
姓 名:王艳灵
职称职务:讲师,党支部副书记
联系电话:18825145512
电子邮箱:[email protected]
一、个人简介
王艳灵,女,中共党员,工学博士,2023年毕业于华南理工大学环境科学与工程专业,同年入职华东交通大学。主持在研江西省青年科学基金项目1项,江西省职业早期青年科技人才培养项目1项,参与国家自然科学基金多项。主要研究方向为湿地中植物与微生物协同驱动的污染水体的可持续净化、生物过滤法脱硝脱硫以及功能微生物的分离筛选等。在Journal of Hazardous Materials、Chemosphere、Journal of Environmental Chemical Engineering、Journal of Water Process Engineering 等国际著名期刊上发表SCI论文十余篇。申请国家发明专利2项。
二、所属学科及主要研究方向
所属学科为环境科学与工程,主要研究方向为湿地中植物与微生物协同驱动的污染水体的可持续净化、生物过滤法脱硝脱硫以及功能微生物的分离筛选等。
三、主要学习、工作、科研及培养研究生经历
学习经历
2011/09-2015/06 广州中医药大学,中药资源与开发,本科
2015/09-2018/06 华南农业大学,生态学,硕士
2019/09-2023/06 华南理工大学,环境科学与工程,博士
工作经历
2018/06-2019/07 广东省科学院微生物研究所,科研助理
2023/07-至今 华东交通大学,欧美成人网-成人网欧美-欧美成人短片
,讲师
四、主要科研项目
[1] 江西省自然科学基金委员会,青年科学基金项目,20242BAB20246,植物释氧与微生物协同驱动的湿地N2O释放机制研究,2024.06-2027.05,在研,主持
[2] 江西省自然科学基金委员会,江西省职业早期青年科技人才培养项目,20244BCE52137,植沉水植物与微生物协同作用对鄱阳湖湿地氮循环及N2O释放的影响,2024.10-2029.09,在研,主持
[3] 华东交通大学博士启动经费,2023.12-2026.12,在研,主持
[4] 国家自然科学基金面上项目,52270105,生物过滤脱硝过程中NO的还原机制,2023.01-2026.12,在研,主要参与人
[5] 国家自然科学基金NSFC-广东联合基金重点项目,U1701243,中温工业烟气的高效好氧反硝化同步脱硝脱硫机制研究,2018.01-2021.12,已结题,主要研究人员
五、近期代表性论文
[1]. Wang Y, Li J*, Huang S*, Huang X, Hu W, Pu J, Xu M. Evaluation of NOx removal from flue gas and Fe(II)EDTA regeneration using a novel BTF–ABR integrated system[J]. Journal of Hazardous Materials. 2021, 415, 125741.
[2]. Wang Y, Gong Z, Xu X, Chen P, Zhao T, Hu W, Xu M, Li J*, Huang S*. Effects of various COD/NO ratios on NOx removal performance and microbial communities in a BTF−ABR integrated system[J]. Chemosphere. 2023, 321, 138121.
[3]. Wang Y, Xie H, Yang Y, Huang Y, Wang J*, Tan F*. Chloroplast and mitochondrial microsatellites for Millettia pinnata (Fabaceae) and cross−amplification in related species[J]. Applications in Plant Sciences, 2017,5.
[4]. Gong Z1, Wang Y1, Chen P, Zhao T, Lu Y, Qiu G, Huang S*. Revealing the interplay among sediment characteristics, microbial community structure, and contaminant fate: A comprehensive analysis from the laboratory to the mesocosm scales in the Pearl River sediments[J]. Journal of Environmental Chemical Engineering. 2025, 13(1), 115378.
[5]. Lu Y, Zhang B, Cao Y, Wang Y*, Zhang Y, Huang S*. Exploring alkali-treated corn cob for high-rate removal of NOx and SO2 from flue gas: Focus on carbon release capacity, removal performance, and comparison with conventional carbon sources[J]. Journal of Hazardous Materials. 2024, 478, 135613.
[6]. Zhang B, Wang Y, Huang S*, Hu H*, Yuan H, Wu X, Li B, Tang X. Removal of H2S in an extremely acidic-biotrickling filter: Evaluation of removal performance and characterization of microbial communities[J]. Journal of Environmental Chemical Engineering. 2022, 10(5), 108504.
[7]. Zhang B, Wang Y, Zhu H, Huang S*, Zhang J, Wu X, Li B, Xiao X. Evaluation of H2S gas removal by a biotrickling filter: Effect of oxygen dose on the performance and microbial communities[J]. Process Safety and Environmental Protection. 2022,166, 30-40.
[8]. Yang B, Wang Y, Lu Y, Liu L, Huang S*, Cheng F, Feng Z. Effects of simultaneous denitrification and desulfurization and changes of microbial community structure with corncob solid slow-release carbon source under different S/N ratios[J]. Journal of Water Process Engineering. 2022, 47, 102737.
[9]. Xu X, Wang Y, Chen P, Zhao T, Gong Z, Wang B, Huang S*. Removal of NOx from flue gas using different agricultural wastes as carbon sources: Performance and microbial communities[J]. Journal of Environmental Chemical Engineering. 2023. 109804.
[10]. Gong Z, Wang Y, Hu H, Chen P, Lu Y, Wang L, Huang S*. The Impact of Sediment-Water Ratio and Hydraulic Residence Time on the Release of Inorganic Nitrogen from Sediments in the Pearl River Delta[J]. Water. 2023, 15(9), 1789.
[11]. Cao Y, Jin Y, Lu Y, Wang Y, Zhao T, Chen P, Huang S*, Zhang Y*. Characteristics and Nitrogen Removal Performance Optimization of Aerobic Denitrifying Bacteria Bacillus cereus J1 under Ammonium and Nitrate-Nitrogen Conditions. Water. 2024, 16, 2231.
[12]. Wu Z, Zhao T, Zhang Y, Wang Y, Chen P, Lu G, Huang S*, Qiu G. Iron-enhanced microscale laboratory aerated filters in the treatment of artificial mariculture wastewater: A study on nitrogen removal performance and the impact on microbial community structure[J]. Chemosphere. 2024, 357, 141854.
[13]. Fu F, Huang S*, Hu H, Lu Y, Wang Y, Yuan J, Gong Z, Wu J, Zhang Y. Transformation of N and S pollutants and characterization of microbial communities in constructed wetlands with Vallisneria natans[J]. Journal of Water Process Engineering. 2021, 42, 102186.
[14]. Lu Y, Chow AT, Liu L, Wang Y, Zhang X*, Huang S*, Zhang Y. Effects of Vallisneria natans on H2S and S2-releases in black-odorous waterbody under additional nitrate: Comprehensive performance and microbial community structure[J]. Journal of Environmental Management. 2022, 316, 115226.
[15]. Zhao T, Hu H, Chow AT, Chen P, Wang Y, Xu X, Gong Z, Huang S*. Evaluation of organic matter and nitrogen removals, electricity generation and bacterial community responses in sediment microbial fuel cell coupled with Vallisneria natans[J]. Journal of Environmental Chemical Engineering. 2023, 11(3), 110058.
[16]. Zhao T, Huang S*, Zhang Y, Alex T. Chow, Chen P, Wang Y, Lu Y, Xiong J. Removal of sulfur and nitrogen pollutants in a sediment microbial fuel cell coupled with Vallisneria natans: Efficiency, microbial community structure, and functional genes[J]. Chemosphere, 2024, 354, 141667.
[17]. 张羽,武志鹏,王艳灵,龚泽瑞,邱光磊,黄少斌*. 以碱处理香蕉皮浸出液作为碳源的烟气脱硝系统对不同NO负荷的响应研究[J]. 环境科学学报, 2024, 44(12):306-316.
六、科技奖励与专利
(1).黄少斌,王艳灵. 一株乌尔新植物杆菌 LW1 及其应用,发明专利申请号:202211037423.1,申请日:2022 年 08 月 26 日
(2).黄少斌,王艳灵.一株中间布鲁氏菌 LW2 及其应用,发明专利申请号:202211099587.7,申请日:2022 年 09 月 09 日
七、专著
[1] 高等院校环境类系列教材,《环境学概论》,中国环境出版集团,2024.12,ISBN:978-7-5111-6125-3,副主编
八、荣誉
九、社会兼职与活动
无。
十、教学工作
主讲环境工程专业课《清洁生产与循环经济》、《环境工程专业外语》、土木工程专业限选课《环境学基础》,以及研究生课程《水处理高级氧化技术与应用》。