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地质微生物学,生物地球化学
- 热泉微生物氮转化过程演变的地质意义, 国家自然科学基金项目, 2022/01/01-2025/12/31, 在研, 面上项目,主持
- 热泉嗜热硫酸盐还原菌对有机碳矿化的过程和机理研究—以西藏热泉为例, 国家自然科学基金项目, 2019/01/01-2022/12/31, 在研, 面上项目,核心参与人
- 滇藏热泉微生物介导的碳氮循环及其环境适应机制, 国家自然科学基金项目, 2020/01/01-2023/12/31, 在研, 水圈重大研究计划重点项目,核心参与人
- 微生物矿物相互作用下粘土矿物附着态铵氮释放过程及机理研究, 国家自然科学基金项目, 2017/01/01-2019/12/31, 结题, 青年基金,主持
- 1. Huang, L., Luo, J., Li, L., Jiang, H., Sun, X., Yang, J., She, W., Liu, W., Li, L. and Davis, A.P. (2022) Unconventional microbial mechanisms for the key factors influencing inorganic nitrogen removal in stormwater bioretention columns. Water Research 209, 117895.
- 2. Huang, L., Yu, Q., Liu, W., Wang, J., Guo, W., Jia, E., Zeng, Q., Qin, R., Zheng, J., Hofmockel, K.S., Dong, H., Jiang, H. and Zhu, Z. (2021) Molecular Determination of Organic Adsorption Sites on Smectite during Fe Redox Processes Using ToF-SIMS Analysis. Environmental Science & Technology 55(10), 7123-7134.
- 3. Zuo, H., Huang, L., Chu, R.K., Tolic, N., Washton, N., Zhu, Z., Edelmann, R.E., Elagamy, S., Sommer, A., Luan, F., Zeng, Q., Chen, Y., Hu, D., Zhan, D., Hu, J. and Dong, H. (2021) Reduction of structural Fe(III) in nontronite by humic substances in the absence and presence of Shewanella putrefaciens and accompanying secondary mineralization. American Mineralogist 106(12), 1957-1970.
- 4. Huang, L., Liu, Z., Dong, H., Yu, T., Jiang, H. and Shi, L. (2020) Coupling quinoline degradation with Fe redox in clay minerals: A strategy integrating biological and physicochemical processes. Applied Clay Science 188, 105504.
- 5. Liu, W.#, Huang, L.#, Komorek, R., Handakumbura, P.P., Zhou, Y., Hu, D., Engelhard, M.H., Jiang, H., Yu, X.-Y., Jansson, C. and Zhu, Z. (2020) Correlative surface imaging reveals chemical signatures for bacterial hotspots on plant roots. Analyst 145(2), 393-401.
- 6. Zeng, Q., Huang, L., Ma, J., Zhu, Z., He, C., Shi, Q., Liu, W., Wang, X., Xia, Q. and Dong, H. (2020) Bio-reduction of ferrihydrite-montmorillonite-organic matter complexes: Effect of montmorillonite and fate of organic matter. Geochimica et Cosmochimica Acta 276, 327-344.
- 7. Zhang, Y.#, Huang, L.#, Jiang, H. and Wu, G. (2019) Hyperthermophilic Anaerobic Nitrate-Dependent Fe (II) Oxidization by Tibetan Hot Spring Microbiota and the Formation of Fe Minerals. Geomicrobiology Journal 36(1), 30-41.
- 8. Huang, L., Feng, C., Jiang, H., Dong, H., Liu, Z., Zeng, Q., Wang, X. and Zhang, L. (2018) Reduction of structural Fe (III) in nontronite by thermophilic microbial consortia enriched from hot springs in Tengchong, Yunnan Province, China. Chemical Geology 479, 47-57.
- 9. Wu, G., Huang, L., Jiang, H., Peng, Y.e., Guo, W., Chen, Z., She, W., Guo, Q. and Dong, H. (2017) Thioarsenate formation coupled with anaerobic arsenite oxidation by a sulfate-reducing bacterium isolated from a hot spring. Frontiers in Microbiology 8, 1336.
- 10. Huang, L., Dong, H., Jiang, H., Wang, S. and Yang, J. (2016) Relative importance of advective flow versus environmental gradient in shaping aquatic ammonium oxidizers near the Three Gorges Dam of the Yangtze River, China. Environmental microbiology reports 8(5), 667-674.
- 11. Huang, L., Dong, H., Wang, S., Huang, Q. and Jiang, H. (2014) Diversity and abundance of ammonia-oxidizing archaea and bacteria in diverse Chinese paddy soils. Geomicrobiology Journal 31(1), 12-22.