| 姓 名: | |
|---|---|
| 性 别: | |
| 职 称: | |
| 电 话: | |
| 电子邮件: |
简历介绍:
研究方向:
社会任职:
获奖及荣誉:
代表论著:

学习经历:<\/span><\/span><\/strong> <\/span><\/p> 2001年<\/span>9<\/span>月<\/span>—2005<\/span>年<\/span>7<\/span>月武汉理工大学 环境科学专业 理学学士学位<\/span> <\/span><\/p> 2005年<\/span>9<\/span>月<\/span>—2010<\/span>年<\/span>7<\/span>月中国科学院水生生物研究所 环境科学专业 理学博士学位<\/span> <\/span><\/p> 工作简历:<\/span> <\/span><\/strong><\/p> 2010年<\/span>07<\/span>月<\/span>—2012<\/span>年<\/span>06<\/span>月中国科学院东北地理与农业生态研究所,助理研究员<\/span> <\/span><\/p> 2012年<\/span>07<\/span>月<\/span>—2012<\/span>年<\/span>12<\/span>月中国科学院水生生物研究所,助理研究员<\/span> <\/span><\/p> 2013年<\/span>01<\/span>月<\/span>—2019<\/span>年<\/span>12<\/span>月中国科学院水生生物研究所,副研究员<\/span> <\/span><\/p> (其间:<\/span>2020年<\/span>01<\/span>月<\/span>—2023<\/span>年<\/span>12<\/span>月中国科学院水生生物研究所,青年研究员)<\/span> <\/span><\/p> 2023年<\/span>12<\/span>月<\/span>—<\/span>中国科学院水生生物研究所,研究员<\/span> <\/span><\/p> 海外经历:<\/span><\/span><\/strong> <\/span><\/p> 2017年<\/span>11<\/span>月<\/span>—2018<\/span>年<\/span>07<\/span>月以色列海洋与湖沼研究所(<\/span>IsraelOceanographicandLimnologicalResearch<\/span>)<\/span>Kinneret<\/span>湖沼学实验室访问学者。<\/span> <\/span><\/p> 2018年<\/span>10<\/span>月<\/span>—2019<\/span>年<\/span>04<\/span>月德国科布伦茨<\/span>-<\/span>兰道大学(<\/span>UniversityofKoblenz-Landau<\/span>)自然与环境科学学院访问学者<\/span> <\/span><\/p> <\/span><\/p> 主要从事蓝藻水华监测预警、控制、有毒蓝藻水华的生消规律及湖泊生态修复技术研发等方面的工作。承担了<\/span>4项国家自然科学基金项目(包括<\/span>1<\/span>项<\/span>NSFC-DFG (<\/span>中德<\/span>)<\/span>组织间国际合作项目(<\/span>2021-2023)<\/span>、<\/span>2<\/span>项面上项目和<\/span>1<\/span>项青年基金项目)、<\/span>1<\/span>项国家重点研发计划长江黄河专项子课题(<\/span>2023-2026<\/span>)、<\/span>1<\/span>项国家自然科学基金中以国际合作项目专题(<\/span>2015-2018)<\/span>、<\/span>1<\/span>项湖北省重点研发计划专题(<\/span>2022-2024<\/span>)、<\/span>1<\/span>项<\/span>“<\/span>十二五<\/span>”<\/span>国家水专项专题(<\/span>2013-2018)<\/span>、企业及地方委托等相关课题近<\/span>10<\/span>项。<\/span>2018<\/span>年入选中国科学院青年创新促进会会员(<\/span>2018-2021<\/span>),<\/span>2021<\/span>年获湖北省杰出青年基金资助(<\/span>2021-2024<\/span>),<\/span>2022<\/span>年入选中国科学院首批特聘研究骨干。<\/span><\/span><\/p> 在理论研究方面:<\/span><\/span><\/strong><\/p> 主要针对富营养化湖泊蓝藻水华频繁暴发的环境问题,立足影响水华藻类生长的关键驱动因子,系统研究了表面微囊藻水华的形成关键过程与机制,揭示了水华微囊藻形成的环境生物学特性和关键驱动因子,并阐明了光照、风速及气<\/span>-水界面作用对微囊藻水华形成的关键影响与作用机制,并在大量野外原位实验的基础上阐明了富营养化湖泊实现草型清水态转变的阈值条件(<\/span>TP < 0.05 mg\/L<\/span>,<\/span>Chl a < 50 µg\/L<\/span>);另外,针对大部分蓝藻产生有毒次生代谢产物,阐明了微囊藻毒素在水环境中的迁移转化规律,揭示了有效消除微囊藻毒素生态风险的重要途径,相关结果已分别发表在<\/span>Water Research<\/span>,<\/span>The ISME Journal<\/span>,<\/span>Environmental Science & Technology<\/span>,<\/span>Journal of Hazardous Materials<\/span>,<\/span>Bioresource Technology<\/span>等期刊上。目前已发表<\/span>SCI<\/span>论文<\/span>60<\/span>多篇,多次被同行引用,获国家授权发明专利<\/span>5<\/span>项。<\/span><\/span><\/p> 在野外应用研究方面:<\/span><\/span><\/strong><\/p> 先后参加了<\/span>“<\/span>十二五<\/span>”<\/span>国家水专项、<\/span>863<\/span>、国家重点研发计划长江黄河专项、湖北省及云南省重点专项等基础应用科研项目,重点研发了蓝藻水华预测预警、综合防控等关键技术,在大量野外原位试验的基础上研发了浅水富营养化湖泊草型清水态构建与维持的系列关键技术,验证了较高营养负荷条件下驱动草型转换的关键环境条件,授权了国家发明专利<\/span>4<\/span>项,实用新型专利多项,并逐步完善了高原富营养化湖泊草型清水态构建与维持关键技术体系。<\/span><\/span><\/p> <\/p><\/div>"
var yjfx=" 生物学<\/span>,水域生态学,环境地球化学。主要从事蓝藻水华控制与受损水体生态修复领域的研究工作。<\/span><\/span><\/p><\/div>"
var hjjry=" 获中国科学院<\/span><\/span>水生生物研究所<\/span><\/span>杰出创新奖<\/span><\/span>。<\/span><\/span><\/p><\/div>"
var cdkyxmqk=" <\/p><\/div>"
var dblz=" 1、Yanxue Zhang; Tiantian Yang; Yan Zhang; Gang Xu; Andreas Lorke; Min Pan; Feng He; Qingman Li; Bangding Xiao; Xingqiang Wu; Assessment of in-situ monitoring and tracking the vertical migration of cyanobacterial blooms using LISST-HAB. Water Research, 2024.257, 121693.(Nature Index收录, 环境学科领域国际权威期刊,中科院SCI期刊分区 1区Top) <\/span><\/span><\/p><\/span><\/p> 2、Huaming Wu; Xingqiang Wu; Lorenzo Rovelli; Andreas Lorke; Selection of photosynthetic traits by turbulent mixing governs formation of cyanobacterial blooms in shallow eutrophic lakes, The ISME Journal, 2024. 18(1).(Nature子刊, 微生物学领域国际权威期刊,中科院SCI期刊分区 1区Top) <\/span><\/span><\/p><\/p> 3、<\/span><\/span><\/p> Gang Xu; Yanxue Zhang; Tiantian Yang; Huaming Wu; Andreas Lorke; Min Pan; Bangding Xiao; Xingqiang Wu ; Effect of light-mediated variations of colony morphology on the buoyancy regulation of <\/span><\/span>Microcystis <\/span><\/span><\/em>colonies, Water Research, 2023, 235(1): 119839 (Nature Index收录, 环境学科领域国际权威期刊,中科院SCI期刊分区 1区Top) <\/span><\/span><\/p><\/p> 4、Huaming Wu, Xingqiang Wu*, Tiantian Yang, Chunbo Wang, Cuicui Tian, Bangding Xiao, and Andreas Lorke. Feedback Regulation of Surface Scum Formation and Persistence by Self-Shading of <\/span><\/span>Microcystis <\/span><\/span><\/em>Colonies: Numerical Simulations and Laboratory Experiments. Water Research, 2021: 116908. (中科院一区Top期刊,Top 5% in Environmental Sciences).<\/span><\/span><\/p><\/p> 5、<\/span><\/span><\/p> Hong, Pei, Keyin Yang, Yilin Shu, Bangding Xiao, Hailong Wu, Yunyun Xie, Yali Gu, Fangping Qian, and Xingqiang Wu*. Efficacy of auto-aggregating aerobic denitriers with coaggregation traits for bioaugmentation performance in biofilm-formation and nitrogen-removal. Bioresource Technology 2021: 337, 125391. (中科院一区Top期刊).<\/span><\/span><\/p><\/p> 6、Shenghe Cai, Yunlu Jia, Oscar Omondi Donde, Zhi Wang, Junqian Zhang, Tao Fang, Bangding Xiao, and Xingqiang Wu*. Effects of microcystin-producing and non-microcystin-producing <\/span><\/span>Microcystis <\/span><\/span><\/em>on the behavior and life history traits of Chironomus pallidivittatus, Environmental Pollution, 2021: 287: 117613. (中科院一区Top期刊). <\/span><\/span><\/p><\/p>