余光辉
- 教师拼音名称:Yu Guanghui
- 职务:中心副主任
- 性别:男
- 职称:教授
- 所属院系:地球系统科学学院
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国家自然科学基金联合基金重点项目(U22A20608): 红壤农田微生物固氮过程及其调控机制, 2023.01–2026.12, 在研, 主持;
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国家重点研发计划项目课题(2022YFC3701401): 土壤微界面有机污染物与活性组分过程模拟芯片与原位成像技术, 2022.12–2026.11, 在研, 主持;
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国家重点研发计划项目课题(2017YFD0800803): 沼渣一体化制肥及高值化利用技术与智能装备研发, 2017.01–2020.12, 结题, 主持;
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国家重点研发计划项目课题(2020YFC1806803): 多组分土壤互作界面污染物物化-生物耦合过程表征, 2020.09–2024.08, 在研, 骨干;
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国家自然科学基金面上项目(41977271): 活性铁矿物介导的土壤碳循环机制及其对全球变暖的响应, 2020.01–2023.12, 在研, 主持;
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王翔, 余光辉*, Yakov Kuzyakov, 殷博昊, Andreas Kappler, 刘丛强, 2025, 生态系统中真菌生物量对土壤稳定碳库的贡献, 中国科学:地球科学, 55: 10.1360/N072024-0088.
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Wang, X., G.-H. Yu*(余光辉), Y. Kuzyakov, B.-H. Yin, A. Kappler, C.-Q. Liu, 2025, Contribution of fungal biomass to persistent soil carbon across biomes. SCIENCE CHINA Earth Sciences, 2025, DOI: 10.1007/s11430-024-1474-2.
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Guo, Y.-X., G.-H. Yu*(余光辉), S. Hu, C. Liang, A. Kappler, M. T. Jorgenson, L. Guo, G. Guggenberger, 2024. Deciphering the intricate control of minerals on deep soil carbon stability and persistence in Alaskan permafrost, Global Change Biology, 30(10): e17552.
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Xu, L.-X., F. Wang, Y. Yao, M. Yao, Y. Kuzyakov, G.-H. Yu*(余光辉), C.-Q. Liu, 2024, Key role of microbial necromass and iron minerals in retaining micronutrients and facilitating biological nitrogen fixation in paddy soils, Fundamental Research, DOI: 10.1016/j.fmre.2024.02.007.
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Li, H., G.-H. Yu(余光辉)*, L. Hao, Y. Qiu, S. Hu*, 2023, Mycorrhizae enhance reactive minerals but reduce mineral-associated carbon, Global Change Biology, 29: 5941-5954.
著作成果
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沈其荣...余光辉...等 著. 中国有机(类)肥料. 北京: 中国农业出版社, 2021.12. (ISBN 9787109277960)[获2022年国家出版基金优秀项目].
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余光辉, 何品晶 著. 基于絮体多层结构的污水厂污泥脱水和颗粒化机制研究. 上海: 同济大学出版社, 2017.08. (ISBN 978-7-5608-6964-3).
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曹文平, 余光辉 主编.《环境工程导论》, 北京: 中国质检出版社, 2012, 21世纪高等学校规划教材 (ISBN 978-7-5026-3616-6).
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Fu-Sheng Sun, Guang-Hui Yu* (2022). Chapter 7: Fate of bio-contaminants in organic wastes during composting and vermicomposting processes. In Fate of Biological Contaminants During Recycling of Organic Wastes, Kui Huang, Sartaj Ahmad Bhat, Guangyu Cui, Eds. Elsevier Inc: Cambridge; pp 143–156.
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Guang-Hui Yu (2018). Chapter 5: Root exudates and microbial communities drive mineral dissolution and the formation of nano-size minerals in soils: Implications for soil carbon storage. In Root Biology, Giri, B.; Prasad, R.; Varma, A., Eds. Springer, pp 143–166.