① 近5年内发表的代表性论著 (1) Li, H., et al. (2023). Biofilm electrode reactor coupled manganese ore substrate up-flow microbial fuel cell-constructed wetland system: High removal efficiencies of antibiotic, zinc (II), and the corresponding antibiotic resistance genes[J]. Journal of Hazardous Materials, 132394. (IF:13.6, 中科院一区top) (2) Li, H., et al. (2023). Enhanced removal of antibiotic and antibiotic resistance genes by coupling biofilm electrode reactor and manganese ore substrate up-flow microbial fuel cell constructed wetland system,Chemosphere,,139461.(IF:8.8, 中科院二区top) (3) Li, H., et al. (2023). Electrochemical disinfection may increase the spread of antibiotic resistance genes by promoting conjugal plasmid transfer. Science of the Total Environment, 858, 159846.(IF:9.8, 中科院一区top) (4) Li, H., et al. (2020). Antibiotic resistance genes, bacterial communities, and functions in microbial fuel cell constructed wetlands: Response to co-stress of antibiotic and zinc. Environmental Pollution 265, 115084. (中科院一区top, IF:8.071) (5) Li, H., et al. (2020). Effect of the coexposure of sulfadiazine, ciprofloxacin and zinc on the fate of antibiotic resistance genes, bacterial communities and functions in three-dimensional biofilm-electrode reactors. Bioresource Technology 296, 122290. (中科院一区 top, IF:9.462) (6) Li, H., et al. (2019). Effects of graphite and Mn ore media on electro-active bacteria enrichment and fate of antibiotic and corresponding resistance gene in up flow microbial fuel cell constructed wetland. Water Research.165, 114988.(中科院一区top, IF: 11.236) (7) Li, H., et al. (2020). Accumulation of sulfonamide resistance genes and bacterial community function prediction in microbial fuel cell-constructed wetland treating pharmaceutical wastewater. Chemosphere 248, 126014. (中科院二区top, IF:7.086) (8) Li, H., et al. (2019). Enhanced degradation of bisphenol A and ibuprofen by an up-flow microbial fuel cell-coupled constructed wetland and analysis of bacterial community structure. Chemosphere 217, 599-608. (中科院二区top, IF:7.086) (9) Song, H.L#., Li, H#., et al.(2018). Fate of sulfadiazine and its corresponding resistance genes in up-flow microbial fuel cell coupled constructed wetlands: effects of circuit operation mode and hydraulic retention time. Chemical Engineering Journal. 350, 920-929. (共同第一导师第一,中科院一区top, IF: 13.273) (10) Li, H., et al. (2018). A continuous flow MFC-CW coupled with a biofilm electrode reactor to simultaneously attenuate sulfamethoxazole and its corresponding resistance genes. Science of the Total Environment, 637, 295-305. (中科院一区top, IF:7.963) (11) Li, H., et al. (2018). Effects of direct current on Klebsiella spp. viability and corresponding resistance gene expression in simulative bio-electrochemical reactors.Chemosphere, 196, 251-259. (中科院二区top, IF:7.086) (12) Li, H., et al. (2018). Simulated wastewater reduced Klebsiella michiganensis strain LH-2 viability and corresponding antibiotic resistance gene abundance in bio-electrochemical reactors. Ecotoxicology and Environmental Safety, 162, 376-382. (中科院二区top, IF:6.291) (13) 李骅, 杨小丽, 宋海亮*, 张帅, 陈桐清. 东南大学学报(自然科学版). 2017, 47(2), 410-415 (14) Wang X, Li H, et al. A neglected risk of nanoplastics as revealed by the promoted transformation of plasmid‐borne ampicillin resistance gene by Escherichia coli[J]. Environmental Microbiology, 2022, 24(10): 4946-4959. (15) Meng X, Li H, et al. Bacterial cell lysis induced by pre-acidification greatly promoting the degradation of carried antibiotic resistance genes in zero-valent iron activated Fenton-like processes[J]. Chemical Engineering Journal, 2023, 452: 139413.
会议口头报告 (1) Li hua, Hai-Liang Song*. The 8th International Symposium on Wetland Pollutant Dynamics and Control, WETPOL2019 (国际会议)口头报告 (2) Li hua, Hai-Liang Song*. International Workshop on Constructed-Wetland Microbial Fuel Cell, 2017 (国际会议) 口头报告 (3) Li hua, Hai-Liang Song*. International Workshop on Constructed-Wetland-Microbial Fuel Cell, 2019 (国际会议) 口头报告 (4) 李骅, 宋海亮*. 中国化学会第十四届全国水处理化学大会暨学术研讨会, 上海, 2018(国内会议),墙报展示 (5) 李骅,宋海亮*. 第十届全国环境化学大会,天津,2019(国内会议),口头报告 (6) 李骅,宋海亮*. 第三届西北水环境青年学者论坛,兰州2021(国内会议)特邀报告 |