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[1] Shiyu Yuan, …, Zewen Tan*. 2026. The detoxifying biotransformation of chloramphenicol by an newly isolated bacterium strain Exiguobacterium sp. CAP4 and its bioaugmentation of chloramphenicol biodegradation under in situ condition. Journal of Environmental Sciences. (168), 548-557. (中科院二区) [2] Zewen Tan, Yujiang Luo, Xiaoxu Sun, et al., 2025. Biodegradation and bioaugmentation of the co-contamination of chloramphenicol and microplastics by Exiguobacterium sp. CAP4 isolated from a contaminated plastisphere. Journal of Hazardous Materials. (491), 137973. (中科院一区) [3] Zewen Tan, Eduardo Beltrán-Flores, Gisselle D. Ramos-Meza, et al., 2025. Eliminating antibiotics by white-rot-fungi Trametes versicolor from manure solids and synthetic wastewater. Environmental Pollution. (378), 126504. (中科院二区) [4] Yuanliang Wang, Yujiang Luo, Zewen Tan*, et al., 2025. Biotransformation of chloramphenicol by enriched bacterial consortia and the newly isolated bacterial strain Bordetella sp. C3: Detoxifying biotransformation pathway and its potential application in agriculture. Bioresource Technology. (415), 131713. (中科院一区) [5] Yujiang Luo, Zewen Tan*. 2024. The metabolic fate and detoxifying biotransformation of chloramphenicol by Citrobacter sp. SZW2. Journal of Water Process Engineering. (65), 105802. (中科院二区) [6] Zewen Tan, Diana Losantos, Yongtao Li, et al., 2023. Biotransformation of chloramphenicol by white-rot-fungi Trametes versicolor under cadmium stress. Bioresource Technology. (369), 128508. (中科院一区) [7] Zewen Tan, Xiuyue Yang, Yiling Liu, et al., 2023. The capability of chloramphenicol biotransformation of Klebsiella sp. YB1 under cadmium stress and its genome analysis. Chemosphere. (313), 137375. (中科院二区) [8] Zewen Tan, Xiuyue Yang, Yongtao Li, et al., 2022. The mechanism of phosphate solubilizing of Pseudomonas sp. TC952 and its solubilizing process on TC removal. Environmental Science and Pollution Research. 33, 26234 (中科院三区) [9] Zewen Tan, Xiuyue Yang, Lian Chen, et al., 2022. Biodegradation mechanism of chloramphenicol by Aeromonas media SZW3 and genome analysis. Bioresource Technology. (344), 126280. (中科院一区) [10] Zewen Tan, Maman Hassan Abdoulahi, Xiuyue Yang, et al., 2022. Carbon source type can affect tetracycline removal by Pseudomonas sp. TC952 through regulation of extracellular polymeric substances composition and production. Science of the Total Environment. (804), 149907. (中科院一区) [11] Zewen Tan, Jiacheng Chen, Yiling Liu, et al., 2021. The survival and removal mechanism of Sphingobacterium changzhouense TC931 under tetracycline stress and its ecological safety after application. Bioresource Technology. (333), 125067.(中科院一区) [12] Beini Gong, Zewen Tan, Xiuyue Yang, et al., 2022. Induction of zincophore pseudopaline secretion by Cr(VI) and intracellular formation of granules from nanocrystal aggregation by Cr(III) in Pseudomonas aeruginosa. Journal of Environmental Management. (323), 116201. (中科院一区) [13] Duanyi Huang, Xiaoxu Sun, Wenjie Lin, Xiaolong Lan, Zewen Tan, Youhua Ren, Ying Huang, Yubo Cao, Weimin Sun. 2026. Hydrogen oxidation coupled to dissimilatory arsenate reduction: A potentially widespread pathway associated with arsenic mobility in anoxic sediments. Water Research. (301), 125984. (中科院一区) [14] 谭泽文,杨秀月,龚贝妮,等。一株变栖克雷伯士菌及其在去除氯霉素和镉离子中的应用,授权专利号ZL202110828769.2。(专利, 第一发明人) [15] 谭泽文,龚贝妮,李永涛, 等。一株黏质沙雷氏菌及其应用,授权专利号ZL202110081241.3。(专利, 第一发明人) [16] 龚贝妮,谭泽文,李永涛,等。一株中间气单胞菌及其在去除氯霉素和溶磷解钾中的应用,授权专利ZL202110268055.0。(专利, 第二发明人) [17] 龚贝妮,谭泽文,李永涛,等。一株产碱普罗维登斯菌及其在降解四环素与产植物生长素方面的应用,授权专利号 ZL202010064609.0。(专利, 第二发明人) [18] 龚贝妮,谭泽文,李永涛,等。一株能降解四环素的台湾假单胞菌及其应用,授权专利号ZL201910496393.2。(专利, 第二发明人) [19] 谭志远,谭泽文,彭桂香,等。一株甲基营养型芽孢杆菌及其在餐厨垃圾防蝇产蛆中的应用,授权专利号ZL201610332824.8。(专利, 第二发明人)
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