成果/Result
- Examining Land Cover and Greenness Dynamics in Hangzhou Bay in 1985-2016 Using Landsat Time-Series Data被引量:28收藏
- 作者:Li, Dengqiu[1] Lu, Dengsheng[1] Wu, Ming[2] Shao, Xuexin[2] Wei, Jinhong[1]
- 机构:Zhejiang Agr & Forestry Univ;Chinese Acad Forestry
- 来源:REMOTE SENSING 2018
- 关键词:land cover change Landsat NDVI time series vegetation greenness Hangzhou Bay coastal wetland ecosystem
- Comparative study of methane emission in the reclamation-restored wetlands and natural marshes in the Hangzhou Bay coastal wetland被引量:12收藏
- 作者:Xiong, Jing[1] Sheng, Xuancai[2] Wang, Meng[1] Wu, Ming[1] Shao, Xuexin[1]
- 机构:Chinese Acad Forestry;State Forestry Adm
- 来源:ECOLOGICAL ENGINEERING 2022
- 关键词:Methane emissions Reclamation-restored wetland Natural wetland Coastal wetland Global warming
- Effects of influent salinity on water purification and greenhouse gas emissions in lab-scale constructed wetlands被引量:11收藏
- 作者:Shao, Xuexin[1] Zhao, Linli[1] Sheng, Xuancai[2] Wu, Ming[1]
- 机构:Chinese Acad Forestry;State Forestry Adm
- 来源:ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH 2020
- 关键词:COD Nutrients Carbon dioxide Methane Nitrous oxide
- Shifting of the Migration Route of White-Naped Crane (Antigone vipio) Due to Wetland Loss in China被引量:7收藏
- 作者:Jia, Yifei[1,2] Liu, Yunzhu[2] Jiao, Shengwu[3] Guo, Jia[1,2] Lu, Cai[1,2]
- 机构:Beijing Forestry Univ;Beijing Forestry Univ;Chinese Acad Forestry;Nanjing Forestry Univ;NSW Dept Planning Ind & Environm
- 来源:REMOTE SENSING 2021
- 关键词:landcover change migratory behavior flexibility satellite tracking stopover site utilization distribution white-naped crane
- Influencing Factors of Methane Emission Dynamics at Different Water Depths in Hangzhou Bay Reed Wetland, China被引量:4收藏
- 作者:Sho, Xuexin[1] Sheng, Xuancai[1] Wu, Ming[1] Wu, Hao[1] Ning, Xiao[1]
- 机构:Chinese Acad Forestry
- 来源:ENVIRONMENTAL PROGRESS & SUSTAINABLE ENERGY 2017
- 关键词:Phragmites australis CH4 emissions coastal wetland seasonal dynamics temperature
- Thinning alters nitrogen transformation processes in subtropical forest soil: Key roles of physicochemical properties被引量:2收藏
- 作者:Yao, Liangjin[1] Wu, Chuping[1] Jiang, Bo[1] Wu, Ming[2] Shao, Xuexin[2]
- 机构:Zhejiang Acad Forestry;Chinese Acad Forestry
- 来源:SCIENCE OF THE TOTAL ENVIRONMENT 2024
- 关键词:Forest management Nitrogen cycling Thinning intensity Microbial activity Soil properties
- Environmental Variables Better Explain Changes in Potential Nitrification and Denitrification Activities than Microbial Properties in a Thinning Subtropical Forest Soil被引量:0收藏
- 作者:Li, Niu[2] Yao, Liangjin[1] Wu, Chuping[1] Jiang, Bo[1] Wu, Ming[2]
- 机构: Zhejiang Academy of Forestry; Wetland Ecosystem Research Station of Hangzhou Bay
- 来源:SSRN 2024
- 关键词:Bacteria - Forestry - Fungi - Nitrification - Nitrogen - Organic carbon - Physicochemical properties - Soils - Structural properties - Tropics
- Nitrogen removal capacity and influencing factors of inland wetland under human activities: Jiashan County, China被引量:0收藏
- 作者:Li, Niu[1] Zhang, Youzheng[2] Wu, Jinlong[1] Li, Junzhen[1] Gao, Jingwen[1]
- 机构: Wetland Ecosystem Research Station of Hangzhou Bay; Key Laboratory of Engineering Oceanography
- 来源:River 2024
- 关键词:Denitrification - Nitrogen removal - Water resources
- Effect of Human Activities on Characteristics of Water Nitrogen and Phosphorus in Plain Water Network in Theyangtze River Delta被引量:0收藏
- 作者:Yin, Yuan-Feng[1,2] Liu, Peng-Cheng[2] Shao, Xuexin[1] Li, Niu[1] Wu, Jinlong[1]
- 机构: State Key Laboratory of Wetland Conservation and Restoration; College of Ecology and Environment
- 来源:SSRN 2025
- 关键词:Rivers
- Water Body Utilization Pattern Influences Greenhouse Gas Emissions in Jiashan County, China被引量:0收藏
- 作者:Li, Niu[1] Wu, Jinlong[1,2] Li, Junzhen[1] Xiong, Jing[1] Yuan, Haijing[1]
- 机构: Wetland Ecosystem Research Station of Hangzhou Bay; College of Forestry and Biotechnology; Key Laboratory of Engineering Oceanography
- 来源:SSRN 2024
- 关键词:Aquaculture - Biochemical oxygen demand - Dissolved oxygen - Gas emissions - Greenhouse gases - Industrial emissions - Lakes - Population statistics - Rivers - Urban growth - Water supply