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李文譞 副教授 |
E- mail: li_wenxuan14@u.nus.edu |
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研究方向: 环境微生物 |
个人履历
教育经历:
2010.09 – 2014.07 同济大学,环境工程,工学学士
2014.08 – 2019.05 新加坡国立大学,环境工程,博士
主要工作经历:
2025.08-至今 ----北京林业大学 环境科学与工程学院,副教授
2022.12-2025.07---中国环境科学研究院,副研究员
2022.05-2022.12---中国环境科学研究院,助理研究员
2019.05 -2022.04---新加坡国立大学,博士后
教学工作
科学研究
主要研究领域:
1. 微生物组学及生物信息学在环境微生物研究中的应用
2. 有机固废资源化与安全化利用
3. 废水强化生物处理技术及微生物作用机制研究
4.抗生素抗性基因组的赋存、迁移与转化机制
代表性研究项目:
1. 国家自然科学青年科学基金项目(C类),“氨同化作用强化畜禽粪便好氧堆肥氮固存的生态与代谢机制研究“,2026-2028,主持
2. 国家重点研发项目子课题,“高温解无机磷微生物优选与复配技术和堆肥中难利用无机磷微生物强化解磷调控技术”,2025-2027,主持
3. 北京市自然科学基金青年基金,“氨同化菌强化有机固废堆肥固氮机制与氮代谢网络解析”,2025-2026,主持
4. 国家环境保护化学品生态效应与风险评估重点实验室开放基金项目,“宏基因组分箱技术在微生物耐药性宿主识别中的应用”,2022-2023,主持
5. 上海市2021年度“科技创新行动计划”国际科技合作项目,”基于微生物群落结构定向调控的富营养化水体原位生态修复技术研究”,2021-2024,外方骨干
6. 新加坡国家研究基金会国际重大合作项目,“超大城市能源与可持续发展解决方案 (Energy and Environmental Sustainability for Megacities (E2S2)) 二期”,2018-2021,参与
7. 新加坡国家研究基金会国际重大合作项目,“超大城市能源与可持续发展解决方案 (Energy and Environmental Sustainability for Megacities (E2S2)) 一期”,2014-2018,参与
8.新加坡国家研究基金会项目,“微塑料尺寸效应对翡翠贻贝 Perna viridis 的风险”,2019-2021,参与
代表性文章
1. Jason Feijian Mao, Changbing Liu, Guoliang Li, Yuli Wang, Qiyi Yuan, Karina Yew-Hoong Gin, Huifang Zhang, Xu Chen, Wenxuan Li*.Impact of organic carbon concentration on the molecular properties and assembly of riverine dissolved organic matter.Water Research,2025, 286,124261. https://doi.org/10.1016/j.watres.2025.124261.
2. Xuechao Wang, Wenxuan Li*, Shirong Yang, Zihan He, Yanyu Li, Yae Wang, Jie Li.Iron-dependent autotrophic denitrification as a novel microbial driven and iron-mediated denitrification process: A critical review. Environmental Research,2025,273,20808. https://doi.org/10.1016/j.envres.2025.120808.
3. Wenxuan Li, Xinjuan Chen, Tianxue Yang*, Hongjuan Zhu, Zihan He, Ruifeng Zhao, Yongfan Chen. Sponge iron enriches autotrophic/aerobic denitrifying bacteria to enhance denitrification in sequencing batch reactor.Bioresource Technology, 2024,407,131097.https://doi.org/10.1016/j.biortech.2024.131097.
4. Shuang Ren, Peng Wang, Wenxuan Li*, Hongjuan Zhu, Kaiyao Hu, Hao Mu, Xiaoyi Gao, Wei Wang. Iron-based autotrophic denitrification driven by sponge iron for nitrite removal in an anaerobic bioreactor: effect of iron and carbon source. Water Science & Technology, 2024,89(5), 1179-1194. https://doi.org/10.2166/wst.2024.041
5. Hongjuan Zhu#, Wenxuan Li#,*, Xinjuan Chen, Hao Mu, Kaiyao Hu, Shuang Ren, Yuzhuo Peng, Ruifeng Zhao, Yae Wang. Effects of sponge iron dosage on nitrogen removal performance and microbial community structure in sequencing batch reactors. Bioresource Technology, 2023,368,128307.https://doi.org/10.1016/j.biortech.2022.128307.
6.Lili Yang, Wenxuan Li*,Hongjuan Zhu, Sanqiang Dong, Hao Mu, Kaiyao Hu, Te Wang, Jie Li.Functions and mechanisms of sponge iron-mediated multiple metabolic processes in anaerobic ammonium oxidation. Bioresource Technology,2023, 390,129821, https://doi.org/10.1016/j.biortech.2023.129821.
7.Kaiyao Hu, Wenxuan Li*, Hao Mu, Shuang Ren, Hongjuan Zhu, Kexin Zeng, Bo Wang, Jinming Liang, Qi Zhang, Lili Yang, Wei Zhao, Juqiang Xiao.In-situ anaerobic treatment removes the passivation layer of sponge iron to restore the nitrogen and phosphorus removal performance of SBR.Process Safety and Environmental Protection,2023,174, 79-94. https://doi.org/10.1016/j.psep.2023.04.005.
8. Lidong Zhang, Siyue Huo, Wenxuan Li*, Laizhou Song, Wenxian Fu, Jie Li*, Mengchun Gao.Improved heterogeneous photo-Fenton-like degradation of ofloxacin through polyvinylpyrrolidone modified CuFeO2 catalyst: Performance, DFT calculation and mechanism.Separation and Purification Technology,2023,311,123261. https://doi.org/10.1016/j.seppur.2023.123261.
9. Jingyu Zhu, Zhenyi Luo, Tingting Sun, Wenxuan Li, Wei Zhou, Xiaonan Wang, Xunchang Fei, Huanhuan Tong,Ke Yin.Cradle-to-grave emissions from food loss and waste represent half of total greenhouse gas emissions from food systems. Nature Food,2023, 4, 247–256. https://doi.org/10.1038/s43016-023-00710-3
10. Kaiyao Hu, Wenxuan Li*, Yaning Wang, Bo Wang, Hao Mu, Shuang Ren, Kexin Zeng, Hongjuan Zhu, Jinming Liang, Ya'e Wang, Juqiang Xiao. Novel biological nitrogen removal process for the treatment of wastewater with low carbon to nitrogen ratio: A review.Journal of Water Process Engineering,2023,53,103673.https://doi.org/10.1016/j.jwpe.2023.103673.
11. Hao Mu#, Wenxuan Li#,*, Kaiyao Hu, Hongjuan Zhu, Shuang Ren, Yuzhuo Peng, Shenglei Hei, Jing Li, Hairong Quan. Characterization of Achromobacter denitrificans QHR-5 for heterotrophic nitrification-aerobic denitrification with iron oxidation function isolated from BSIS:Nitrogen removal performance and enhanced SND capability of BSIS.Biochemical Engineering Journal,2023, 191,108759.https://doi.org/10.1016/j.bej.2022.108759.
12.Kehuan Guo, Wenxuan Li*, Yae Wang*, Tongyao Hao, Feijian Mao, Te Wang, Zhenni Yang, Xinjuan Chen, Jie Li. Low strength wastewater anammox start-up and stable operation by inoculating sponge-iron sludge: Cooperation of biological iron and iron bacteria. Journal of Environmental Management,2022, 322,116086. https://doi.org/10.1016/j.jenvman.2022.116086.
13. Wenxuan Li, Feijian Mao, Charmaine Ng, Mui Choo Jong, Shin Giek Goh, Francis Rathinam Charles, Oon Tek Ng, Kalisvar Marimuthu, Yiliang He, Karina Yew-Hoong Gin*.Population-based variations of a core resistome revealed by urban sewage metagenome surveillance. Environment International, 2022, 163, 107185. https://doi.org/10.1016/j.envint.2022.107185.
14. Tingting Sun#, Wenxuan Li#, Ke Yin*.Estimation of total flux of polycyclic aromatic hydrocarbons facilitated by methane ebullition into water column from global lake sediments.Water Research,2021,204,117611, https://doi.org/10.1016/j.watres.2021.117611.
15. Wenxuan Li, Feijian Mao, Shu Harn Te, Yiliang He, and Karina Yew-Hoong Gin.Impacts of Microcystis on the Dissemination of the Antibiotic Resistome in Cyanobacterial Blooms.ACS ES&T Water, 2021,1 (5), 1263-1273. https://doi.org/10.1021/acsestwater.1c00006
16. Kehuan Guo, Wenxuan Li#, Yae Wang*, Ying Zheng, Bin Ji, Feijian Mao, Huina Xie, Jie Li.Substantially enhanced degradation of nitrobenzene by biosponge iron system: Process and mechanisms.Process Biochemistry,2021, 108,146-152. https://doi.org/10.1016/j.procbio.2021.05.020.
专著
1. Fleming, L., Creencia, L. B. A., Gerwick, W. H., Goh, H. C., Gribble, M. O., Maycock, B., & Solo-Gabriele, H. (Eds.). (2023). Oceans and Human Health: Opportunities and Impacts. Elsevier.(第12章撰写)
2. Sharma, P.,Tong, Y.W., Mohapatra, S.,, Purchase, D.,, Khuntia, H. K., Singh, S. P. (Eds). (2024) Waste-to-Energy. Sustainable Approaches for Emerging Economies. Elsevier.(第5章撰写)
3. 李杰,程爱华,刘蕾:《工业水处理》,化学工业出版社2024年版。(第4、10章撰写)
专利
1.李东阳,杨天学,席北斗,黄诗博,龚天成,黄楠楠,张婷,李文譞.一种一体化农村有机固废快速热解装置,CN202310596605.0
2.侯起航;曹渺;李文譞;杨帆;张佳琪;王超;楚留意;冯滔.一种用于好氧颗粒污泥成形的均匀布水装置及方法. ZL202210791703.5
3.李文譞.一种一体化生活污水处理设备.ZL201521103385.0
4.李文譞.一种利用太阳能的生活污水处理系统及其处理方法.ZL201410184555.6
社会工作
1. iMeta期刊,宏基因组学和生物信息学研究期刊,青年编委
2. Frontiers in Sustainability期刊,废物管理评论编辑
荣誉
有机固废减污降碳协同微生物代谢网络调控关键技术,环境保护科学技术奖二等奖,第六完成人,2022年