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教授
万彪
发布人:汤春燕发布时间:2024-02-22



姓名:万彪    职称教授

E-mail[email protected]      

个人简介:教授,博士生导师,湖北荆州人20136月和20166月,于91直播 获学士和硕士学位;202012月,于美国佐治亚理工91直播 获博士学位。20212023年在德国图宾根大学从事博士后研究。土壤过程与环境效应”院青年科研团队负责人,主要从事厌氧生物地球化学与厌氧微生物学研究,聚焦厌氧生境中微生物与矿物共同介导的铁--磷多要素协同循环、微生物铁氧化还原、磷界面化学、产甲烷与甲烷氧化微生物机制、铁-氮或铁-碳协同转化等生物地球化学相关研究。主持国家青年人才项目1项、青年科学基金项目1项、国家重点研发子课题1项、国家外国专家个人类项目(H类)1项,曾主持美国、法国、英国同步辐射项目4项,参与多项美国科学基金(NSF)和德国科学基金会(DFG)项目。研究成果以第一作者或通讯作者含共一、共通发表在Cell Host MicrobeEnviron Sci TechGeochim Cosmochim AcEnviron Int等国际权威杂志。担任美国斯坦福同步辐射SSRL项目,Nat CommunEnviron Sci TechWater ResGeochim Cosmochim AcFundament Res 等期刊评审专家。



工作背景:

2024-至今 91直播 /91直播 /教授

2021-2023 德国图宾根大学/地质微生物学/博士后


教育背景:

2016-2020 美国佐治亚理工91直播 /地球化学/博士

2013-2016 91直播 /环境科学/硕士

2009-2013 91直播 /环境科学/学士


研究方向:

1. 先进光谱、高分辨成像技术在环境化学及地质微生物学中的应用;

2. 生物与非生物作用共同介导下铁-碳-磷地球化学协同循环;

3. 生物源铁矿物形成与空间构造及细胞碳-矿物铁互作机制;

4. 微生物作用驱动环境磷素的生物地球化学循环;

5. 有氧-无氧环境中不同磷素与铁矿物界面行为驱动铁、磷转化。


科研项目/课题:

国自然青年基金项目2025-2027,主持,在研;

国家青年人才项目2024-2027,主持,在研;

91直播 高层次人才引进项目2024-2029,主持,在研;

美国(SSRL)、法国(SOLEIL)、英国(Diamond)同步辐射装置测试项目4项,主持,结题;

参与1项德国科学基金会DFG项目(结题优秀),2项美国国家科学基金项目。



本实验室常年招收对科研充满好奇与热情的博士后(专业代码:090301土壤学;071300生态学),博士生(专业代码:090301土壤学:01土壤化学与环境,03土壤微生物组与土壤健康;071300生态学),硕士生(专业代码:090301土壤学;085700资源与环境;095132 资源利用与植物保护),本科生(毕业课题:农业资源与环境;环境科学)。欢迎对铁生物地球化学循环、磷生物地球化学循环、环境矿物-有机物-微生物互作机制、微生物源铁成矿机理、磷素界面化学等研究方向感兴趣的优秀科研青年推免、报考本课题组硕士与博士研究生。热忱欢迎博士后岗位申请与咨询,鼓励博士后从事独立研究,并全力协助“博新计划”、“海博后专项”等国家和地方博士后人才项目申请!联系邮箱:[email protected]



代表论著(#共同一作,*通讯作者)

1. Wan B, Mansor M*. Microbes that breathe iron and eat sulfur. Cell Host & Microbe, 2025, 33, 1823-1825.

2. Yan YP, Feng XH, Wang XM, Li W, Lan S, Zheng LR, Zhang Q*, Wan B*. Transformation of zinc oxide nanoparticles in the presence of aluminum oxide with pre-sorbed phosphorus ligands. Environmental International, 2023, 173, 107847.

3. Wan B, Yang P, Jung HS, Zhu MQ, Diaz J, Tang YZ*. Iron oxide-catalyzed hydrolysis of polyphosphate and the precipitation of calcium phosphate minerals. Geochimica et Cosmochimica Acta, 2021, 305, 49–65.

4. Wan B, Huang RX, Diaz J, Tang YZ*. Polyphosphate adsorption and hydrolysis on aluminum oxides. Environmental Science & Technology 2019, 53, 9542–9552.

5. Huang RX#, Wan B#, Hultz M, Diaz J, Tang YZ*. Phosphatase-mediated hydrolysis of linear polyphosphates. Environmental Science & Technology 2018, 52, 1183–1190.



其他第一及通讯作者论著

1. Xu H, Leisen J, Robang A, Wen Y, Wan B, Zhao S, Paravastu A, Phillips B, Tang Y*. Phosphate effects on rare earth element sorption onto kaolinite: molecular-scale insights at circumneutral pH. Geochimica et Cosmochimica Acta 2025, 408, 132–143.

2. Liu Z, Zhao W, Zhang L, Wan B, Feng X, Huang Q, Tan W, Wang X*. Phytase-mediated hydrolysis of different soil phytate species: Kinetics and mineral interfacial mechanisms. Geochimica et Cosmochimica Acta 2025, 403, 227–239.

3. Wang C, Ying C, Wang W, Zhou S, Wan B, Tan WF, Feng XH*. Sunlight-driven transformation of ferrihydrite via ligand-to-metal charge transfer: The critical factors and arsenic repartitioning. Environmental Science & Technology 2025, 59, 13, 6567–6578.

4. Xiang YJ, Hou JT*, Ren L, Xiong J, Wan B, Wang MX, Tan WF, Kappler A. Spontaneous abiotic reduction of arsenate to arsenite mediated by structural Fe(II) resulting from abundant oxygen vacancy clusters in poorly crystalline ferrihydrite in drought environments. Environmental Science & Technology 2025, 59, 10, 5191–5201.

5. Zeng LQ, Wan B*, Yan YP, Wang Q, Tang YZ, Feng XH. Simultaneous oxidation of Mn(II) and As(III) on cupric oxide promotes As(III) removal at circumneutral pH. Journal of Environmental Sciences 2023, 125, 691-700.

6. Bronner R, Thompson K, Dreher C, Runge E, Voggenreiter E, Shuster J, Wan B, Josh P, Fischer S, Duda J-P, Kappler A, Mansor M*. Iron sulfide mineral formation by ubiquitous Geobacter species and consequences for phosphate mobilization and bioavailability. Geochemical Perspective Letters, 2023, 24, 27-32.

7. Wan B, Huang RX, Diaz J, Tang YZ*. Rethinking the biotic and abiotic remineralization of complex phosphate molecules in soils and sediments. Science of the Total Environment 2022, 833, 155187.

8. Yan YP, Wan B*, Mansor M, Wang XM, Zhang Q, Kappler A, Feng XH*. Co-sorption of metal ions and inorganic anions/organic ligands on environmental minerals: A review. Science of the Total Environment, 2022, 803, 149918.

9. Jung HS, Xu XM, Wan B, Wang Q, Borkiewicz OJ, Li Y, Lu AH*, Tang YZ*. Photocatalytic oxidation of dissolved Mn(II) on natural iron oxide minerals. Geochimica et Cosmochimica Acta, 2021, 312, 343–356.

10. Wang Q, Zhang C, Patel D, Jung H, Liu P, Wan B, Pavlostathis S, Tang YZ*. Co-evolution of iron, phosphorus, and sulfur speciation during anaerobic digestion with hydrothermal pretreatment of sewage sludge. Environmental Science & Technology 2020, 54, 8362–8372.

11. Wan B*, Liang XR, Hu Z, Yan YP, Tan WF, Feng XH*. Effects of particle size and mineral crystallinity on formation of Zn-Al layered double hydroxides (LDH) on aluminum (oxyhydr)oxides. Applied Clay Science 2021, 201, 105933.

12. Wan B, Elzinga EJ, Huang RX*, Tang YZ*. Molecular mechanism of linear polyphosphate adsorption on iron and aluminum oxides. Journal of Physical Chemistry C 2020, 124, 52, 28448–28457.

13. Wan B, Huang RX, Diaz J, Tang YZ*. Manganese oxide catalyzed hydrolysis of polyphosphates. ACS Earth and Space Chemistry 2019, 11, 2623–2634.

14. Wan B, Yan YP, Huang RX, Abdala D, Liu F, Tang YZ, Tang WF, Feng XH*. Formation of Zn-Al layered double hydroxides (LDH) during the interaction of ZnO nanoparticles (NPs) with γAl2O3. Science of the Total Environment 2019, 650, 1980–1987.


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