研究队伍

姓  名:
朱广伟
性  别:
职  务:
太湖湖泊生态系统研究站站长
职  称:
研究员
学  历:
博士研究生
通讯地址:
江苏省南京市创展路299号
电  话:
025-86882186
邮政编码:
211135
传  真:
025-57714759
电子邮件:
gwzhu@niglas.ac.cn

简历:

工作简历

2009.01~今:   中国科学南京地理与湖泊研究所,研究员

2006.12~2007.05  德国柏林淡水生态与内陆渔业研究所,访问学者

2005.08~2008.12  中国科学院南京地理与湖泊研究所,副研究员

2003.09~2005.07  中国科学院南京地理与湖泊研究所,助理研究员

2001.11~2003.08  中国科学院南京地理与湖泊研究所,博士后


学习简历

1998.09~2001.10  浙江大学,环境工程专业,博士

1995.08~1998.08  中国科学院地球化学研究所,地球化学专业,硕士

1991.09~1995.07  华东地质学院,工业分析专业,学士


研究领域:

湖泊生态系统观测研究,湖库有害藻类生态学机制与防控

社会任职:

获奖及荣誉:

2023年,贵州省自然科学奖,二等奖,湖泊生源要素生物地球化学循环与生态环境效应。排名第4.

2022年,江苏省科学技术奖,二等奖,气候变化与营养盐富集对蓝藻水华的协同放大机制及应对。排名第3.

2021年,生态环境部环境保护科学技术奖,二等奖,大型水库水生态环境演变机制与水质安全保障,排名第2.

2018年,生态环境部环境保护科学技术奖,一等奖,湖泊蓝藻水华及湖泛监测预警和处置关键技术与应用,排名第2.

2017年,浙江省科学技术进步奖,二等奖, 钱塘江水域蓝藻水华防治与生态环境保护关键技术研究,排名第3.

2016年, 江苏省科学技术奖, 一等奖, 湖泊光学的理论方法与水色遥感应用,排名第4.

2016年,中国生态系统研究网络(CERN)科技贡献奖.

2013年,江苏省科学技术奖, 二等奖, 太湖水环境演化过程、驱动机制及生态效应,  排名第4.

代表论著:

[1]. Zou Wei, Cao Zhigang, Wang Xiaolong, Huang Qunfang, Xu Hai, Zhu Mengyuan, Zhang Yunlin, Qin Bowiang, Zhu Guangwei*. 2025. The Hydrological and Nutrient Conditions Mediate Algal Biomass Response to Compound Heatwave and  Drought Events in Large Shallow Lakes. Freshwater Biology, 70: e70061.

[2]. Xu Hai, Zou Wei, Zhu Guangwei*, Qiu Yu, Li Huiyun, Zhu Mengyuan, Paerl Hans W, Wu Zhixu, Qin Boqiang, Zhang Yunlin. 2025. Impoundment-induced stoichiometric imbalance exacerbated phosphorus limitation in a deep subtropical reservoir: Implications for eutrophication management. Water Research, 269: 122787.

[3].  Kang Lijuan, Zhu Mengyuan, Zhu Guangwei*, Xu Hai, Zou Wei, Xiao Man, Guo Chaoxuan, Zhang Yunlin, Qin Boqiang. 2024. Decreasing denitrification rates poses a challenge to further decline of nitrogen concentration in Lake Taihu, China. Water Research, 256: 121565.

[4]. Xiao Man, Wei Yanzhang, Zheng Danping, Shi Liandong, Huang Changchun, Wang Yang, Zhu Guangwei*. 2024. Outbreak of 2-methylisoborneol in a drinking water reservoir attributed to the cyanobacterium Pseudanabaena sp. Journal of Oceanology and Limnology,  42(6): 1789-1804.

[5]. Zou Wei, Xu Hai, Zhu Guangwei*, Zhu Mengyuan, Guo Chaoxuan, Xiao Man, Zhang Yunlin, Qin Boqiang. 2023. Why do algal blooms intensify under reduced nitrogen and fluctuating phosphorus conditions: The underappreciated role of non-algal light attenuation. Limnology and Oceanography, 68: 2274-2287.

[6]. Kang Lijuan, Zhu Guangwei*, Zhu Mengyuan, Xu Hai, Zou Wei, Xiao Man, Zhang Yunlin, Qin Boqiang, 2023. Bloom-induced internal release controlling phosphorus dynamics in large shallow eutrophic Lake Taihu, China. Environmental Research,  231: 116251.

[7]. Shi Pengcheng, Zhu Mengyuan, You Rifu, Li Huiyun, Zou Wei, Xu Hai, Xiao Man, Zhu Guangwei*. 2023. Rainstorm events trigger algal blooms in a large oligotrophic reservoir. Journal of Hydrology,  622: 129711.

[8]. Wu Tianhao, Zhu Guangwei*, Wang Zicong, Zhu Mengyuan, Xu Hai. 2022. Seasonal dynamics of odor compounds concentration driven by phytoplankton succession in a subtropical drinking water reservoir, southeast China. Journal of Hazardous Materials, 425: 128056.

[9]. Zou Wei, Zhu Guangwei*, Xu Hai, Zhu Mengyuan, Zhang Yunlin, Qin Boqiang. 2022. Temporal dependence of chlorophyll a–nutrient relationships in Lake Taihu: Drivers and management implications. Journal of Environmental Management,  306: 114476.

[10]. Zou Wei, Zhu Guangwei*, Xu Hai, Zhu Mengyuan, Qin Boqiang, Zhang Yunlin, Bi Yonghong, Liu Miao, Wu Tianhao. 2022. Elucidating phytoplankton limiting factors in lakes and reservoirs of the Chinese Eastern Plains ecoregion. Journal of Environmental Management,  318: 115542.

[11]. Guo Chaoxuan, Zhu Mengyuan, Xu Hai, Zhang Yunlin, Qin Boqiang, Zhu Guangwei*, Wang Jianjun*.  2022,Spatiotemporal dependency of resource use efficiency on phytoplankton diversity in Lake Taihu. Limnology and Oceanography, 67: 830-842.

[12].  Xu Hai, McCarthy M J, Paerl H W, Brookes J D, Zhu Guangwei*, Hall N S, Qin Boqiang, Zhang Yunlin, Zhu Mengyuan, Hampel J J, Newell S E, Gardner W S. 2021. Contributions of external nutrient loading and internal cycling to cyanobacterial bloom dynamics in Lake Taihu, China: Implications for nutrient management. Limnology and Oceanography, 66: 1492-1509.

[13]. Wu Tianhao, Zhu Guangwei*, Zhu Mengyuan, Xu Hai, Yang Jun, Zhao Xianfu. 2021. Effects of algae proliferation and density current on the vertical distribution of odor compounds in drinking water reservoirs in summer. Environmental Pollution, 288: 117683.

[14].  Zou Wei, Zhu Guangwei*, Cai Yongjiu, Xu Hai, Zhu Mengyuan, Gong Zhijun, Zhang Yunlin, Qin Boqiang. 2020. Quantifying the dependence of cyanobacterial growth to nutrient for the eutrophication management of temperate-subtropical shallow lakes. Water Research, 177: 115806.

[15]. Zou Wei; Zhu Guangwei*; Cai Yongjiu; Vilmi Annika; Xu Hai; Zhu Mengyuan; Gong Zhijun; Zhang Yunlin; Qin Boqiang; 2020. Relationships between nutrient, chlorophyll a and Secchi depth in lakes of the Chinese Eastern Plains ecoregion: Implications for eutrophication management, Journal of Environmental Management, 260: 109923.

[16]. Wu Tianhao, Zhu Guangwei*, Zhu Mengyuan, Xu Hai, Zhang Yunlin, Qin Boqiang. 2020. Use of conductivity to indicate long-term changes in pollution processes in Lake Taihu, a large shallow lake. Environmental Science and Pollution Research, 27: 21376-21385.

[17]. Guo Chaoxuan; Zhu Guangwei*; Qin Boqiang; Zhang Yunlin; Zhu Mengyuan; Xu Hai; Chen Yuwei; Hans W. Paerl; 2019. Climate exerts a greater modulating effect on the phytoplankton community after 2007 in eutrophic Lake Taihu, China: Evidence from 25 years of recordings, Ecological Indicators, 105: 82-91.

[18]. Xu Hai, Paerl Hans W, Qin Boqiang, Zhu Guangwei*, Hall Nathan S, Wu Yali. 2015. Determining critical nutrient thresholds needed to control harmful cyanobacterial blooms in eutrophic Lake Taihu, China. Environmental Science & Technology, 49: 1051-1059.

[19].Zhu Mengyuan, Zhu Guangwei*, Nurminen Leena, Wu Tingfeng, Deng Jianming, Zhang Yunlin, Qin Boqiang, Ventelä Anne-Mari. 2015. The Influence of macrophytes on sediment resuspension and the effect of associated nutrients in a shallow and large lake (Lake Taihu, China). PlosONE, 10(6): e0127915.

[20]. Zhu Mengyuan, Paerl Hans W, Zhu Guangwei*, Wu Tingfeng, Li Wei, Shi Kun, Zhao Linlin, Zhang Yunlin, Qin Boqiang, Caruso Alicia M. 2014. The role of tropical cyclones in stimulating cyanobacterial (Microcystis spp.) blooms in hypertrophic Lake Taihu, China. Harmful Algae, 39: 310-321.

[21]. Zhu Mengyuan, Zhu Guangwei*, Li Wei, Zhang Yunlin, Zhao Linlin, Gu Zhao. 2013. Estimation of the algal-available phosphorus pool in sediments of a large, shallow eutrophic lake (Taihu, China) using profiled SMT fractional analysis. Environmental Pollution, 173: 216-223.

[22]. Zhu Mengyuan, Zhu Guangwei*, Zhao Linlin, Yao Xin, Zhang Yunlin, Gao Guang, Qin Boqiang. 2013. Influence of algal bloom degradation on nutrient release at the sediment–water interface in Lake Taihu, China. Environmental Science and Pollution Research, 20: 1803-1811.

[23]. Zhu Guangwei*, Wang Fang, Gao Guang, Zhang Yunlin. 2008. Variability of phosphorus concentration in large, shallow and eutrophic Taihu Lake, China. Water Environment Research, 80(9): 832-839.

[24]. Zhu Guangwei*, Qin Boqiang, Gao Guang, Zhang Lu, Luo Liancong, Zhang Yunlin. 2007. Effects of hydrodynamics on phosphorus concentrations in water of Lake Taihu, a large, shallow, eutrophic lake of China. Hydrobiologia, 581: 53-61.

[25]. Chi Qiaoqiao, Zhu Guangwei*, Langdon, Alan.2007. Bioaccumulation of heavy metals in fishes from Taihu Lake, China. Journal of Environmental Sciences, 19(12): 1500-1504.

[26]. Zhu Guangwei*, Qin Boqiang, Zhang Lu, and Luo Liancong. 2006. Geochemical forms of phosphorus in sediments of three large, shallow lakes of China. Pedosphere, 16(6): 726-734.

[27]. Zhu Guangwei*, Qin Boqiang, Zhang Lu.2006. Phosphorus forms and bioavailability of lake sediments in middle and lower reaches of Yangtze River. Science in China: Series D Earth Sciences, 49(Supp I): 28-37.

[28]. Zhu Guangwei*, Qin Boqiang, Gao Guang. 2005. Direct evidence of phosphorus outbreak release from sediment to overlying water in a large shallow lake caused by strong wind wave disturbance. Chinese Science Bulletin, 2005, 50(6): 577-582.

[29]. Zhu Guangwei*, Chi Qiaoqiao, Qin Boqiang, Wang Wenmin. 2005. Heavy-metal contents in suspended solids of Meiliang Bay, Lake Taihu and its environmental significances. Journal of Environmental Sciences,  17(4): 672-675.



承担科研项目情况:

1. 2024.01~2027.12,丹江口水库磷循环失衡机制与富营养化风险研究,国家自然科学基金长江水科学研究联合项目,项目负责人;

2. 2023.01~2026.12,水库藻源性异味物质的发生机制与控制对策,国家自然科学基金面上项目,项目负责人;

3. 2022.11~2026.10,水源水库水质监控预警技术与辅助决策平台,国家重点研发项目课题,课题负责人;

4. 2019.01~2023.12,水库藻类水华形成的气象水文动力学机制及调控策略研究,国家自然科学基金重点项目,项目负责人;

5. 2017.01~2020.12,极端降雨对富营养化浅水湖泊水体磷补给的影响及生态效应,国家自然科学基金面上项目,项目负责人;

6.2015.04~2018.03,气候与人类影响下太湖有害蓝藻风险变化研究,科技部国际科技合作项目,项目负责人。