2] Liu Jixing,* Zhang Lu, Zhu Jingyi, Cheng Huifang, Hua Mingqing, Liu Hui, Li Huaming, Zhu Wenshuai,* Liu Jian, Size-dependent surface electronic structure of V2O5/TiO2 for ultra-deep aerobic oxidative desulfurization of diesel, Chem. Eng. Sci., 2023, 275, 118749.

    [3] Zhu Jingyi, Liu Jixing,* Zhu Jie, Lu Shichao, Yan Rixin, Cheng Kai, Cheng Huifang,* Liu Hui, Li Huaming, Zhu Wenshuai,* 3D printing technique fortifies the ultra-deep hydrodesulfurization process of diesel: A journal of NiMo/Al2O3-MMT, Inorg. Chem., 2023, 62(49), 20050−20061.

    [4] Liu Jixing,* Liu Xiangqi, Yan Rixin, Jia Lingfeng, Cheng Huifang, Liu Hui, Huang Yan, Hua Mingqing,* Li, Huaming, Zhu Wenshuai,* Active phase morphology engineering of NiMo/Al2O3 through La introduction for boosting hydrodesulfurization of 4,6-DMDBT, Petrol. Sci., 2023, 20(2), 1231–1237.

    [5] Liu Jixing,* Zhu Jingyi, Zhu Jie, Xu Jundong, Liu Hui, Hua Mingqing, Cheng Huifang,* Li Huaming, Liu Jian, Zhu Wenshuai,* Ji Hongbing,* One-pot three-dimensional printing of hierarchical NiMo/Al2O3 monolithic catalyst for 4,6-dimethyldibenzothiophene hydrodesulfurization, ACS Appl. Mater. Interfaces, 2023, 15, 33593−33604.

    [6] Liu Jixing,* Deng Chang, Liu Xiangqi, Shao Shijia, Zheng Peng,* Chen Linlin, Wu Peiwen, Li Huaming, Ji Hongbing,* Zhu Wenshuai,* Single Mo atoms stabilized on high-entropy perovskite oxide: A fronter for aerobic oxidative desulfurization, Inorg. Chem., 2023, 62 (28), 11044−11055.

    [7] Liu Jixing,* Jing Meizan, Tao Ruiming, Song Weiyu, Cheng Huifang, Li Huaming, Zhao Zhen, Liu Jian, Zhu Wenshuai,* Dai Sheng,* Unravelling the real active center for CO oxidation-Cu+ or Cu3+: A case of model LaCuO3/MCF, Fuel, 2023, 333, 126303.

    [8] Zhang Lu, Liu Jixing,* Huang Deqi, Zhang Wenfeng, Lu Linjie, Hua Mingqing, Liu Hui, Cheng Huifang, Li Huaming, Zhu Wenshuai,* Engineering the electronic and geometric structure of VOx/BN@TiO2 heterostructure for efficient aerobic oxidative desulfurization, Front. Chem. Sci. Eng., 2023, 17, 276–287.

    [9] 贾凌峰,邵元凯,李振国,* 任晓宁,李凯祥,刘计省,* 刘 坚,*核壳结构分子筛基催化剂设计及柴油机尾气脱硝反应机制研究进展. J. Fuel Chem. Technol., 2023, 51(10).

    2022年

    [1] Jia Lingfeng, Liu Jixing,* Huang Deqi, Zhao Jingchen, Zhang Jianning, Li Kaixiang, Li Zhenguo,* Zhu Wenshuai, Zhao Zhen, Liu Jian,* Interface engineering of bifunctional Cu-SSZ-13@CZO core-shell catalyst for boosting the potassium ion and SO2 tolerance. ACS Catal., 2022, 12, 11281–11293.

    [2] Liu Jixing,* Zhou Shuhui, Cheng Huifang, Li Huaming, Zhu Wenshuai,* Liu Jian, Unveiling the Role of High-Valent Copper Cations in the Selective Catalytic Reduction of NOx with NH3 at Low Temperature. Fuel, 2022, 318, 15, 123607.

    2021年

    [1] Liu Jixing, Cheng Huifang, Zheng Huiling, Zhang Lu, Liu Bing,* Song Weiyu, Liu Jian, Zhu Wenshuai,* Li Huaming, Zhao Zhen,* Insight into the Potassium Poisoning Effect for Selective Catalytic Reduction of NOx with NH3 over Fe/Beta, ACS Catal., 2021, 11, 14727−14739.

    [2] Sun Jinru, Wang Lu, Zhang, Lu, Zhao Yu, Chi Yaoling, Wang Hong,* Li Cuiqing, Liu Jixing,* Liu Jian, Taming the redox property of A0.5Co2.5O4 (A = Mg, Ca, Sr, Ba) toward high catalytic activity for N2O decomposition, ACS Appl. Energ. Mater., 2021, 4, 8496−8505.

    2020年

    [1] Liu Jixing, Wang Lu, Okejiri Francis, Zhao Jiahua, Zhang Pengfei,* Liu Miaomiao, Yang Shi-Ze, Zhang Zihao, Liu Jian,* Feng Guodong,* Zhao Zhen, Xu Chunming, Dai Sheng,* Deep Understanding of Strong Metal Interface Confinement: A Journey of Pd/FeOx catalysts, ACS Catal., 2020, 10, 8950−8959.

    [2] Liu Jixing, Cheng Huifang, Tan Junbin, Liu Bing,* Zhang Zihao, Leng Yan, Xu Haidi, Zhao Minjie, Song Weiyu, Liu Jian,* Zhao Zhen, Xu Chunming, Solvent-free rapid synthesis of porous CeWOx by mechanochemical self-assembly strategy for the abatement of NOx, J. Mater. Chem. A, 2020, 7, 22977−22985.

    专利

    [1] 一种Mo基单原子高熵钙钛矿氧化物脱硫催化剂及其制备方法,申请号:202111264011.7,专利号:ZL 2021 1 1264011.7,申请人:刘计省, 程慧芳, 朱文帅, 邓畅, 吴沛文

    [2] 一种3D打印NiMo/Al2O3-MMT复合整体式加氢催化剂及其制备方法与应用,申请号:202310469342.7,专利号:ZL 2023 1 0469342.7,申请人:刘计省, 邵时嘉, 朱捷, 程慧芳, 刘辉, 朱文帅

    [3] 一种单原子与团簇共存VOx-TiO2氧化脱硫催化剂的制备方法,申请号:202310493945.0,专利号:ZL 2023 1 0493945.0,申请人:刘计省, 竺靖怡, 孙龙, 华明清, 程慧芳, 朱文帅

    [4] 一种3D打印氧化铝基负载NiMo整体式加氢催化剂的制备方法,申请号:202310498231.9,申请人:刘计省, 周书慧, 朱捷, 郭志明, 吴泽健, 朱文帅

    [5] 一种Mo基碳酸二氧化镧氧化脱硫催化剂的制备方法及其应用,申请号:202410393847.4,申请人:程慧芳, 张子腾, 邵时嘉, 刘计省, 朱文帅

    [6] 一种Pt掺杂Ni2P/Al2O3加氢脱硫催化剂的制备方法,申请号:202410026574.X,申请人:刘计省, 刘俊豪, 程慧芳, 华明清, 朱文帅

    [7] 一种船舶柴油机尾气脱硝用莫来石型催化剂及其制备方法,申请号:202311729795.5,申请人:刘计省, 张子腾, 程慧芳, 竺靖怡, 朱文帅, 纪红兵

    [8] 一种柴油机尾气脱硝用FeMnZrOx催化剂及其制备方法,申请号:202411565355.5, 申请人:刘计省, 刘俊豪, 程慧芳, 竺靖怡, 余海康, 朱文帅

    [9] 一种柴油NiMoFe/Al2O3加氢脱硫催化剂及其制备方法与应用,申请号:202411564563.3,申请人:刘计省, 汪焱, 程慧芳, 余海康, 华明清, 朱文帅, 吴海波

    [10] 一种Mo基碳酸二氧化镧氧化脱硫催化剂的制备方法及其应用,申请号:202410393847.4,程慧芳, 张子腾, 邵时嘉, 刘计省, 朱文帅