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李继伟

发布日期:2025-10-24   阅读次数:

基本信息

李继伟,男,博士,副教授,硕士研究生导师,中共党员。2022年于毕业于中国科学院大学生态学。主要从事水土保持与生态修复,生态系统碳收支,全球变化生态研究工作。近年来在国内外期刊发表论文60余篇,其中第一作者在Global Change Biology、Environmental Science & Technology、Soil Biology and Biochemistry等期刊发表论文25篇,入选ESI高被引论文2篇。担任Trends in Ecology & Evolution、Global Change Biology、Agricultural and Forest Meteorology等20多个SCI期刊审稿专家。

联系方式

E-mail: jiweili@nwafu.edu.cn

通讯地址:陕西省咸阳市杨陵区西农路26号水保所

邮政编码:712100

工作经历

2022年7月-2023年12月,西北农林科技大学,水土保持科学与工程学院,博士后,助理研究员

2024年1月-2025年7月,西北农林科技大学,水土保持科学与工程学院,博士后,副研究员(破格)

2025年7月-至今,西北农林科技大学,水土保持科学与工程学院,副教授

研究方向

水土保持与生态修复、土壤微生物生态、生态系统碳收支、全球变化生态学

荣誉获奖

(1) 陕西省高等学校科学研究优秀成果一等奖(2025)

(2) 中国科学院院长特别奖(2022)

(3) 教育部博士研究生国家奖学金(2020)

(4) 河南省优秀毕业生(2018)

(5) 教育部硕士研究生国家奖学金(2017)

承担科研项目情况:

(1)国家自然科学基金面上项目(42477375),47万,2025-2028,骨干

(2)国家自然科学基金青年项目(42307578),30万,2024-2026,主持

(3)中国博士后特别资助项目(2024T170736),18万,2024-2026,主持

(4)陕西省博士后项目(2023BSHYDZZ76),8万,2023-2025,主持

(5)黄土与第四纪国家重点实验室开放课题(SKLLQG2230),2万,2023-2024,主持

(6)西北土地退化与生态恢复省部共建国家重点实验室开放基金(LDER2023Q04),10万,2023-2024,主持

代表论著:

(1)Li, J.W., Wu, J.Z., Liang, C., Shangguan, Z.P., & Deng, L., 2025. Global change reshapes microbial residues and plant lignin components in soils. Environmental Science & Technology, 59, 21967−21977.

(2)Yu, J.Y,  Li, J.W. *, Wu, J.Z., Shangguan, Z.P., Deng, L., 2025. Patterns and controlling factors of soil microbial necromass carbon in global ecosystems. Journal of Environmental Management, 385, 125632.

(3)Li, J.W., Deng, L., Peñuelas, J., Wu, J., Shangguan, Z., Sardans, J., Peng, C., Kuzyakov, Y., 2023. C:N:P stoichiometry of plants, soils, and microorganisms: Response to altered precipitation. Global Change Biology, 29, 7051–7071.

(4)Li, J.W., Wu J.Z., Yu J.Y., Wang K.B., Li J.P., Cui Y.X., Shangguan Z.P., Deng L*. 2024. Soil enzyme activity and stoichiometry in response to precipitation changes in terrestrial ecosystems. Soil Biology and Biochemistry, 191, 109321.

(5)Yu, J.Y., Yu, Z.J., Li, J.W*., Xie, J.B., Shangguan, Z.P., Deng, L. 2023. Responses of soil microbial biomass C: N: P stoichiometry to increased precipitation and nitrogen deposition in temperate shrublands. European Journal of Soil Biology, 119, 103553.

(6)Li, J.W., Xie, J.B., Wu, J.Z., Cui, Y.X., Dong, L.B., Liu, Y.L., Hai, X.Y., Li, Y., Shangguan, Z.P., Peng, C.H., Deng, L*., 2023. Soil microbial respiration regulated by their stoichiometric imbalances: evidence from a humidity gradient case. Pedosphere, 33, 905–915.

(7)Li, J.W., Shangguan, Z.P., Deng, L*., 2022. Free particulate organic carbon plays critical roles in carbon accumulations during grassland succession since grazing exclusion. Soil and Tillage Research, 220, 105380. 

(8)Li, J.W., Dong, L.B., Liu, Y.L., Wu, J.Z., Wang, J., Shangguan, Z.P., Deng, L*., 2022. Soil organic carbon variation determined by biogeographic patterns of microbial carbon and nutrient limitations across a 3, 000-km humidity gradient in China. Catena, 209, 105849.

(9)Li, J.W., Xie, J.B., Zhang, Y., Dong, L.B., Shangguan, Z.P., Deng, L*., 2022. Interactive effects of nitrogen and water addition on soil microbial resource limitation in a temperate desert shrubland. Plant and Soil, 475, 1–18.

(10)Li, J.W., Shangguan, Z.P., Deng, L*., 2020. Dynamics of soil microbial metabolic activity during grassland succession after farmland abandonment. Geoderma, 363, 114167.

(11)Li, J.W., Wang, K.B., Shangguan, Z.P., Deng, L*., 2022. Coupling and decoupling of soil carbon, nitrogen and phosphorus stocks following grazing exclusion in temperate grasslands. Catena, 211, 106003.

(12)Li, J.W., Li, M.Y., Dong, L.B., Wang, K.B., Liu, Y.L., Shangguan Z.P., Deng, L*., 2020. Plant productivity and microbial composition drive soil carbon and nitrogen sequestrations following cropland abandonment. Science of The Total Environment, 744, 140802.

(13)李继伟, 邓蕾, 上官周平. “双碳”目标下水土保持碳汇计量、监测与评估的思考. 中国水土保持科学, 2024, 22(2): 154–158.