迟永刚
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2018~现在, 浙江师范大学, 教师
2013~2018, 中国科学院植物研究所, 助理研究员
2016~2017, 美国佐治亚理工学院, 访问学者
2009~2013, 中国科学院地理科学与资源研究所, 博士
2003~2006, 中国科学院水土保持研究所, 硕士
1999~2003, 西北农林科技大学, 学士
研究方向
[1] 碳与气候: 基于野外控制实验和联网观测, 揭示生态系统碳循环对气候变化的响应机制
[2] 植被遥感: 基于模型模拟和遥感数据, 分析植被物候以及生产力等关键过程的时空格局
科研项目
[1] 国家自然科学基金面上项目, 水稻光合物候的多尺度光谱表征及其对总初级生产力估算的影响, 42571128, 主持, 2026.01-2029.12
[2] 浙江省软科学研究计划项目, 基于卫星遥感的长三角地区碳足迹绘制, 2024C35014, 主持, 2024.01-2024.12
[3] 浙江省自然科学基金一般项目, 森林冠层内叶片光合性状梯度分布的光驱动机制研究, LY19C030004, 主持, 2019.01-2021.12
[4] 国家自然科学基金青年项目, 冬季增减雪对典型草原生态系统生产力的影响及机制—基于植物物候与功能性状的研究, 31400393, 主持, 2015.01-2017.12
论文发表
[1] Ding C#, Cai R#, Zhou L*, Zhang Z, Zhang X, Xu E, Chi Y*. 2026. Nitrogen fertilization enhances gross primary productivity by prolonging reproductive stage in the subtropical rice paddies. Agricultural and Forest Meteorology, 378, 111012.
[2] Cai R, Chi Y*, Ding C, Zhou L*. 2025. Tracking paddy rice yield using solar-induced chlorophyll fluorescence and a mechanistic light-response model in the middle and lower reaches of the Yangtze River. Environmental Research Letters, 20, 054056.
[3] Zhong D, Chi Y*, Huang Z, Liu P, Zhang G, Zhou L*. 2024. Vertical variations of photosystem energy partitioning in the canopy of the subtropical cropland. Journal of Geophysical Research: Biogeosciences, 129, e2023JG007945.
[4] Huang Z, Zhou L*, Zhong D, Liu P, Chi Y*. 2024. Declined benefit of earlier spring greening on summer growth in northern ecosystems under future scenarios. Agricultural and Forest Meteorology, 351, 110019.
[5] Liu P, Chi Y*, Huang Z, Zhong D, Zhou L*. 2024. Multidimensional response of China’s grassland stability to drought. Global Ecology and Conservation, 52, e02961.
[6] Huang Z, Zhou L*, Chi Y*. 2023. Spring phenology rather than climate dominates the trends in peak of growing season in the Northern Hemisphere. Global Change Biology, 29, 4543-4555.
[7] Chen J, Chi Y*, Zhou W, Wang Y, Zhuang J, Zhao N, Ding J, Song J, Zhou L*. 2021. Quantifying the dimensionalities and drivers of ecosystem stability at global scale. Journal of Geophysical Research: Biogeosciences, 126, e2020JG006041.
[8] Wang Y, Zhou L*, Zhuang J, Sun L, Chi Y*. 2021.The spatial heterogeneity of the relationship between gross primary production and sun-induced chlorophyll fluorescence regulated by climate conditions during 2007-2018. Global Ecology and Conservation, 29, e01721.
[9] Zhuang J, Zhou L*, Wang Y, Chi Y*. 2021. Nitrogen allocation regulates the relationship between maximum carboxylation rate and chlorophyll content along the vertical gradient of subtropical forest canopy. Agricultural and Forest Meteorology, 307, 108512.
[10] 章晓炜, 周蕾, 丁键浠, 赵宁, 迟永刚*. 2024. 基于日光诱导叶绿素荧光的水稻叶氮含量估算. 生态学报, 44(19), 8554-8563.
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