简介
郑华艳,1982年生,中共党员,博士,教授,硕士生导师。2021年6月到茅台学院工作,现任茅台学院科研部副主任。
教育与工作经历
1、教育经历:
2010.09-2015.06,太原理工大学化学工程与技术专业,博士
2004.09-2007.07,太原理工大学化学工程专业,硕士
2000.09-2004.07,太原理工大学化学工艺专业,本科
2、工作经历:
2025.03-至今,茅台学院科研部,教授/副主任
2024.03-2025.03,茅台学院酿酒工程学系,教授/副主任
2023.01-2024.02,茅台学院食品科学与工程系,教授/副主任
2021.06-2022.12,茅台学院食品科学与工程系,副教授
2017.02-2018.02,加拿大滑铁卢大学化学系,访问学者
2015.11-2021.06,太原理工大学煤化工研究所,副教授
2010.10-2015.10,太原理工大学煤化工研究所,讲师
2007.12-2020.09,太原理工大学煤化工研究所,助教
主要研究领域与方向
酿酒副产物高效利用及节能减排等领域的技术开发研究
教学活动
主讲课程
《化工原理》,《食品工程原理》,《科技论文写作》
科研项目
1、主持科研项目
(1)国家自然科学基金地区项目,同晶取代构建Cu-金属活性界面及其催化合成气制乙醇反应机制(22262020),2023.01-2026.12,主持。
(2)贵州省基础研究计划(自然科学类)项目,高选择性催化生物质合成乙醇催化剂及反应机理研究(黔科合基础-ZK[2023]一般447),2023.01-2025.12,主持。
(3)遵义市科技计划项目,高选择性催化酱香酒丢糟合成乙醇催化剂及反应过程研究(遵市科合HZ字(2021)328号),2021.11-2023.11,主持。
主要发表学术论著、学术论文、专利、教改论文
1、发表学术论文:
(1)Song Ya, Li Qingqing, Liu Yuting, Ma Yue, Lin Chenwenyi, Bai Xin, Nie Ninglang, Liu Yafeng, Yi Zexuan, Zheng Huayan*, Yu Shirui*. Discrepancy on the quality characteristics of soluble dietary fiber in wild Rosa roxburghii Tratt fruits from different regions [J]. Scientific Reports, 2025, 15(1): 8289. (SCI二区)
(2)Song Ya, Sun Guoshun, Wang Dian, Chen Jin, Lv Jun, Jiang Sixia, Zhang Guoqiang, Yu Shirui, Zheng Huayan*. Optimization of Composite Enzymatic Extraction, Structural Characterization andBiological Activity of Soluble Dietary Fiber from Akebia trifoliata Peel [J]. Molecules, 2024, 29(9): 2085. (SCI二区)
(3)Zhou Yuan, Zhang Guoqiang, Song Ya, Yu Shirui, Zhao Jingjing, Zheng Huayan*. DFT Investigations of the Reaction Mechanism of Dimethyl Carbonate Synthesis from Methanol and CO on Various Cu Species in Y Zeolites [J]. Catalysts, 2023, 13(3): 477. (SCI三区)
(4)Zhang Song, Yu Miao, Zhang Guoqiang, He Guanmei, Ji Yunxu, Dong Juan, Zheng Huayan*, Qian Lu*. Revealing the Control Mechanisms of pH on the Solution Properties of Chitin via Single-Molecule Studies [J]. Molecules, 2023, 28(19): 6769. (SCI二区)
(5)Zhang Guoqiang, Zhou Yuan, Yang Yanlin, Kong Tiantian, Song Ya, Zhang Song, Zheng Huayan*. Elucidating the Role of Surface Ce4+and Oxygen Vacancies of CeO2in the Direct Synthesis of Dimethyl Carbonate from CO2and Methanol [J]. Molecules, 2023, 28(9): 3785. (SCI二区)
(6)Zhang Guoqiang, Qin Jinyu, Zhou Yuan, Zheng Huayan*, Meng Fanhui*. Catalytic Performance for CO Methanation over Ni/MCM-41 Catalyst in a Slurry-Bed Reactor [J]. Catalysts, 2023, 13(3): 598. (SCI三区)
(7)Zheng Huayan, Narkhede Nilesh, Zhang Guoqiang*, Zhang Huacheng, Ma Lina, Yu Shirui*. Highly dispersed Cu catalyst based on the layer confinement effect of Cu/Zn/Ga-LDH for methanol synthesis [J]. Molecular Catalysis, 2021, 516: 111984. (SCI二区)
(8)Zheng Huayan, Narkhede Nilesh, Zhang Huacheng, Li Zhong*. Oriented Isomorphous Substitution: An Efficient and Alternative Route to Fabricate the Zn Rich Phase Pure (Cu1-x,Znx)2(OH)2CO3Precursor Catalyst for Methanol Synthesis [J]. ChemCatChem, 2020, 12(7): 2040–2049. (SCI二区)
(9)Zheng Huayan, Narkhede Nilesh, Zhang Guoqiang, Li Zhong*. Role of metal co-cations in improving CuY zeolite performance for DMC synthesis: A theoretical study [J]. Applied Organometallic Chemistry, 2020, 34(10): e5832. (SCI三区)
(10)Zheng Huayan, Narkhede Nilesh, Han Linyi, Zhang Huacheng, Li Zhong*. Methanol synthesis from CO2: a DFT investigation on Zn-promoted Cu catalyst [J]. Research on Chemical intermediates, 2020, 46(3): 1749–1769. (SCI四区)
(11)Narkhede Nilesh, Zheng Huayan*, Zhang Huacheng, Zhang Guoqiang, Li Zhong*. Group 13 metal doped Cu/ZnO catalysts from phase pure precursors via an isomorphous substitution route: mechanistic insights into promotional effects for syngas hydrogenation to methanol [J]. Catalysis Science & Technology, 2020, 10(21): 7386–7398. (SCI二区)
(12)Narkhede Nilesh, Zheng Huayan*, Zhang Huacheng, Zhang Guoqiang, Li Zhong*. Isomorphous substitution method to fabricating pure phase Al-doped zinc malachite: defects driven promotion improvement and enhanced synergy between Cu-ZnO [J]. ChemCatChem, 2020, 12(22): 5697–5709. (SCI二区)
(13)Zheng Huayan, Narkhede Nilesh, Li Zhong*. New Theoretical Insights into the Origin of Highly-Effective Dispersion of Cu-Based Catalysts As-Synthesized Using Mg/Zn Doped Malachite as Precursors [J]. ChemistrySelect, 2019, 4(45): 13271–13279. (SCI四区)
(14)Zheng HuaYan, Wang JiaZhen, Li Zhong*, Yan LiFei, Wen John Zhenyu*. Characterization and assessment of an enhanced CuY catalyst for oxidative carbonylation of methanol prepared by consecutive liquid-phase ion exchange and incipient wetness impregnation [J]. Fuel Processing Technology, 2016, 152: 367–374. (SCI二区)
(15)Zheng Huayan, Zhang Riguang*, Li Zhong, Wang Baojun. Insight into the mechanism and possibility of ethanol formation from syngas on Cu(100) surface [J]. Journal of Molecular Catalysis A: chemical, 2015, 404(0): 115–130. (SCI二区)
(16)Zheng Huayan, Li Jiao, Zhang Xiaochao, Li Zhong*, Xie Kechang. Structural and electronic properties of Cu-doped Zn5(OH)6(CO3)2from first principles [J]. Journal of Materials Science, 2015, 50(20): 6794–6807. (SCI三区)
(17)Li Jiao, Zheng Huayan*, Zhang Xiaochao, Li Zhong*. First-principles investigation on Cu/ZnO catalyst precursor: Energetic, structural and electronic properties of Zn-doped Cu2(OH)2CO3[J]. Computational Materials Science, 2015, 96, Part A(0): 1–9. (SCI三区)
(18)Zheng Huayan, Qi Jun, Zhang Riguang, Li Zhong*, Wang Baojun*, Ma Xinbin. Effect of environment around the active center Cu+species on the catalytic activity of CuY zeolites in dimethyl carbonate synthesis: A theoretical study [J]. Fuel Processing Technology, 2014, 128(0): 310–318. (SCI二区)
2、专利
(1)郑华艳, 李忠, 王玉春, 张国强, 周龙. 一种碳酸二甲酯的分离提纯工艺. 发明专利,专利号2019106886358. 授权日期: 2022.2.15
(2)郑华艳, 李忠, 周龙, 张国强. 一种碳酸二甲酯的合成工艺及装置. 发明专利,专利号2018114549050. 授权日期: 2021.08.10
(3)郑华艳, 周媛, 张国强, 宋亚, 张松. 一种有序介孔纳米铜铁基氧化物催化剂及制备方法和应用. 发明专利,专利号2023111066590. 公开日期: 2024.08.09
参加工作以来获得奖励及荣誉称号
1、获得奖励
(1)获2024年度山西省自然科学奖, 一等奖,5/6。
(2)获2025年茅台集团科技创新成果奖, 三等奖,3/4
(3)入选第八批贵州省高层次创新型(千层次)人才
(4)入选2019年山西省“三晋英才”支持计划青年优秀人才
2、荣誉称号
(1)2022年茅台集团“身边榜样”
(2)仁怀市2023-2024学年师德标兵
(3)茅台学院2023-2024学年优秀教师
(4)茅台学院2023年度科研先进个人
(5)茅台学院2021级优秀本科生导师
(6)茅台学院2023-2024学年优秀班主任
指导学生获奖
“挑战杯”贵州省大学生课外学术科技作品竞赛,获省级二等奖2项,省级三等奖2项(均为第一指导老师)。
信息更新截止时间:2026年3月