许依
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许依, 男, 生态与应用气象学院智慧农业系副教授, 入选首届中国科协青年人才托举工程博士生专项计划。研究领域为生态系统碳源汇和气候变化。以第一或通讯作者发表SCI论文10篇,中文核心论文3篇,参与发表Nature子刊等中英文论文40余篇。担任European Journal of Agronomy, Journal of Applied Ecology和Computers and Electronics in Agriculture等10余个农林和生态一区期刊审稿人。现担任Bulletin of Soil Biogeochemistry青年编委, Sustainability和Frontiers in Sustainable Food Systems客座编辑。
教育经历
06/2024-03/2025:联培博士,地学院,德国图宾根大学
09/2021–06/2025:博士,农学院,中国农业大学
09/2018–06/2020:硕士,国家非粮生物质原料研发中心,农学院,中国农业大学
09/2014–06/2018:本科,生物科学与技术学院,湖南农业大学
工作经历
12/2025-至今:南京信息工程大学生态与应用气象学院副教授
研究方向
农林生态系统碳氮循环:聚焦多样化种植的固碳特征和稳定机制;中低产田耕地质量提升;秸秆能源化利用的碳减排潜力
研究技术和方法
同位素标记技术;生物标志物;近红外光谱技术;酶动力学和酶谱技术;微生物高通量测序分析;整合分析
科研项目
2026.03 - 2029.03
南京信息工程大学引进人才科研启动经费资助项目,主持
2024.10 - 2025.06
首届中国科协青年人才托举工程博士生专项计划,主持
2026.01 - 2029.12
国家自然科学基金联合基金重点项目,内蒙古沿黄灌区盐碱地改良的土壤有机碳累积与稳定机制,子课题
2027.01 - 2029.12
国家自然科学基金青年科学基金项目,多年生深根植物根际沉积碳在深层土壤的微生物转化与矿物固持机制,主持
获得荣誉
1、 2025年:中国农业大学校优秀毕业生
2、 2024年:博士研究生国家奖学金
3、 2024年:中国农业大学博士研究生校一等奖学金
4、 2018年:湖南农业大学校三好学生学习标兵
5、 2018年:湖南农业大学校优秀毕业生
第一或通讯作者论文: (*为通讯作者文章)
查看全部文章: https://www.researchgate.net/profile/Yi-Xu-79?ev=hdr_xprf
1. Shi, W., Tan, T., Fang, Y., Liu, X., Chang, Y., Liu, Z., & Xu, Y*. Quantifying reasonable straw removal rate to achieve food security, bioenergy transition and climate mitigation in China. Resources, Conservation and Recycling, 2025, 215, 108114.
2. Xu, Y., Wu, S., Huang, F., Huang, H., Yi, Z., & Xue, S. Biomodification of feedstock for quality-improved biochar: a green method to enhance the Cd sorption capacity of Miscanthus lutarioriparius-derived biochar. Journal of Cleaner Production, 2022, 131241.
3. Wu, Y., Huang, H., Chen, F., Tan, T., & Xu, Y*. Soil organic carbon sequestration rate and spatiotemporal dynamics under perennial energy crops cultivation: a global meta-analysis. Soil and Tillage Research, 2024, 240, 106064.
4. Xu, Y., Duan, X., Wu, Y., Fu, T., Hou, W., Xue, S., & Yi, Z. The efficiency and stability of soil organic carbon sequestration by perennial energy crops cultivation on marginal land depended on root traits. Soil and Tillage Research, 2024, 235, 105909.
5. Xu, Y., Duan, X., Wu, Y., Huang, H., Fu, T., Chu, H., & Xue, S. Carbon sequestration potential and its main drivers in soils under alfalfa (Medicago sativa L.). Science of The Total Environment, 2024, 935, 173338.
6. Xu, Y., Zhou, J., Liu, C., Jia, R., Ji, H., Dippold, M. A., & Zang, H. Long–term rotational and perennial cropping benefit soil organic carbon stocks and ecosystem multifunctionality. Industrial Crops and Products, 2024, 209, 117980.
7. Xu, Y., Zhou, J., Feng, W., Jia, R., Liu, C., Fu, T., & Zang, H. Marginal land conversion to perennial energy crops with biomass removal enhances soil carbon sequestration. GCB Bioenergy, 2022, 14(10), 1117-1127.
8. Xu, Y., Zheng, C., Liang, L., Yi, Z., & Xue, S. Quantitative assessment of the potential for soil improvement by planting Miscanthus on saline-alkaline soil and the underlying microbial mechanism. GCB Bioenergy, 2021, 13(7), 1191-1205.
9. Xu, Y., Luo, B., Jia, R., Xiao, J., Wang, X., Yang, Y., & Zang, H. Quantifying synergies and trade-offs in the food-energy-soil-environment nexus under organic fertilization. Journal of Environmental Management, 2024, 119526.
10. Xu, Y., Wang, M. L., Devlet, A., Han, L., Tang, C., Tan, T., & Xie, G. H. A comprehensive method to select energy sorghum hybrids for bioethanol production. Biomass and Bioenergy, 2024, 191, 107436.
11. 许依, 汤姆, 薛帅, 易自力 & 王惠群. CTK菌剂对甜瓜养分积累和根际微生物的影响. 扬州大学学报, 2017, 38(02):100-105.
12. 许依, 唐朝臣, 何思洋, 周方圆, 孙磊, 李嵩博 & 谢光辉. 62份从美国引进高粱不育系种质能源相关产量和品质性状评价. 中国农业大学学报, 2020, 25(06):1-11.
13. 许依, 何思洋, 周方圆, 唐朝臣 & 谢光辉. 高粱杂交种茎叶产量与能源品质性状相关分析. 中国农业大学学报, 2021, 26(05):1-9.
其他作者
1. Ding, S., Xu, Y., Agathokleous, E., Li, T., Zheng, H., & Feng, Z. (2026). A global synthesis of spectroscopy-based prediction accuracy for soil carbon fractions: A systematic review. Soil and Tillage Research, 262, 107242.
2. Wang, X., Tian, J., Gull, N., Siddique, I. A., Zhou, Y., Li, Y., ... & Xu, Y. (2026). Fluoride Accumulation in Tea Plants: Soil-Plant Interactions, Health Risks and Mitigation Strategies. Global Environmental Science, 2(2), 172-192.
3. Wang, S., Xu, Y., Harrison, M. T., Zhou, Y., Liu, K., Zhou, D., ... & Zhu, B. (2026). Rice-crayfish farming systems improve soil carbon stocks and ecosystems services (No. EGU26-2172). Copernicus Meetings.
4. Tan, T., Hu, W., Fu, T., Li, M., Campbell, G., Smith, P., ... & Xu, Y. (2026). Long-term Miscanthus cultivation enhances soil quality in degraded acidic red soils: A multi-indicator assessment. Industrial Crops and Products, 242, 123001.
5. Zhao, D., Yu, W., Brown, R. W., Liu, Z., Xu, Y., Wang, Z., ... & Zhou, S. (2026). Straw Incorporation Strategies Regulate Detritusphere Organic Carbon and Nutrient Accumulation. European Journal of Soil Science, 77(2), e70297.
6. He, F., Zhu, J., Xu, Y., Zhou, Y., Dong, H., Xie, Q., ... & Liu, Z. (2025). Long-term Rice-crayfish Co-culture Farming System Benefits Soil Organic Carbon Storage and Soil Quality in the Jianghan Plain, China. Journal of Soil Science and Plant Nutrition, 1-13.
7. Jia, R., Chen, M., Zhou, J., Xu, Y., Huang, J., Yang, Y., ... & Zang, H. (2025). Diversified crop rotations strengthen maize seedling drought tolerance by modulating rhizosphere microbiota and enzyme activities. Plant, Cell & Environment, 48(12), 8604-8615.
8. He, C., Li, Z., Xu, Y., Li, M., Fu, T., Yi, Z., & Xue, S. (2025). Spatial heterogeneity in biomass yield and quality driving regional strategies for enhanced rice straw bioeconomic potential: a case study in Hunan, China. Bioresource Technology, 133162.
9. Liu, Z., Zhao, C., Zhang, N., Wang, J., Li, Z., Uwiragiye, Y., ... & Cheng, Y. (2025). Degradable film mulching increases soil carbon sequestration in major Chinese dryland agroecosystems. Nature Communications, 16(1), 5029.
10. Yang, L., Chen, X., Jin, W., Zhou, J., Xu, Y., Liu, R., ... & Du, X. (2025). Integrating source-sink coordination and pod-setting optimization: A field study on plant density effects for soybean productivity enhancement in the Huang-Huai-Hai Plain. Journal of Agriculture and Food Research, 22, 102070.
11. Liu, X., Xu, Y., Ameen, A., Gull, N., Fan, S., & Liu, G. (2025). Precipitation, elevation, and bamboo-to-tree ratio regulate soil organic carbon accumulation in mixed Moso bamboo forests. Plant and Soil, 514(2), 2923-2938.
12. Zhang, J., Qian, X., Liu, Q., Xu, Y., Yang, S., Meng, S., ... & Zang, H. (2025). Direct measurements unveil overestimations in nitrous oxide emissions from legume-based strip intercropping. European Journal of Agronomy, 168, 127619.
13. Jia, R., Qu, X., Chen, M., Xu, Y., Liu, Z., Peixoto, L., ... & Zang, H. (2025). Soil microbial variability in contrasting grown flue‐cured tobacco under long‐term continuous cropping. Soil Use and Management, 41(2), e70063.
14. Yan, Z., Xu, Y., Chu, J., Guillaume, T., Bragazza, L., Li, H., ... & Zang, H. (2025). Long-term diversified cropping promotes wheat yield and sustainability across contrasting climates: Evidence from China and Switzerland. Field Crops Research, 322, 109764.
15. Qu, X., Yao, W., Ji, H., Xu, Y., Jia, R., Chen, X., ... & Zang, H. (2025). Optimizing nitrogen fertilization and irrigation strategies to balance agroecosystem services in the wheat-maize double cropping system: A 21-year field study. Field Crops Research, 322, 109706.
16. Shao, G., Xu, Y., Zhou, J., Tian, P., Ai, J., Yang, Y., ... & Zang, H. (2024). Enhanced soil organic carbon stability in rhizosphere through manure application. Soil and Tillage Research, 244, 106223.
17. Tang, C., Xu, Y., Zhang, R., Mo, X., Jiang, B., & Wang, Z. (2024). Comprehensive quality assessment of 296 sweetpotato core germplasm in China: A quantitative and qualitative analysis. Food Chemistry: X, 24, 102009.
18. Huang, J., Xu, Y., Peng, M., Jia, R., Chu, J., Kumar, A., ... & Zang, H. (2024). Navigating the trade-offs in crop production and soil quality through alternative cropping. Field Crops Research, 318, 109597.
19. Ma, H. Y., Surigaoge, S., Xu, Y., Li, Y. C., Christie, P., Zhang, W. P., & Li, L. (2024). Responses of soil microbial community diversity and co-occurrence networks to interspecific interactions in soybean/maize and peanut/maize intercropping systems. Applied Soil Ecology, 203, 105613.
20. Zhang, S., Xue, L., Liu, J., Jia, P., Feng, Y., Xu, Y., ... & Zhao, X. (2024). One–third substitution of nitrogen with cow manure or biochar greatly reduced N2O emission and carbon footprint in saline–alkali soils. Field Crops Research, 316, 109517.
21. Wen, S., Yao, W., Tian, B., Xu, L., Liu, Q., Xu, Y., ... & Zang, H. (2024). Spatiotemporal dynamic of rice production and its carbon footprint in Hainan, China: Implications for food security and environmental sustainability (Vol. 53, No. 4, pp. 418-429).
22. Shao, H., Wu, X., Duan, J., Zhu, F., Chi, H., Liu, J., ... & Mi, G. (2024). How does increasing planting density regulate biomass production, allocation, and remobilization of maize temporally and spatially: A global meta-analysis. Field Crops Research, 315, 109430.
23. Shao, H., Wu, X., Chi, H., Zhu, F., Liu, J., Duan, J., ... & Mi, G. (2024). How does increasing planting density affect nitrogen use efficiency of maize: A global meta-analysis. Field Crops Research, 311, 109369.
24. Tan, T., Xu, Y., Liao, X., Yi, Z., & Xue, S. (2024). Formulating new types of rice husk biochar‐based fertilizers for the simultaneous slow‐release of nutrients and immobilization of cadmium. GCB Bioenergy, 16(6), e13142.
25. Wu, H., Xue, S., Wang, L., Chen, Y., Xu, Y., Xu, Y., & Chen, F. (2024). Pleurotus pulmonarius Pretreated Lignocellulosic Feedstock as a Sustainable Precursor to Produce Biochar for Efficient Removal of NO3–. ACS Sustainable Resource Management, 1(3), 530-538.
26. Liu, C., Feng, X., Xu, Y., Kumar, A., Yan, Z., Zhou, J., ... & Zang, H. (2023). Legume-based rotation enhances subsequent wheat yield and maintains soil carbon storage. Agronomy for Sustainable Development, 43(5), 64.
27. Liu, C., Xu, Y., Zhao, J., Nie, J., Jiang, Y., Shang, M., ... & Zeng, Z. (2023). Optimizing sowing date and plant density improve peanut yield by mitigating heat and chilling stress. Agronomy Journal, 115(5), 2521-2532.
28. Xu, Q., Wu, S., Fu, T., Xu, Y., Yang, S., Li, M., ... & Xue, S. (2023). Unlocking the potential of Dongting Lake-grown Miscanthus lutarioriparius biomass: A comprehensive quality analysis and bioproduct application study. Science of The Total Environment, 896, 165276.
29. Hou, W., Xu, Y., Xue, S., Li, J., Yang, Y., Yi, Z., & Fu, T. (2023). Effects of soil physics, chemistry, and microbiology on soil carbon sequestration in infertile red soils after long‐term cultivation of perennial grasses. GCB Bioenergy, 15(2), 239-253.
30. Fu, T., Xu, Y., Hou, W., Yi, Z., & Xue, S. (2022). Long‐term cultivation of Miscanthus and switchgrass accelerates soil organic carbon accumulation by decreasing carbon mineralization in infertile red soil. GCB Bioenergy, 14(9), 1065-1077.
31. Fu, T., Xu, Y., Li, M., Xue, S., Duan, Z., & Xie, G. H. (2022). Bioenergy production potential of 16 energy crops on marginal land in China. Bioenergy Research, 15(2), 998-1016.
32. Zhou, F., He, S., Wang, M. L., Tang, C., Xu, Y., Fan, F., & Xie, G. H. (2021). Correlation and combining ability of main chemical components in sorghum stems and leaves using cytoplasmic male sterile lines for improving biomass feedstocks. Industrial Crops and Products, 167, 113552.
33. He, S., Tang, C., Wang, M. L., Li, S., Diallo, B., Xu, Y., ... & Xie, G. H. (2020). Combining ability of cytoplasmic male sterility on yield and agronomic traits of sorghum for grain and biomass dual-purpose use. Industrial Crops and Products, 157, 112894.
34. 张建文, 杜健, 孙建好, 吴海燕, 孙宁科, 索东让, 许依 & 张盛. (2025). 长期施肥对灌漠土有机碳含量及碳储量的影响. 土壤, 57(05), 1004-1012.
35. 刘春燕, 张利影, 周杰, 许依, 杨亚东, 曾昭海 & 臧华栋. (2024). 豆科作物轮作强化农田生态系统功能的研究进展. 作物学报, 50(08), 1885-1895.
37. Shang, Y., Abalos, D., Xu, Y., Liang, Z., & Olesen, J. E. (2026). Inconsistent methods compromise estimates of soil organic carbon stock changes following conversion from annual to perennial cropping systems: A meta-analysis. European Journal of Agronomy, 179, 128191.
38. Wei, J., Chen, H., Xu, Y., Chai, Q., Yin, W., Gan, G., ... & Abdalla, M. (2026). Diversifying cropping with vetch enhances agroecosystem services under reduced nitrogen supply: Insights from field measurements and modeling evidence. Agricultural Systems, 238, 104892.
兼职信息
1、GCB Bioenergy编委
2、Bulletin of Soil Biogeochemistry青年编委
3、Agricultural Ecology and Environment青年编委
4、iMeta青年编委
5、Nitrogen Cycling青年编委
6、Modern Agriculture青年编委
7、Circular Agricultural Systems青年编委
8、Sustainability客座编辑
9、Frontiers in Sustainable Food Systems客座编辑
10、Carbon Neutrality青年编委
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