
姓名:王宗元
职称:副教授
手机:18149930377
研究方向:
1.等离子体催化界面结构调控
2.等离子体耦合电催化过程强化
3.烟气NOx污染物资源化转化
4.污染物资源化利用
个人简介
中共党员,工学博士,副教授,博士生导师,主要从事等离子体技术在能源环境领域的基础应用研究。曾获国家公派留学基金、研究生国家奖学金,天津大学和美国约翰斯霍普金斯大学联合培养博士研究生,新疆天润生物科技股份有限公司博士后。中国化工学会工程热化学专业委员会委员(第二届),新疆工程热化学学会秘书长。主持国家自然科学青年基金,国家自然科学基金地区基金,兵团兵团自然科学计划面上项目,十二师科技计划及其他横向项目各1项;入选自治区天池英才(青年博士)计划,石河子大学青年创新培育人才计划,参与自治区天山英才创新团队。在Appl. Catal. B: Environ., Adv. Funct. Mater., Chinese J. Catal., Nano Res.等期刊上发表SCI论文60余篇,引用4000余次,H-index=29;获授权专利2件;相关成果获中国化工学会科学技术奖-基础研究二等奖(排名2)。
教育工作经历:
2008.09-2012.06 天津大学,化学工程与工艺,本科
2012.09-2015.06 天津大学,化学工程,硕士
2015.09-2020.08 天津大学,化学工艺,博士
2017.10-2019.10 美国约翰霍普金斯大学,联合培养博士研究生
2021.04-2022.09石河子大学,化学化工学院,化学工程与工艺系,讲师
2022.09-至今 石河子大学,化学化工学院,化学工程与工艺系,副教授
2023.04-至今石河子大学/新疆天润生物科技股份有限公司,博士后
科研项目
1.国家自然科学基金-地区科学基金,等离子体诱导配位重构制备高熵催化剂及电催化C-N偶联抗硫机理研究,2026.01-2028.12,主持
2.国家自然科学基金-青年基金(C),等离子体诱导组装氟掺杂材料的可控制备与析氧性能优化,2023.01-2025.12,主持
3.兵团自然科学计划面上项目,相界面等离子体诱导组装及新疆新污染物净化机制研究,2024.07-2027.07,主持
4.新疆自治区天池英才计划(青年博士项目),2023.01-2025.12,主持
5.2025年度十二师科技计划,寒区奶牛养殖环境调控与治理技术研发平台,2025.08-2028.8,主持
6.石河子大学高层次人才启动项目,低温等离子体强化制备杂原子掺杂催化剂过程机理研究,2022.01-2024.12,主持
7.石河子大学青年创新培育人才计划,光热光催双功能材料的构建及印染废水纯化工艺设计,2022.01-2023.12,主持
8.国家能源集团北京低碳清洁能源研究院横向项目,2024.09-2025.03,主持
代表性论文:
[1]Ting An1, Yuxiang Li1, Jiajun Wang*, Qian Yang, Yaao Li, Chao Feng, Dalei Chang, Jinfeng Zhang, Feng Yu, Bin Dai*, Zongyuan Wang*. Modulating intermediate coverage on atomically dispersed Co modified Cu2O for efficient nitrate reduction across a wide temperature range. Applied Catalysis B: Environment and Energy, 2026: 126600.(SCI一区)
[2]Qian Yang1, Yaao Li1, Aiqun Kong1, Yuxiang Li, Ting An, Chenxia Yang, Yunxia Zhao, Liuyun Lai, Chao Feng, Xia Zhou, Pei Chen, Keke Pan, Zongyuan Wang*, Haitao Huang*, Feng Yu*. F-Doping-driven spin reconfiguration in NiFe LDH: Unlocking lattice oxygen for high-efficiency oxygen evolution reaction. Applied Catalysis B: Environment and Energy, 2025: 126130. (SCI一区)
[3]Long Wang, Chengwei Yang, Yuxiang Li, Shuangqian Liu, Jianwen Zhang, Liang Xie, Zongyuan Wang*, Guixian Ge*, Renchao Che*, Activating the O-O coupling through NiMoO4-CeO2nano-heterojunction with abundant oxygen vacancies for efficient electrocatalytic water oxidation[J]. Advanced Functional Materials, 2026: e76170. (SCI一区)
[4] Chenxia Yang1, Ying Tang1, Qian Yang1, Bo Wang, Xianghao Liu, Yuxiang Li, Weixia Yang, Kunxuan Zhao, Gang Wang*, Zongyuan Wang*, Feng Yu*. Copper-nickel-MOF/nickel foam catalysts grown in situ for efficient electrochemical nitrate reduction to ammonia, Journal of Hazardous Materials, 2024, 480: 136036. (SCI一区)
[5] Yuxiang Li1, Yaao Li1, Qian Yang1, Ting An, Xiao Cui, Liuyun Lai, Yaoxin Wu, Chenxia Yang, Dalei Chang, Aiqun Kong, Denghao Wang, Jiajun Wang, Feng Yu, Chao Feng*, Bin Dai*, Zongyuan Wang*. Elucidating the synergistic SO2tolerance mechanism in Cu-doped BiFeO3electrocatalysts for sustainable nitrate reduction. Chemical Engineering Journal, 2026: 175456. (SCI一区)
[6] Yaoxin Wu1, Lili Ban1, Hanzhen Wang, Qian Yang, Yaao Li, Ke Lu, Yuxiang Li, Pin Cui, Jinfeng Yang*, Dalei Chang, Dezheng Yang*, Feng Yu, Zongyuan Wang*, Bin Dai*, Mo, N co-doped cobalt hydroxide nanosheets for highly selective methanol-to-formate electrocatalytic conversion[J]. Chemical Engineering Journal, 2024, 488: 151087. (SCI一区)
[7] Ke Lu, Zongyuan Wang*, Yaoxin Wu, Xingwu Zhai, Chenxu Wang, Ju Li, Zhimou Wang, Xinyi Li, Yuxuan He, Ting An, Kun Yang, Dezheng Yang*, Feng Yu, Bin Dai*, Synergistic effect of F doping and WO3 loading on electrocatalytic oxygen evolution[J]. Chemical Engineering Journal, 2023, 451: 138590. (SCI一区)
[8] Ke Lu1, Zongyuan Wang1, Bin Dai, You Han, Xunxin Chen, Jie Yu, Kun Yang, Dezheng Yang*, Cunhua Ma*, Feng Yu*. Construction of graphitic-N-rich TiO2-NC interfaces via dye dissociation and reassembly for efficient oxygen evolution reaction. Chemical Engineering Journal, 2022, 431: 133246. (SCI一区)
[9] Xiao Cui, Yifan Li, Chengjiao Yang, Qinghe Zeng, Baoling Zhang, Zhi Zheng, Yong Zhang, Lanbo Di, Dalei Chang*, Zongyuan Wang*, Plasma catalytic degradation of naphthalene using activated alumina in cycled storage-discharge mode: A study of mass transfer-reaction process in pores, Chemical Engineering Journal, 2025, 505: 159345. (SCI一区)
[10] Jingsen Zhang, Yue Hua, Hong Li, Xiuling Zhang, Chuan Shi, Yuxiang Li, Lanbo Di*, Zongyuan Wang*, Phase reconstruction of Co3O4 with enriched oxygen vacancies induced by cold plasma for boosting methanol-to-formate electro-oxidation[J]. Chemical Engineering Journal, 2023, 478: 147288. (SCI一区)
[11] Xiaozhou Chen1, Hailong Tian1, Longbin Deng, Shuaishuai Zhou, Xin Yu, Zongyuan Wang*, Yusen Li*, Yajie Tian*; Production of γ-Valerolactone from levulinic acid via selected transfer hydrogenation pathway by FeAl-framework ZSM-5 supporting ZrO2, Chemical Engineering Journal, 2025, 508: 160796. (SCI一区)
[12]Yaao Li1, Lili Ban1, Kun Yang1, Yaoxin Wu, Ke Lu, Yuxiang Li, Qian Yang, Ting An, Kun Liu, Chao Feng, Haojie Li*, Bin Dai*, Zongyuan Wang*, Coupling photothermal effect into two-dimensional bismuth metal–organic frameworks photocatalysts for solar-driven dye wastewater purification; Chemical Engineering Science, 2025: 122441. (化工三大刊)
[13]Qian Yang1, Yaao Li1, Yaoxin Wu, Yuxiang Li, Chenxia Yang, Lili Ban, Yunxia Zhao, Bin Dai, Gang Wang, Yongsheng Li, Jinli Zhang, Zongyuan Wang*, Huan Pang*, Feng Yu*, A plasma-triggered N-Co-O-Fe motif in Co(OH)2for efficient electrocatalytic oxygen evolution, EES Catalysis, 2025, 3(3): 407-419.(封面论文)
[14] Zongyuan Wang, Jiajun Wang, Zeyu Sun, Wenlong Xiang, Chenyang Shen, Ning Rui,Mingzhu Ding, Yingjin Yuan, Honggang Cui*, Chang‐jun Liu*, Electron-induced rapid crosslinking in supramolecular metal-peptide assembly and chemically responsive disaggregation for catalytic application[J]. Chinese Journal of Catalysis, 2021, 42(3): 376-387. (SCI一区)
[15] Zongyuan Wang, Chang-Jun Liu* Preparation and application of iron oxide/graphene based composites for electrochemical energy storage and energy conversion devices: Current status and perspective. Nano Energy, 2015, 11: 277-293. (高被引论文)
[16] Zongyuan Wang, Minyue Li, Wei Wang, Min Fang, Qidi Sun, Chang-jun Liu* Floating silver film: A flexible surface-enhanced Raman spectroscopy substrate for direct liquid phase detection at gas–liquid interfaces. Nano Research, 2016, 9(4): 1148-1158. (SCI一区)
竞赛指导:
1.安婷等,第五届全国大学生高电压与等离子体科技创新竞赛,2025,一等奖(指导教师)
2.杨茜等,第四届全国大学生低碳科技创新大赛,2025,一等奖(指导教师)
3.白东昊等,“天正设计杯”第十九届全国大学生化工设计竞赛,2025,三等奖(指导教师)
4.何玉萱等,“天正设计杯”第十九届全国大学生化工设计竞赛,2024,三等奖(指导教师)