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王慧敏
发布时间:2023-12-19 作者: 浏览次数:595



学    历

博士

职    称

讲师

所属部门

微生物学系

招生专业


联系方式

电话:18854801023E-mailWanghuimin@sdau.edu.cn

个人简介

20226月毕业于山东大学微生物学专业,获得理学博士学位。于20229月进入山东农业大学生命科学学院微生物学系工作。主要从事电活性微生物的筛选、应用及微生物胞外电子传递机制的研究工作,并进行微生物燃料电池等生物电化学系统在环境污染治理方面的应用研究。在《Chemosphere》、《Journal of Environmental Chemical Engineering》和《Microchemical Journal》等学术期刊发表多篇科研论文。近年来主持和参与了山东省自然科学基金、国家自然科学基金、国家自然科学基金重大专项子课题和国家重点研发计划子课题等多项课题。

教学工作

承担本科生《微生物学B》、《微生物学实验技术》等课程的教学工作。

研究方向

1. 电活性微生物的筛选、应用及微生物胞外电子传递机制的研究

2. 微生物燃料电池的应用

科研项目

1. 主持山东省自然科学基金青年项目“基于微生物燃料电池的造纸废水处理与同步产能研究”,(ZR2023QC184),2024.01-2026.12

2. 参与国家自然科学基金面上项目“一株鞘氨醇杆菌的胞外电子传递机制研究”,(32070097),2021.01-2024.12

3. 参与国家自然科学基金重大研发计划“近海沉积物中硫氧化主要菌群与关键通路的研究(子课题:硫化物检测传感器构建)”,(91951202),2020.01-2023.12

4. 参与国家重点研发计划“合成生物学”专项“生物反应器监控系统重构与工业生物过程优化(子课题)”,(2019YFA0904803),2021.01-2024.12

5. 参与国家自然科学基金面上项目“基于双功能抗体的农药多残留免疫检测技术的基础研究”,(31271873),2013.01-2016.12

6. 参与山东省重点研发计划(公益类)项目“基于还原氧化石墨烯/纳米多孔金修饰的微生物传感器对硫化物的灵敏性检测研究”,(2019GSF109069),2019.01-2020.12

发表论文

1. Wang H.M., Qi X.Y., Zhang L., Zhang X.L., Xu P., Wang X.. Efficient bioelectricity generation and carbazole biodegradation using an electrochemically active bacterium Sphingobium yanoikuyae XLDN2-5. Chemosphere, 2022, 307, 135986.

2. Wang H.M., Qi X.Y., Chen S.Y., Wang X.. The efficient treatment of breeding wastewater by an electroactive microbial community in microbial fuel cell. Journal of Environmental Chemical Engineering, 2022, 10: 107187.

3. Wang H.M., Zhang X.L., Wang S.J., Ma H.Y., Wang X.. A multifunctional electrochemical sensor for the simultaneous detection of ascorbic acid, dopamine, uric acid, and nitrite. Journal of AOAC INTERNATIONAL, 2021, 104(3): 860–866.

4. Wang H.M., Zhang X.L., Wang S.J., Xiao S. Ma H.Y., Wang X.. Multianalyte electrochemical electrode for the determination of vitamins B2 and B6 in complex biosystem. Microchemical Journal, 2020, 158: 105233.

5. Wang H.M1., Zhao F.C1., Han X., Yang Z.Y.. Production and characterization of a biotinylated single-chain variable fragment antibody for detection of parathion-methyl. Protein Expression and Purification, 2016, 126: 1–8. (共同一作)

6. Qi X.Y., Wang H.M., Gao X.Y., Zhang L., Wang S., Wang X., Xu P.. Efficient power recovery from aromatic compounds by a novel electroactive bacterium Pseudomonas putida B6-2 in microbial fuel cells. Journal of Environmental Chemical Engineering, 2022, 10, 108536.

7. Zhang Y.C., Wang H.M., Shang K.S., Wang X., Xu P.. Reliable detection of Listeria monocytogenes by a portable paper-based multi-biocatalyst platform integrating three biomarkers: Gene hly, acetoin, and listeriolysin O protein. Journal of Electroanalytical Chemistry, 2022, 905: 115975.

8. Zhang X.L., Wang H.M., Xia T., Wang X.. Characterization of a new electrochemically active bacterium phylogenetically related to Alicyclobacillus hesperidum and its electrochemical performance in microbial fuel cell. Biosensors and Bioelectronics, 2021, 175: 112865.

9. Bian C.C., Wang H.M., Zhang X.L., Xiao S., Liu Z., Wang X.. Sensitive detection of low-concentration sulfide based on the synergistic effect of rGO, np-Au, and recombinant microbial cell. Biosensors and Bioelectronics, 2020, 151: 111985.

10. Zhao F.C., Wang H.M., Han X., Yang Z.Y.. Development and comparative study of chemosynthesized antigen and mimotope-based immunoassays for class-specific analysis of O,O-dimethyl organophosphorus pesticides. Scientific Reports, 2016, 6, 37640.

11. Zhao F.C.1, Tian Y.1, Wang H.M., Liu J.Y., Han X., Yang Z.Y.. Development of a biotinylated broad-specificity single-chain variable fragment antibody and a sensitive immunoassay for detection of organophosphorus pesticides. Analytical and Bioanalytical Chemistry, 2016, 408: 6423–6430.

12. Xia T., Zhang X.L., Wang H.M., Gao Y., Bian C.C., Wang X., Xu. P.. Power generation and microbial community analysis in microbial fuel cells: A promising system to treat organic acid fermentation wastewater. Bioresource Technology, 2019, 284: 72–79.

13. Zhao F.C., Shen Q., Wang H.M., Han X., Yang Z.Y.. Development of a rapid magnetic bead-based immunoassay for sensitive detection of zearalenone. Food Control, 2017, 79: 227–233.

14. Zhao F.C., Hu C.Y., Wang H.M., Zhao L.Y., Yang Z.Y.. Development of a MAb-based immunoassay for the simultaneous determination of O,O-diethyl and O,O-dimethyl organophosphorus pesticides in vegetable and fruit samples pretreated with QuEChERS. Analytical and Bioanalytical Chemistry, 2015, 407: 8959–8970.



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