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微生物与矿物相互作用
重金属矿区微生物介导的地球化学过程机理
微生物生态学、功能组学及生物信息学
矿区土水协同修复
- 国家重点研发计划“场地土壤污染成因与治理技术”重点专项子课题
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- 冷水江锑矿区土壤微生物群落对锑地球化学循环的影响机制,2020-06-30,中央高校基本科研业务费专项资金杰出人才培育基金
- 山底河流域老窖水微生物修复基础研究,2022-09-30
- 微生物介导的酸性矿山废水产生过程中硫化矿物颗粒间Galvanic作用,2020-06-30
- Prakash C. Loni#, Mengxiaojun Wu#, Weiqi Wang, Hongmei Wang*, Liyuan Ma, Chaoyang Liu, Yuyang Song, Olli H Tuovinen. Mechanism of microbial dissolution and oxidation of antimony in stibnite under ambient conditions. Journal of Hazardous Materials, 2019, 121561. (SCI, T2, IF: 7.65)
- Liyuan Ma*, Hongmei Wang, Jiangjun Wu, Yuguang Wang, Du Zhang, Xueduan Liu. Metatranscriptomics reveals microbial adaptation and resistance to extreme environment coupling with bioleaching performance [J]. Bioresource technology. 2019, 280: 9-17. (SCI, T1, IF: 6.669)
- Liyuan Ma, Jiangjun Wu, Xueduan Liu, Ling Tan, Xingjie Wang*. The detoxification potential of ferric ions for bioleaching of the chalcopyrite associated with fluoride-bearing gangue mineral [J]. Applied Microbiology and Biotechnology. 2019, 103(5): 2403-2412. (SCI, T2, IF: 3.67)
- Liyuan Ma, Xingjie Wang, Xueduan Liu, Shanquan Wang, Hongmei Wang*. Intensified bioleaching of chalcopyrite by communities with enriched ferrous or sulfur oxidizers[J]. Bioresource Technology, 2018, 268: 415-423. (SCI, T1, IF: 6.669)
- Liyuan Ma, Xingjie Wang, Xue Feng, Yili Liang, Yunhua Xiao, Xiaodong Hao, Huaqun Yin, Hongwei Liu, Xueduan Liu*. Co-culture microorganisms with different initial proportions reveal the mechanism of chalcopyrite bioleaching coupling with microbial community succession [J]. Bioresource Technology, 2017, 223: 121-130. (SCI, T1, IF: 6.669)
