Wang Xiaohui头像

Wang Xiaohui

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Introduction

Wang Xiaohui, male, Ph.D., Associate Professor. I obtained my Ph.D. from Tsinghua University in 2010, and conducted postdoctoral research as a visiting scholar at the University of Oklahoma, USA from 2011 to 2012. My main research directions include sewage treatment and resource utilization, environmental microbiology, environmental ecological restoration, etc. I has carried out decades of research work in biological nitrogen and phosphorus removal from sewage, functional microorganism screening, soil and water ecological restoration, etc., and has rich theoretical knowledge and practical experience. In the past years, I has presided over or participated in more than 20 projects, including national key research and development program subjects, national natural science foundation projects, Beijing municipal science and technology plan projects, etc., applied for more than 10 invention patents, and published more than 100 scientific and technological papers, including more than 70 SCI papers.

Education

Work Experience

Social Position

Social Activities

Research

Theory and Technology of Biological Nitrogen Removal from Sewage

Teaching

Environmental Management and Planning

Postgraduates

Funding

In the past years, I has presided over or participated in more than 20 projects, including national key research and development program subjects, national natural science foundation projects, Beijing municipal science and technology plan projects, etc.

Vertical Project

Horizontal Project

Publications

1.      Zhang, G., et al., Self-regulatory mechanisms of anammox system in response to CuO nanoparticles revealed by microbial ecological networks and metagenomics. Bioresource Technology, 2025. 432.

2.      Ya, T., et al., Autotrophic biological nitrogen removal in anammox system at elevated temperature: EPS regulation and metagenomic analysis. Chemical Engineering Journal, 2024. 498.

3.      Wang, X., et al., Important role of Chloroflexi: Improved the cooperation of anammox community under PFOS stress. Chemical Engineering Journal, 2024. 499.

4.      Liu, J., et al., Responses of suspended sludge and biofilm in a SNAD system under C/N elevation: Microbial activity, nitrogen conversion flux and molecular ecological network. Science of The Total Environment, 2024. 954.

5.      Ya, T., et al., Functional stability correlates with dynamic microbial networks in anammox process. Bioresource Technology, 2023. 370.

6.      Hu, M., et al., Dissolved oxygen alters the microbial interactions of anammox consortia in PN/A process. Journal of Water Process Engineering, 2023. 53.

7.      Hu, M., et al., Responses of microbial interactions and functional genes to sulfamethoxazole in anammox consortia. Journal of environmental management, 2023. 348: p. 119408-119408.

8.      Ya, T., et al., Metagenomic insights into the symbiotic relationship in anammox consortia at reduced temperature. Water Res., 2022. 225: p. 119184.

9.      Liu, S., et al., Shifts of bacterial community and molecular ecological network in activated sludge system under ibuprofen stress. Chemosphere, 2022. 295: p. 133888.

10.   Liu, J.Y., et al., Responses of microbial interactions to polyvinyl chloride microplastics in anammox system. Journal of Hazardous Materials, 2022. 440.

11.   Ya, T., et al., Successional Dynamics of Molecular Ecological Network of Anammox Microbial Communities under Elevated Salinity. Water Res., 2021. 188: p. 116540.

12.   Du, S., et al., Distinct microbial communities and their networks in an anammox coupled with sulfur autotrophic/mixotrophic denitrification system. Environmental pollution, 2020. 262: p. 114190-114190.


Awards

Patent

Honor Reward

Admissions Information

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