2024-10-14
姓 名 |
许伟城 |
性别 |
男 |
出生年月 |
1987.10 |
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籍 贯 |
广东潮州 |
民族 |
汉 |
身体状况 |
良好 |
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技术职称 |
讲师 |
学历 |
博士 |
专业 |
环境科学与工程 |
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联系电话 |
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weichengxu@fosu.edu.cn |
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研究方向 |
等离子体催化降解挥发性有机物(VOCs)、VOCs治理技术装备研究开发、水中难降解有机物的高级氧化处理等; |
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学习经历与工作经历 |
硕士研究生导师; 2017年毕业于华南理工大学,获工学博士学位,2017年8月起在佛山科学技术学院环境与化学工程学院工作; 2019.05-2020.05,香港理工大学土木及环境工程学系,访问学者
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科研项目与科研成果 |
代表性科研项目 [1]国家自然科学基金–青年基金项目:介微孔复合催化剂协同非热等离子体净化甲苯废气研究(52000031,2021.01~2023.12,24万元,主持,在研) [2]广东省教育厅特色创新类项目:多级孔催化剂协同等离子体净化低浓度VOCs性能及再生机理研究(2020KTSCX129,2021.01~2022.12,6万元,主持,在研) [3] 广东省自然科学基金–自由申请项目 :非热等离子体协同可控ZSM-5型催化剂处理低浓度VOCs性能及机理研究(2018A030313734,2018.05~2021.4,10万元,主持,在研) [4] 佛山市禅城区石湾镇街石头村民委员会委托项目:佛山市禅城区澜石前进路10号(部分)及东侧地块场地环境调查和风险评估报告(kh18428,2018.12-2019.12, 38.5万元,主持,已结题) 代表性论文 [1] W.C. Xu*, X.D. Jiang, H.H. Chen, X. Chen, L.M. Chen, J.L. Wu, M.L. Fu, D.Q. Ye*, Adsorption-discharge plasma system for toluene decomposition over Ni-SBA catalyst: In situ observation and humidity influence study, Chem. Eng. J. 2020, 382: 122950 [2] W.C. Xu*, B.X. Chen, X.D. Jiang, F. Xu, X. Chen, L.M. Chen, J.L. Wu, M.L. Fu, D.Q. Ye*, Effect of calcium addition in plasma catalysis for toluene removal by Ni/ZSM-5 : Acidity/basicity, catalytic activity and reaction mechanism, J. Hazard. Mater. 2020, 387: 122004 [3] W.C. Xu*, K.B. Xiao, S.F. Lai, J.Z. Liang, X.D. Jiang, Z. Liu*, F.H. Li, Y. Zhang, X.L. Wu, X.W. Zhou, Designing a dumbbell-brush-type Co3O4 for efficient catalytic toluene oxidation, Catal. Commun. 2020, 140: 106005 [4] W.C. Xu*, S.F. Lai, S.C. pillai, W. Chu, Y. Hu, X.D. Jiang, M.L. Fu, X.L. Wu, F.H. Li, H.L. Wang, Visible light photocatalytic degradation of tetracycline with porous Ag/graphite carbon nitride plasmonic composite: Degradation pathways and mechanism, J. Colloid Interf. Sci., 2020, 574: 110-121 [5] W.C. Xu, K.C. Lin, D.Q. Ye*, X.D. Jiang, J.X. Liu, Y.D. Chen, Performance of toluene removal in a nonthermal plasma catalysis system over flake-like HZSM-5 zeolite with tunable pore size and evaluation of its byproducts, Nanomaterials, 2019, 9(2), 290 [6] X.D. Jiang*, W.C. Xu*, S.F. Lai, X. Chen, Integral structured Co-Mn composite oxides grown on interconnected Ni foam for catalytic toluene oxidation, RSC Adv. 2019, 9, 6533-6541 [7] W.C. Xu, N. Wang, Y.D. Chen, J.D. Chen, X.X. Xu, L. Yu, L.M. Chen, J.L. Wu, M.L. Fu, A.M. Zhu, D.Q. Ye, In situ FT-IR study and evaluation of toluene abatement in different plasma catalytic systems over metal oxides loaded γ-Al2O3, Catal. Commun. 2016, 84: 61-66 [8] W.C. Xu, X.X. Xu, J.L. Wu, L.M. Chen, N. Wang, H.L. Xiao, X.F. Chen, D.Q. Ye*, Removal of toluene in adsorption–discharge plasma systems over a nickel modified SBA-15 catalyst, RSC Adv. 2016,6, 104104-104111 [9] W.C. Xu, J.Z. Fang*, Y.F. Chen, S.Y. Lu, G.Y. Zhou, X.M. Zhu, Z.Q. Fang, Novel heterostructured Bi2S3/Bi2Sn2O7 with highly visible light photocatalytic activity for the removal of rhodamine B, Mater. Chem. Phys. 2015, 154: 30-37 [10] W.C. Xu, J.Z. Fang*, X.M. Zhu, Z.Q. Fang, C.P. Cen, Fabricaion of improved novel p-n junction BiOI/Bi2Sn2O7 nanocomposite for visible light driven photocatalysis, Mater. Res. Bull. 2015, 72: 229-234 [11] W.C. Xu, Z. Liu, J.Z. Fang*, G.Y. Zhou, X.T. Hong, S.X. Wu, X.M. Zhu, Y.F. Chen, C.P. Cen, CTAB-assisted hydrothermal synthesis of Bi2Sn2O7 photocatalyst and its highly efficient degradation of organic dye under visible-light irradiation, Int. J. Photoenergy. 2013, ID 394079 [12] W.C. Xu, G.Y. Zhou, J.Z. Fang*, Z. Liu, Y.F. Chen, C.P. Cen, Synthesis and Characterization of pyrochlore Bi2Sn2O7 doping with praseodymium by hydrothermal method and its photocatalytic activity study, Int. J. Photoenergy. 2013, ID 234806 |