第一作者/通讯作者文章(*为通讯作者,#为共同一作)
1) Li J M, Li S Q, Zhao R, Xing S H, Chen H Y, Huang Y, Zhang L M, Xing S H, Zhang L M*, Li J*. 2025. Soil organic carbon dynamics (2008–2020) across different cultivated land use types in a subtropical region. Geoderma Regional. DOI: 10.1016/j.geodrs.2025.e00926. (SCI, IF=4.1)
2) Chen Z X#, Li J#, Huang K, Wen M M, Zhuang Q L, Liu L C, Zhu P, Jin Z N, Xing S H, Zhang L M*. 2023. An assessment of soil total phosphorus storage in a complex topography along China’s southeast coast based on multiple map scales. Pedosphere. DOI: 10.1016/j.pedsph.2023.09.012. (SCI, I区Top期刊, IF=5.734)
3) Li J, Tam C Y*, Tai P K*, Lau N C. 2021. Vegetation-heatwave correlations and contrasting energy exchange responses of different vegetation types to summer heatwaves in the Northern Hemisphere during the 1982–2011 period. Agricultural and Forest Meteorology, 296, 108208. (SCI, I区Top期刊, IF=5.734)
4) Li J, Fan K*, Zhou L M. 2017. Satellite Observations of El Niño Impacts on Eurasian Spring Vegetation Greenness during the Period 1982–2015. Remote Sensing, 9(7), 628. (SCI, IF=4.509)
5) Li J, Fan K*, Xu J J*, Powell Jr. A M, Kogan F. 2017. The effect of preceding wintertime Arctic polar vortex on springtime NDVI patterns in boreal Eurasia, 1982−2015. Climate Dynamics, 49: 23-35. (SCI, IF=4.901)
6) Li J, Fan K*, Xu Z Q. 2016. Asymmetric response in Northeast Asia of summer NDVI to the preceding ENSO cycle. Climate Dynamics, 47: 2765-2783. (SCI, IF=4.901)
7) Li J, Fan K*, Xu Z Q. 2016. Links between the late wintertime North Atlantic Oscillation and springtime vegetation growth over Eurasia. Climate Dynamics, 46: 987-1000. (SCI, IF=4.901)
8) 李晶,陈伟明,孙佳蕊,谢希临,张华,沈金泉,廖文强,邢世和,张黎明*. 2024. 基于 DNDC 模型评估极端高温和长期变暖对水田土壤有机碳的影响——以福建省漳州市为例.土壤学报
合作文章
1) Long J, Li J, et al. 2024. Spatiotemporal variations and driving factors of farmland soil organic carbon in various landforms of a complex topography. Soil and Tillage Research, 244, 106248. (SCI, IF=6.1)
2) Wu S, Luo M*, Zhao R, Li J, et al. 2023. Local mechanisms for global daytime, nighttime, and compound heatwaves. npj Climate and Atmospheric Science, 6(1): 36. (SCI, I区Top期刊, IF=8.624)
3) Long J, Li J, et al. 2023. Effects of raster resolution on quantifying farmland soil organic carbon stock in various landforms of a complex topography, China. Geoderma Regional, 34. (SCI, IF=4.1)
4) Luo M, Wang X, Dong N, Zhang W, Li J, Wu S, Ning G, Dai L, Liu Z*. 2022. Two different propagation patterns of spatiotemporally contiguous heatwaves in China. npj Climate and Atmospheric Science, 5(1): 1-11. (SCI, I区Top期刊, IF=8.624)
5) Zhang H, Luo M*, Zhao Y*, ..., Li J, et al. 2022. HiTIC-Monthly: A High Spatial Resolution (1 km×1 km) Monthly Human Thermal Index Collection over China from 2003 to 2020. Earth System Science Data Discussions: 1-40. (SCI, I区Top期刊, IF=10.4)
6) Zhang Y, Li J, Zhou L*. 2017. The Relationship between Polar Vortex and Ozone Depletion in the Antarctic Stratosphere during the Period 1979-2016. Advances in Meteorology. DOI: 10.1155/2017/3078079. (SCI, IF=2.064)
7) 车燕,邱龙霞,吴凌云,龙军,毋亭,李晶,邢世和,张黎明*.2023. 福建省水田土壤有机碳积累对未来温度升高的响应.环境科学,44(5). (EI)
8) 罗玉叶,邱龙霞,龙军,陈瀚阅,毋亭,李晶,邢世和,张黎明*. 2022. 不同秸秆还田率情境下的亚热带水田土壤的“碳汇”贡献模拟研究. 土壤学报.