School of Earth System Science
Professor
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Soil Science
yuguanghui@tju.edu.cn
Rm 313, Building No.16
300072
Guanghui Yu, professor of Soil Science, currently works at the Institute of Surface-Earth System Science, School of Earth System Science, Tianjin University. He obtained his PhD in Environmental Engineering from Tongji University in 2009. Professor Yu’s specific research interests include: (1) Biogeochemical Cycling of C and Fe in Soil. (2) Fungal Biomineralization. (3) Soil Pollution and Remediation. Professor Yu has published over 100 peer-reviewed SCI papers in international journals, including Current Biology, Geochimica et Cosmochimica Acta, Environmental Science and Technology, etc. Professor Yu is currently the Associate Editors of 《Waste Management》and 《Soil Use & Management》.
- Doctoral degree| Tongji University| Environmental Engineering| 2009
- Master’s Degree| Qingdao Technological University| Environmental Engineering| 2006
- Bachelor’s Degree| Jinan University| Environmental Engineering| 2003
- (1) Biogeochemical Cycling of C, N, and Fe in Soil.
(2) Fungal Biomineralization.
(3) Soil Pollution and Remediation.
- 《Waste Management》Associate Editor
- 《Journal of the Science of Food and Agriculture》副主编
- 《Soil Use & Management》Associate Editor
- 《农业环境科学学报》编委
- 《Research of Environmental Sciences》Editor
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2018.9-Now
School of Earth System Science | Tianjin University | Professor  -
2016.10-2017.3
Department of Crop and Soil Science | Oregon State University | Visiting Scholar  -
2016.1-2018.8
College of Resources & Environmental Sciences | Nanjing Agricultural University | Professor  -
2015.4-2016.3
Department of Plant Pathology | North Carolina State University | Visiting Scholar  -
2011.1-2015.12
College of Resources & Environmental Sciences | Nanjing Agricultural University | Associate Professor  -
2009.10-2010.12
College of Resources & Environmental Sciences | Nanjing Agricultural University | Assistant Professor 
- Papers
- [1] 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.
- [2] 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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- [3] 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.
- [4] Sun, F.-S., C. M, G.-H. Yu(余光辉)*, Y. Kuzyakov, Y.-C. Lang, P.-Q. Fu, L.-J. Guo, H. H. Teng, C.-Q. Liu, 2023, Organic carbon preservation in wetlands: Iron oxide protection vs. thermodynamic limitation. Water Research, 241: 120133.
- [5] Dong*, H., Q. Zeng, Y. Sheng, C. Chen, G. Yu(余光辉), Andreas Kappler. Coupled iron redox cycling and organic matter transformation across redox interfaces. Nature Reviews Earth & Environment, 2023, 4, 9: 659–673.
- [6] Chang, L., G.-H. Yu(余光辉)*, C.-Q. Liu, 2023, Interfacial processes and mechanisms of synergistic degradation of dichlorobiphenyl by white rot fungi and magnetite nanoparticles. Science China Earth Sciences, 66(9): 2057–2065.
- [7] 常乐, 余光辉*, 刘丛强, 2023, 白腐真菌-磁铁矿协同降解二氯联苯的界面过程与机制, 中国科学: 地球科学, 53(9): 2085–2093.
- [8] Chi, Z.L., G.H. Yu(余光辉)*, H.H. Teng, H.G. Liu, J. Wang, C.Q. Liu, Q.R. Shen, G.M. Gadd, 2022, Molecular trade-offs between lattice oxygen and oxygen vacancy drive organic pollutant degradation in fungal biomineralized exoskeletons, Environmental Science & Technology, 56(12): 8132-8141.
- [9] Chi, Z.L., G.H. Yu(余光辉)*, A. Kappler, C.Q. Liu, G.M. Gadd, 2022, Fungal-mineral interactions modulating intrinsic peroxidase-like activity of iron nanoparticles: Implications for the biogeochemical cycles of nutrient elements and attenuation of contaminants, Environmental Science & Technology, 56(1): 672-680.
- [10] Wan, D., F.-F. Liu, J.-B. Chen, A. Kappler, Y. Kuzyakov, C.-Q. Liu, G.-H. Yu(余光辉)*, 2022, Microbial community mediates hydroxyl radical production in soil slurries by iron redox transformation, Water Research, 220: 118689.
- [11] Wen, T.#, G.H. Yu(余光辉)#, W.D. Hong, J. Yuan*, G.Q. Niu, P.H. Xie, F.S. Sun, L.D. Guo, Y. Kuzyakov, Q.R. Shen, 2022, Root exudate chemistry affects carbon mobilization in a Ultisol soil via microbial community reassembly, Fundamental Research, 2(5): 697-707.
- [12] Yu, G.H.*, Y. Kuzyakov, Y. Luo, B. Goodman, A. Kappler, F.F. Liu, F.S. Sun*, Molybdenum bioavailability and asymbiotic nitrogen fixation in soil are raised by iron (oxyhydr)oxide mediated free radical production, Environmental Science & Technology, 2021, 55(21): 14979–14989.
- [13] Yu G.H.*, Y. Kuzyakov*, 2021, Fenton chemistry and reactive oxygen species in soil: Abiotic mechanisms of biotic processes, controls and consequences for carbon and nutrient cycling, Earth-Science Reviews, 214: 103525.
- [14] Chi, Z.L.#, X.Y. Zhao#, Y.L. Chen, J.L. Hao, G.H. Yu*, B. A. Goodman, G.M. Gadd, 2021, Intrinsic enzyme-like activity of magnetite particles is enhanced by cultivation with Trichoderma guizhouense, Environmental Microbiology, 23(2): 893–907.
- [15] Chi, Z.L., G.H. Yu*, 2021, Nanozyme-mediated elemental biogeochemical cycling and environmental effects, Science China Earth Sciences, 64(7), 1015-1025.
- [16] 池志濑, 余光辉*, 2021, 矿物纳米酶介导的元素生物地球化学循环及环境效应, 中国科学:地球科学, 51(8):1203-1213.
- [17] Yu, G.-H.*#, Z.L. Chi#, A. Kappler, F.-S. Sun, C.-Q. Liu, H.H. Teng*, G. M. Gadd, 2020, Fungal nanophase particles catalyze iron transformations for oxidative stress removal and iron acquisition, Current Biology, 30(15): 2943–2950.
- [18] Yu, G.H.*, Z.L. Chi, H. H. Teng, H.L. Dong, A. Kappler, M.R. Gillings, M.L. Polizzotto, C.Q. Liu, and Y.G. Zhu*,2019,Fungus-initiated catalytic reactions at hyphal-mineral interfaces drive iron redox cycling and biomineralization,Geochimica et Cosmochimica Acta,260: 192–203.
- [19] Wen, Y.L., J. Xiao, F.F. Liu, B.A. Goodman, W. Li, Z.J. Jia, W. Ran, R.F. Zhang, Q.R. Shen, and G.H. Yu(余光辉)*,2018,Contrasting effects of chemical and organic fertilisation regimes on shifts in the Fe redox bacterial community,Soil Biology and Biochemistry,117: 56–67.
- [20] Yu, G.H., J. Xiao, S.J. Hu, M.L. Polizzotto, F.J. Zhao, S.P. McGrath, H. Li, W. Ran, and Q.R. Shen*,2017,Mineral availability as a key regulator of soil carbon storage,Environmental Science & Technology,51(9): 4960–4969.
- [21] Yu, G.H., M.J. Wu, G.R. Wei, Y.H. Luo, W. Ran, B.R. Wang, J.C. Zhang, and Q.R. Shen*,2012,Binding of organic ligands with Al(III) in dissolved organic matter from soil: implications for soil organic carbon storage,Environmental Science and Technology,46(11): 6102–6109.
- [22] Li, H., S.J. Hu, M.L. Polizzotto, X.L. Chang, Q.R. Shen, W. Ran, and G.H. Yu*,2016,Fungal biomineralization of montmorillonite and goethite to short-range-ordered minerals,Geochimica et Cosmochimica Acta,191:17–31.
- [23] Du, H.Y., C.M. Chen, G.H. Yu(余光辉)*, M.L. Polizzotto, F.S. Sun, and Y. Kuzyakov, 2020, An iron-dependent burst of hydroxyl radicals stimulates straw decomposition and CO2 emission from soil hotspots: Consequences of Fenton or Fenton-like reactions, Geoderma, 375: 114512.
- [24] Du, H.Y., G.H. Yu(余光辉)*, F.S. Sun, M. Usman, B.A. Goodman, W. Ran, and Q.R. Shen,2019,Iron minerals inhibit the growth of Pseudomonas brassicacearum J12 via a free-radical mechanism: Implications for soil carbon storage,Biogeosciences,16(7): 1433–1445.
- [25] Sun, F.S., G.H. Yu(余光辉)*, M.L. Polizzotto, W. Ran, and Q.R. Shen,2019,Toward understanding the binding of Zn in soils by two-dimensional correlation spectroscopy and synchrotron-radiation-based spectromicroscopies,Geoderma,337: 238–245.
- [26] 杨 柳, 孙富生, 王韬略, 余光辉*, 王伯仁, 冉 炜, 沈其荣, 长期施肥下红壤中类芬顿反应及其对碳储存的影响, 土壤学报, 2019, 56(5): 1128–1139. 【封面文章】
- [27] Sun, F.S., M.L. Polizzotto, D.X. Guan, J. Wu, Q.R. Shen, W. Ran, B.R. Wang, G.H. Yu(余光辉)*,2017,Exploring the interactions and binding sites between Cd and functional groups in soil DOM using two-dimensional correlation spectroscopy and synchrotron radiation based spectromicroscopies,Journal of Hazardous Materials,326: 18–25.
- [28] 褚冰杰, 余光辉*, 刘飞飞, 沈其荣, 冉炜, 土壤微团聚体中矿物-有机复合体特征, 土壤学报, 2017, 54(6): 1451–1458.
- [29] Yu, G.H.(余光辉), Z. Tang, Y.C. Xu, and Q.R. Shen*,2011,Multiple fluorescence labeling and two dimensional FTIR–13C NMR heterospectral correlation spectroscopy to characterize extracellular polymeric substances in biofilms produced during composting,Environmental Science & Technology,45(21): 9224–9231.
- [30] Yu, G.H.(余光辉), P.J. He*, and L.M. Shao,2010,Novel insights into sludge dewaterability by fluorescence excitation–emission matrix combined with parallel factor analysis,Water Research,44(3): 797–806.
- [31] Yu, G.H.(余光辉), P.J. He*, L.M. Shao, and Y.S. Zhu,2008,Extracellular proteins, polysaccharides and enzymes impact on sludge aerobic digestion after ultrasonic pretreatment,Water Research,42(8–9): 1925–1934.
- [32] Yu, G.H.(余光辉), P.J. He*, L.M. Shao, and P.P. He,2008,Toward understanding the mechanism of improving the production of volatile fatty acids from activated sludge at pH 10.0,Water Research,42(18): 4637–4644.
- [33] Yu, G.H.(余光辉), P.J. He*, L.M. Shao, and P.P. He,2008,Stratification structure of sludge flocs with implications to dewaterability,Environmental Science & Technology,42(21): 7944–7949.
- Books
- [1] 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].
- [2] 《Mechanism of Sludge Dewatering and Granulation of WWTP based on the Multi-layers Structures of Flocs》
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- [3] 《Introduction to Environmental Engineering》
- [4] 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.
- [5] 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.
- Honors & Awards
- [1] Science and Technology Award for Environmental Protection Secend Prize (Ranked No. 3, 2019)
- [2] SSRF Outstanding User Award (2019)
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- [3] China Agricultural Science and Technology Award Outstanding Innovation Team Award (Ranked No. 9, 2015)
- [4] National Scientific and Technological Progress Second Prize (Ranked No. 12,2015)
- [5] National Excellent Doctoral Dissertation Award Nomination (2012)
- [6] Jiangsu Province Excellent Master's Thesis Guidance Tutor (2012)
- [7] Outstanding Doctoral dissertation, Tongji University (2010)
- [1] 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;
- [2] 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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- [3] 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;
- [4] 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;
- [5] 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;
- [6] 国家自然科学基金面上项目(41371248): 有机肥促进红壤中非晶形纳米矿物形成的机制研究, 2014.01–2017.12, 结题, 主持;
- [7] 国家自然科学基金青年项目(21007027): 荧光标记方法原位研究接种优势菌种加速堆肥腐熟机理, 2011.01–2013.12, 结题, 主持;
- [8] 国家重点基础研究发展计划(973 计划)课题(2011CB100503): 土壤有机质转化累积机制与提高途径, 2011.01–2015.12, 结题, 骨干;
- [9] 国家科技支撑计划课题(2013BAD08B04): 土壤肥力培育机械化关键技术研究与示范, 2013.01–2017.12, 结题, 骨干;