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刘红昌 — 博士生导师、硕士生导师

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  • 教师姓名: 刘红昌

  • 职称:副教授

  • 职务:支部书记/副主任

  • 教师拼音名称:liuhongchang

  • 性别:男

  • 所在单位:资源加工与生物工程学院

  • 学历:研究生(博士后)

  • 学位:博士学位

  • 毕业院校:中南大学

  • 在职信息:在职

  • 学科:生物学. 矿业工程. 地质学

  • 招生学科:生物学、环境科学与工程、矿业工程

  • 通讯/办公地址

  • 邮箱

  1. Bioleaching of lepidolite by Sulfobacillus thermosulfidooxidans with different energy substrates. Ecotoxicology and Environmental Safety, 2026, 309, 119685 (通讯作者)

  2. Comparative study on the differential adsorption mechanisms of typical light/heavy rare earth ions by kaolinite and halloysite. Minerals, 2026, 16, 399 (通讯作者)

  3. Interfacial reconstruction by a PBX/PAXBHA collector pair enables malachite sulfidization flotation in high-Mg2+ recycled water. Minerals Engineering. 2026, 246, 110430 (共同通讯)

  4. Evaluation of the biological safety of lepidolite bioleachate. Journal of Environmental Chemical Engineering, 2026, 14(5), 123527 (通讯作者)

  5. Interface mechanisms of citric acid in suppressing slime coating for enhanced separation of pyrite from sericite. Minerals Engineering. 2026, 243, 110243 (共同通讯)

  6. Chalcopyrite bioleaching by an enriched microbial community in acidic artificial seawater. Journal of Central South University, 2025, 32: 1802-1821 (通讯作者)

  7. Enhanced leaching of lepidolite by acidophilic microorganisms under mechanical activation. Microorganisms, 2025, 13, 415  (通讯作者)

  8. REE extraction from ionic rare earth ores by two typical acidogenic microorganisms Aspergillus niger and Acidithiobacillus ferrooxidans. International Journal of Molecular Sciences. 2025, 26, 1986  (通讯作者)

  9. Microbial community dynamics and elemental speciation in antimony-contaminated mining areas. Journal of Sustainable Metallurgy, 2025, 11: 3716–3731 (共同通讯)

  10. Different fates of Sb(III) and Sb(V) during the formation of jarosite mediated by Acidithiobacillus ferrooxidans. Journal of Environmental Sciences, 2025.1.30, 147: 342-358 (通讯作者)

  11. 稀土离子对硅藻生长及其壳体结构和电化学性能影响研究. 材料研究学报. 2025. 39(7): 499-508  (通讯作者)

  12. Toxicity passivation of rare earth elements via the diatom-mediated "mineralization self-regulation" mechanism: A silicon metabolic feedback-driven pathway for nanoparticle formation. Journal of Environmental Chemical Engineering, 2025, 13, 119504 (通讯作者)

  13. In situ self-assembled La and Y nanoparticles based on biomineralization of diatom frustules to boost the electrochemical performance of SiO2 anodes for lithium-ion batteries. Advanced Sustainable Systems, 2025.9(6): 2500068  (通讯作者)

  14. A diatom frustule-based Mn2SiO4@C@SiO2 multilayer-structure composite as a high performance anode electrode material for lithium ion batteries. RSC Applied Interfaces, 2024, 2(1): 200-209  (通讯作者)

  15. 黄色黏球菌/铜绿假单胞菌-离子型稀土矿相互作用比较研究. 生物学杂志, 2024, 41(3): 11-20  (通讯作者)

  16. Fe/S oxidation-coupled arsenic speciation transformation mediated by AMD enrichment culture under different pH conditions. Journal of Environmental Sciences, 2024, 137, 681–700 (共同通讯)

  17. Developing a novel and high-efficiency lithium-ion battery anode material via thiol-functionalization of diatom frustules plus Ag modification. iScience, 2024, 27, 108850  (通讯作者)