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谭文 -- 校聘副教授 --博士研究生
教育工作经历
Main experience
2025.07至今 福州大学紫金地质与矿业学院,校聘副教授2023.01-2025.06 福州大学紫金地质与矿业学院,讲师2018.09-2022.06 哈尔滨工业大学(南科大联培),材料科学与工程,博士研究生2015.09-2018.06 中南大学,化学工程,硕士研究生/硕士2011.09-2015.06 中南大学,化学工程与工艺,本科生/学士8.09-2022.06 哈尔滨工业大学(南科大联培),材料科学与工程,博士研究生2015.09-2018.06 中南大学,化学工程,硕士研究生/硕士2011.09-2015.06 中南大学,化学工程与工艺,本科生/学士
教学简介
主讲本科生课程3门,研究生课程2门:《工业电化学》、《有色冶金概论》、《工程英语》、《黄金选冶加工》等,辅讲5门课程。指导本科生申请发明专利2件,发表SCI论文3篇、核心期刊论文2篇。指导学生获得国家级科技竞赛一等奖2项,二等奖1项,三等奖2项,省级科技竞赛三等奖1项。指导省级SRTP项目1项,校级4项。先后指导博士4名,硕士10余名。
科研简介
利用物理化学、电化学、界面化学以及人工智能等手段探究基于工程实践的有色金属资源提取及高值化利用过程中涉及的关键科学问题。主要研究兴趣包括:废旧电池回收、盐湖资源利用、矿山/冶金固废资源化、贵金属材料、AI for Minerals 等。
科研项目
国家自然科学基金面上项目:面向闭环回收的锂电池正极pH响应界面构筑与电荷反转 无损剥离机理(No.52674534),主持,50万元,2027.01-2030.12国家自然科学基金青年项目C类:基于弛豫时间分布的废旧锂离子电池无损检测及优化回收研究(No.52304419),主持,30万元,2024.01-2026.12福州大学“旗山学者”启动项目:废旧动力电池高效检测与分选研究(XRC-24073),主持,40万元,2024.01-2028.12福建省产学研项目: 半导体行业用贵金属材料的制备与应用研究(No. 2023H6007),项目骨干,80万元,2023.01-2024.12国家重点研发计划课题:钼铼高效富集与分离提取关键技术(No.2023YFC2907903),项目骨干,374万元,2023.10-2026.09
代表性论文
1.Chen J, Zeng G, Tan W*, et al. Sustainable production of ultrafine silver powder via a sulfate-mediated closed-loop process[J]. Journal of Cleaner Production, 2026, 571: 1488102.Tan W, Yang Y, Zhang J, et al. Selective leaching and separation of aluminum and potassium from alunite by fluorosilicic acid: Kinetics and mechanistic insights[J]. Minerals Engineering, 2026, 249: 110819.3.Ba S(本科生), Zhang J, Tan W*, et al. Selective flotation of chalcopyrite from galena using oxadiazole-2-thione collector: a combined quantum chemical and experimental study[J]. Minerals Engineering, 2026, 247: 110506.4.Li Y(本科生), Liu C, Tan W, et al. Interfacial Interaction and Flotation Effect between Pyrite (1 0 0) Surface and Inorganic Depressants[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2026: 140611.5.Liu C(本科生), Li Y, Tan W*, et al. Unraveling the stepwise oxidation of pyrite (1 0 0) surface in H2O and O2 environments: A first-principles insight[J]. Surface Science, 2026, 773: 123022.6.Weng W, Liu J, Tan W*, et al. Functionalized Graphite Nanosheet Interfaces Enable (002)-Oriented Epitaxial Zinc Growth in Aqueous Zinc-Ion Batteries[J]. ACS Applied Energy Materials, 2026, 9(6): 3497-3505.7.Chi X, Chen Q, Tan W*, et al. Selective depression and flotation recovery of spent lithium iron phosphate cathode materials[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025: 139255.8.Chen J, Huang S, Zhong S*, Tan W*, et al. Scalable synthesis of submicron spherical silver powders mediated by sulfate ions: Dual-function protection mechanism for morphology control and simplified wastewater treatment[J]. Journal of Cleaner Production, 2025, 525: 146637.9.Zhong S, Liu H, Tan W*, et al. Environmentally Friendly Water-Based Carbon Slurry with Carboxylated Carbon Nanosheets for Optimizing the Electrode–Collector Interface in Lithium-Ion Batteries[J]. ACS Applied Materials & Interfaces, 2025, 17(7): 10593-10602.10.Yang L, Liu H, Zhong S*, Tan W*, et al. Preparing Carbon-Coated Copper Foil with a Low-Cost and Environmentally Friendly Carbon Slurry to Stabilize Silicon Anode for Lithium-Ion Battery[J]. ACS Applied Materials & Interfaces, 2025, 17(13): 19648-19656.11.Weng W, Lan Y, Tang D, Tan W*, Zhong S*, et al. Research Progress on Lithium Sulfide Synthesis: A Review[J]. ACS Applied Energy Materials, 2025.12.Zhong S, Zhu H, Tan W*, et al. Organic-inorganic composite film enhances antioxidation and corrosion resistance of lithium battery copper foil[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025, 705: 135629.13.Yang L, Lu X, Zhong S*, Tan W*, et al. Study on the influence of copper foil current collector roughness on lithium-ion battery performance[J]. Journal of Materials Science, 2025: 1-12.14.Yang L, Zhu H, Tan W*, Zhong S*, et al. Construction of chromium-free passivation film of pomelo peel extract on the surface of lithium-ion battery copper foil and study on anti-corrosion mechanism[J]. Journal of Molecular Liquids, 2024, 412: 125846.15.Zhong S, Liang D, Tan W*, et al. Efficient extraction of Li and Rb from zinnwaldite via thermal activation and acid leaching[J]. Minerals Engineering, 2024, 216: 108898.16.Tan W, Yang Y, Liang D, et al. Study on Impurity Removal from Lepidolite Leaching Solution and the Extraction Process of Rubidium[J]. Minerals, 2024, 15(1): 19.17.Tan W, Yang F, Yi T, et al. Fullerene-like elastic carbon coatings on silicon nanoparticles by solvent controlled association of natural polyaromatic molecules as high-performance lithium-ion battery anodes[J]. Energy Storage Materials, 2022, 45: 412-421.18. Tan W, Wang L, Lu Z, et al. A Hierarchical Si/C Nanocomposite of Stable Conductive Network Formed Through Thermal Phase Separation of Asphaltenes for High‐Performance Li‐Ion Batteries[J]. Small, 2022, 18(35): 2203102.19. Tan W, Wang L, Liu K, et al. Bitumen‐Derived Onion‐Like Soft Carbon as High‐Performance Potassium‐Ion Battery Anode[J]. Small, 2022: 2203494.20.Tan W, Xu Z, et al. A Design Strategy of Carbon Coatings on Silicon Nanoparticles as Anodes of High-Performance Lithium-Ion Batteries[J]. ACS Applied Energy Materials, 2022, 5, 12143−12150
获奖情况
中国黄金协会科学技术奖一等奖,5/20福建省引进高层次人才C类福建省2024年度省级科技特派员福州大学“旗山学者”人才计划2020年深圳创新创业大赛决赛三等奖南方科技大学第一届摄影大赛二等奖
其他
发明专利: CN118676464A 一种废旧锂电池正极材料直接再生的方法 CN118676463A 一种浮选分离废弃锂电池正负极材料的方法 CN116103513A 一种微波焙烧处理锂云母提取锂的方法 CN115976338A 一种微波辅助活化锂云母提锂的方法 CN115845607A 一种用于分离溶液中铷铯的电极的制备方法及应用