论文:
1. Zhou M. Y., Wang Y. C., Huang G. Y., Wang Z. D.*, 2025. Tuning N/S Ratio in co-doped carbon materials for enhanced selective removal of bisphenol A and bisphenol S, Journal of Water Process Engineering, 79: 109067.
2. Yao C. J., Han C., Wang Z. D., et al., 2023. Water Quality Degradation in Urban Rivers of Dar es Salaam, Tanzania: Changes, Status, and Causes, Water, Air, & Soil Pollution, 234: 224.
3. 丁琪琪, 龚雄虎, 王兆德等, 2022. 基于多指标综合评分法筛选地表水环境优先污染物-以湖北涨渡湖为例, 湖泊科学, 34(1): 90-107.
4. 廖润华, 吴小刚, 王兆德等, 2021. 太湖流域滆湖围网拆除后沉积物营养盐和重金属空间分布特征及评价, 湖泊科学, 33(5): 1436-1447.
5. Han Chao, Ren Jinghua, Paul N. Williams, Ke Fan, Shen Qiushi, Wang Zhaode*, Xu Di, Luo Jun, 2019. High-resolution imaging of rhizosphere oxygen (O2) dynamics in Potamogeton crispus: effects of light, temperature and O2 content in overlying water. Plant and Soil, 441: 613 – 627.
6. Han Chao, Ren Jinghua, Wang Zhaode*, Yang Shika, Ke Fan, Xu Di, Xie Xianchuan, 2018. Characterization of phosphorus availability in response to radial oxygen losses in the rhizosphere of Vallisneria spiralis. Chemosphere, 208: 740 – 748.
7. Han Chao Ren Jinghua, Wang Zhaode, et al., 2017. A novel hybrid sensor for combined imaging of dissolved oxygen and labile phosphorus flux in sediment and water. Water Research, 108: 179 – 188.
8. Gu Xiaozhi, Chen Kaining, Wang Zhaode, 2016. Response of N2O emissions to elevated water depth regulation: comparison of rhizosphere versus non-rhizosphere of Phragmites australis in a field-scale study. Environmental Science and Pollution Reaearch, 23 (6): 5268 – 5276.
9. Wang Zhaode, Li Shuai, Zhu Jun, Zhang Zhijian, 2013. Phosphorus partitioning between sediment and water in the riparian wetland in response to the hydrological regimes. Chemosphere, 90: 2288 – 2296.
10. Zhang Zhijian, Wang Zhaode, Joseph Holden, et al., 2012. The release of phosphorus from sediment into water in subtropical wetlands: a warming microcosm experiment. Hydrological Processes, 26: 15 – 26.
11. Zhang Zhijian, Wang Zhaode, Wang Yaowei, et al., 2011. Properties of phosphorus retention in sediments under different hydrological regimes: A laboratory-scale simulation study. Journal of Hydrology, 404: 109 – 116.
12. Wang Zhaode, Yao Juxiang, Li Shuai, Zhang Jianying, Li Jinjin, Lin Xianyong, Zhang Zhijian, 2010. Spatial Status and Retention Potential of Phosphorus in Riparian Wetlands of the Southern Taihu Basin, China. Wetlands, 30: 149 – 157.
发明专利:
1. 王兆德; 刘成; 申秋实; 张雷; 崔江伟. 基于图像识别的河湖水草打捞系统及智能机器人, 2026.4.24, CN202610057723.8
2. 刘成; 申秋实; 张雷; 王兆德. 一种基于外源颗粒物输入影响的常态化疏浚判断方法, 2026.2.17, 中国, CN202610069950.2
3. 韩超; 申秋实; 王兆德; 一种界面精准标识的原位保真投放装置, 2022.9.13, CN202222419405.1
4. 韩超; 王兆德; 柯凡; 许笛; 一种便捷式沉积物剖面间隙水原位快速取样装置, 2021.09.10, 中国, CN202010760396.5
5. 韩超; 王兆德; 柯凡 ; 一种水生植物根系分泌物原位收集装置, 2018.12.29, 中国, CN201811634672.2
6. 张路, 杜应旸, 王兆德. 一种降低污染河流中总磷的方法,2014.2.5,中国,CN102849904B.
7. 范成新, 王兆德, 周麒麟. 基于疏浚底泥的植生性基质及裸露坡面的生态修复方法,2013.5.1,中国,ZL201110090030.2.
8. 王兆德, 周麒麟, 范成新. 一种不稳定土石边坡的生态修复构造法,2012.7.4,中国,ZL201110024896.3.