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Dr Wei Li
Dr

Wei Li

Email: 

Overview

Background

My research focuses on environmental biotechnology for removing and transforming persistent pollutants in water and wastewater.I specialise in microbial and hybrid biological–chemical processes that transform hard-to-degrade organic contaminants and nutrient pollutants, including PFAS and nitrogen compounds, into less harmful or resource-recoverable products through sustainable, low-carbon pathways.

I am particularly interested in how microorganisms interact with engineered systems to drive pollutant transformation. My work combines reactor engineering, microbiology, materials-assisted treatment, and multi-omics analysis to understand both treatment performance and the underlying biological mechanisms.

Key areas of my research include:

  • PFAS biotransformation and defluorination
  • Membrane biofilm reactors
  • Microbial ecology in engineered systems
  • Biological nitrogen removal
  • Bio-Fenton and reactive oxygen species-based treatment
  • Metagenomics, metatranscriptomics, and bioinformatics

At UQ, my work aims to develop sustainable technologies for treating emerging contaminants and recovering valuable resources from waste streams. This includes identifying microorganisms and enzymes involved in PFAS transformation, designing hybrid treatment systems, and linking microbial function to practical environmental engineering applications.

My research sits at the interface of environmental microbiology, water engineering, contaminant chemistry, and systems biology.

Availability

Dr Wei Li is:
Available for supervision

Qualifications

  • Doctor of Philosophy, Zhejiang University
  • Doctor of Philosophy, Zhejiang University (National Che Kiang University) (浙江大学)

Research interests

  • PFAS biotransformation, defluorination and resource recovery

    I investigate microbial and hybrid biological–chemical processes for transforming high-priority PFAS and other persistent fluorinated contaminants. My work aims to identify PFAS-transforming microorganisms, enzymes and reaction pathways, while developing low-carbon remediation strategies that support contaminant removal, defluorination and fluoride-based resource recovery.

  • Environmental biotechnology for low-carbon pollution control

    I develop microbial and engineered biofilm technologies for treating recalcitrant organic compounds, nutrient pollutants and contaminated waste streams. My research combines reactor engineering, microbial ecology, multi-omics and materials-assisted processes to improve pollutant transformation, nitrogen removal, greenhouse gas mitigation and treatment system resilience.

Research impacts

My research develops low-carbon biotechnologies for transforming persistent pollutants and recovering useful resources from contaminated environments and waste streams.By combining microorganisms, engineered biofilms, and hybrid biological–chemical processes, my work addresses contaminants that are difficult to treat using conventional methods, including PFAS, recalcitrant organic compounds, and nitrogen pollutants.

The impact of my research includes:

  • Reducing environmental pollution by transforming persistent contaminants into less harmful forms.
  • Supporting resource recovery by exploring pathways to convert waste and pollutants into reusable products.
  • Lowering treatment carbon footprints through microbial and energy-efficient processes.
  • Improving system resilience under chemical, salinity, and operational stresses.
  • Informing practical remediation strategies through mechanistic understanding of microbial and chemical transformations.

At UQ, my research aims to support sustainable remediation technologies for priority contaminants, with benefits for environmental protection, circular resource use, and low-carbon treatment.

Works

Search Professor Wei Li’s works on UQ eSpace

43 works between 2014 and 2026

21 - 40 of 43 works

2021

Journal Article

Long-term effects of acetylene on denitrifying N2O production: Biomass performance and microbial community

Shen, Xun-yu, Zhuge, Yang-yang, Liu, Yong-di, Shapleigh, James P. and Li, Wei (2021). Long-term effects of acetylene on denitrifying N2O production: Biomass performance and microbial community. Journal of Water Process Engineering, 42 102137, 102137-42. doi: 10.1016/j.jwpe.2021.102137

Long-term effects of acetylene on denitrifying N2O production: Biomass performance and microbial community

2021

Journal Article

A review of partial nitrification in biological nitrogen removal processes: from development to application

Wang, Jipeng, Li, Liangzhong, Liu, Yongdi and Li, Wei (2021). A review of partial nitrification in biological nitrogen removal processes: from development to application. Biodegradation, 32 (3), 229-249. doi: 10.1007/s10532-021-09938-x

A review of partial nitrification in biological nitrogen removal processes: from development to application

2021

Journal Article

Rapid removal of thallium from water by a new magnetic nano-composite using graphene oxide for efficient separation

Li, Liangzhong, Liu, Chang, Ma, Ruixue, Yu, Yunjiang, Chang, Zhaofeng, Zhang, Xiaohui, Yang, Chengyu, Chen, Da, Yu, Yang, Li, Wei and Liu, Yongdi (2021). Rapid removal of thallium from water by a new magnetic nano-composite using graphene oxide for efficient separation. International Biodeterioration & Biodegradation, 161 105245. doi: 10.1016/j.ibiod.2021.105245

Rapid removal of thallium from water by a new magnetic nano-composite using graphene oxide for efficient separation

2021

Journal Article

Enhanced oxidative and adsorptive removal of thallium(I) using Fe<sub>3</sub>O<sub>4</sub>@TiO<sub>2</sub> decorated RGO nanosheets as persulfate activator and adsorbent

Li, Liangzhong, Liu, Chang, Ma, Ruixue, Yu, Yunjiang, Chang, Zhaofeng, Zhang, Xiaohui, Yang, Chenyu, Chen, Da, Yu, Yang, Li, Wei and Liu, Yongdi (2021). Enhanced oxidative and adsorptive removal of thallium(I) using Fe3O4@TiO2 decorated RGO nanosheets as persulfate activator and adsorbent. Separation and Purification Technology, 271 118827. doi: 10.1016/j.seppur.2021.118827

Enhanced oxidative and adsorptive removal of thallium(I) using Fe<sub>3</sub>O<sub>4</sub>@TiO<sub>2</sub> decorated RGO nanosheets as persulfate activator and adsorbent

2021

Journal Article

Performance and granular characteristics of salt-tolerant aerobic granular reactors response to multiple hypersaline wastewater

Yao, Jinchi, Li, Wei, Ou, Dong, Lei, Lei, Asif, Muhammad and Liu, Yongdi (2021). Performance and granular characteristics of salt-tolerant aerobic granular reactors response to multiple hypersaline wastewater. Chemosphere, 265 129170, 1-9. doi: 10.1016/j.chemosphere.2020.129170

Performance and granular characteristics of salt-tolerant aerobic granular reactors response to multiple hypersaline wastewater

2020

Journal Article

Model-based assessment of nitritation using formic acid as a selective inhibitor

Wang, Jipeng, Liu, Yongdi and Li, Wei (2020). Model-based assessment of nitritation using formic acid as a selective inhibitor. Journal of Cleaner Production, 276 124290, 276. doi: 10.1016/j.jclepro.2020.124290

Model-based assessment of nitritation using formic acid as a selective inhibitor

2020

Journal Article

Genome-based analysis to understanding rapid resuscitation of cryopreserved anammox consortia via sequential supernatant addition

Zhou, Yuan-yuan, Shao, Wen-li, Liu, Yong-di, Li, Xiang, Shan, Xiao-yu, Jin, Xin-bai, Gao, Jie and Li, Wei (2020). Genome-based analysis to understanding rapid resuscitation of cryopreserved anammox consortia via sequential supernatant addition. Science of the Total Environment, 744 140785, 140785-744. doi: 10.1016/j.scitotenv.2020.140785

Genome-based analysis to understanding rapid resuscitation of cryopreserved anammox consortia via sequential supernatant addition

2020

Journal Article

Flocs are the main source of nitrous oxide in a high-rate anammox granular sludge reactor: insights from metagenomics and fed-batch experiments

Zhuang, Jin-long, Zhou, Yuan-yuan, Liu, Yong-di and Li, Wei (2020). Flocs are the main source of nitrous oxide in a high-rate anammox granular sludge reactor: insights from metagenomics and fed-batch experiments. Water Research, 186 116321, 1-8. doi: 10.1016/j.watres.2020.116321

Flocs are the main source of nitrous oxide in a high-rate anammox granular sludge reactor: insights from metagenomics and fed-batch experiments

2020

Journal Article

Anaerobic Degradation of Paraffins by Thermophilic Actinobacteria under Methanogenic Conditions

Liu, Yi-Fan, Chen, Jing, Liu, Zhong-Lin, Shou, Li-Bin, Lin, Dan-Dan, Zhou, Lei, Yang, Shi-Zhong, Liu, Jin-Feng, Li, Wei, Gu, Ji-Dong and Mu, Bo-Zhong (2020). Anaerobic Degradation of Paraffins by Thermophilic Actinobacteria under Methanogenic Conditions. Environmental Science & Technology, 54 (17), 10610-10620. doi: 10.1021/acs.est.0c02071

Anaerobic Degradation of Paraffins by Thermophilic Actinobacteria under Methanogenic Conditions

2020

Journal Article

Bacteriophage-mediated extracellular DNA release is important for the structural stability of aerobic granular sludge

Wang, Yi-qiao, Li, Wei, Zhuang, Jin-long, Liu, Yong-di and Shapleigh, James P. (2020). Bacteriophage-mediated extracellular DNA release is important for the structural stability of aerobic granular sludge. Science of the Total Environment, 726 138392, 1-8. doi: 10.1016/j.scitotenv.2020.138392

Bacteriophage-mediated extracellular DNA release is important for the structural stability of aerobic granular sludge

2020

Journal Article

Metagenomics revealed the phase-related characteristics during rapid development of halotolerant aerobic granular sludge

Li, Wei, Yao, Jin-chi, Zhuang, Jin-long, Zhou, Yuan-yuan, Shapleigh, James P. and Liu, Yong-di (2020). Metagenomics revealed the phase-related characteristics during rapid development of halotolerant aerobic granular sludge. Environment International, 137 105548, 137. doi: 10.1016/j.envint.2020.105548

Metagenomics revealed the phase-related characteristics during rapid development of halotolerant aerobic granular sludge

2020

Journal Article

Performance enhancement by adding ferrous to a combined modified University of Cape Town and post-anoxic/aerobic-membrane bioreactor

Zhang, Chuanyi, Xu, Xinhai, Yuan, Limei, Mao, Zhen and Li, Wei (2020). Performance enhancement by adding ferrous to a combined modified University of Cape Town and post-anoxic/aerobic-membrane bioreactor. Chemosphere, 243 125300, 1-9. doi: 10.1016/j.chemosphere.2019.125300

Performance enhancement by adding ferrous to a combined modified University of Cape Town and post-anoxic/aerobic-membrane bioreactor

2020

Journal Article

Tolerance to short-term saline shocks by aerobic granular sludge

Wu, Xiao, Li, Hui, Lei, Lei, Ren, Jiongqiu, Li, Wei and Liu, Yongdi (2020). Tolerance to short-term saline shocks by aerobic granular sludge. Chemosphere, 243 125370, 1-5. doi: 10.1016/j.chemosphere.2019.125370

Tolerance to short-term saline shocks by aerobic granular sludge

2020

Journal Article

Metagenomics reveals microbial community differences lead to differential nitrate production in anammox reactors with differing nitrogen loading rates

Li, Wei, Zhuang, Jin-long, Zhou, Yuan-yuan, Meng, Fan-gang, Kang, Da, Zheng, Ping, Shapleigh, James P. and Liu, Yong-di (2020). Metagenomics reveals microbial community differences lead to differential nitrate production in anammox reactors with differing nitrogen loading rates. Water Research, 169 115279, 1-8. doi: 10.1016/j.watres.2019.115279

Metagenomics reveals microbial community differences lead to differential nitrate production in anammox reactors with differing nitrogen loading rates

2019

Journal Article

Performance and bacterial characteristics of aerobic granular sludge in response to alternating salinity

Hou, Meng, Li, Wei, Li, Hui, Li, Cheng, Wu, Xiao and Liu, Yong-di (2019). Performance and bacterial characteristics of aerobic granular sludge in response to alternating salinity. International Biodeterioration and Biodegradation, 142, 211-217. doi: 10.1016/j.ibiod.2019.05.007

Performance and bacterial characteristics of aerobic granular sludge in response to alternating salinity

2018

Journal Article

Enhancement of the removal and settling performance for aerobic granular sludge under hypersaline stress

Ou, Dong, Li, Wei, Li, Hui, Wu, Xiao, Li, Cheng, Zhuge, Yangyang and Liu, Yong-di (2018). Enhancement of the removal and settling performance for aerobic granular sludge under hypersaline stress. Chemosphere, 212, 400-407. doi: 10.1016/j.chemosphere.2018.08.096

Enhancement of the removal and settling performance for aerobic granular sludge under hypersaline stress

2018

Journal Article

Salinity-Aided Selection of Progressive Onset Denitrifiers as a Means of Providing Nitrite for Anammox

Li, Wei, Li, Hui, Liu, Yong-Di, Zheng, Ping and Shapleigh, James P. (2018). Salinity-Aided Selection of Progressive Onset Denitrifiers as a Means of Providing Nitrite for Anammox. Environmental Science and Technology, 52 (18), 10665-10672. doi: 10.1021/acs.est.8b02314

Salinity-Aided Selection of Progressive Onset Denitrifiers as a Means of Providing Nitrite for Anammox

2018

Journal Article

Responses of genes for the uptake of glycine betaine in Virgibacillus halodenitrificans PDB-F2 under NaCl stress

Qian, Chan-Juan, Li, Wei, Li, Hui, Ou, Dong, Zhu-Ge, Yang-Yang and Liu, Yong-Di (2018). Responses of genes for the uptake of glycine betaine in Virgibacillus halodenitrificans PDB-F2 under NaCl stress. International Biodeterioration and Biodegradation, 132, 192-199. doi: 10.1016/j.ibiod.2018.04.005

Responses of genes for the uptake of glycine betaine in Virgibacillus halodenitrificans PDB-F2 under NaCl stress

2018

Journal Article

Salt-tolerance aerobic granular sludge: Formation and microbial community characteristics

Ou, Dong, Li, Hui, Li, Wei, Wu, Xiao, Wang, Yi-qiao and Liu, Yong-di (2018). Salt-tolerance aerobic granular sludge: Formation and microbial community characteristics. Bioresource Technology, 249, 132-138. doi: 10.1016/j.biortech.2017.07.154

Salt-tolerance aerobic granular sludge: Formation and microbial community characteristics

2016

Journal Article

Effect of self-alkalization on nitrite accumulation in a high-rate denitrification system: performance, microflora and enzymatic activities

Li, Wei, Shan, Xiao-Yu, Wang, Zhi-Yao, Lin, Xiao-Yu, Li, Chen-Xu, Cai, Chao-Yang, Abbas, Ghulam, Zhang, Meng, Shen, Li-Dong, Hu, Zhi-Qiang, Zhao, He-Ping and Zheng, Ping (2016). Effect of self-alkalization on nitrite accumulation in a high-rate denitrification system: performance, microflora and enzymatic activities. Water Research, 88, 758-765. doi: 10.1016/j.watres.2015.11.003

Effect of self-alkalization on nitrite accumulation in a high-rate denitrification system: performance, microflora and enzymatic activities

Funding

Current funding

  • 2026 - 2029
    Microbially-mediated defluorination of high-priority PFAS
    ARC Discovery Early Career Researcher Award
    Open grant

Supervision

Availability

Dr Wei Li is:
Available for supervision

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Available projects

Media

Enquiries

For media enquiries about Dr Wei Li's areas of expertise, story ideas and help finding experts, contact our Media team:

communications@uq.edu.au