Staff
Staff

BAI Xinyue

Position: postdoc

Title:

Email: baixy@scut.edu.cn

Biography

  • Dr. Bai graduated from Peking University and conducted a series of studies on methane emission reduction technologies. Currently engaged in research focused on carbon source-sink, microbial carbon cycling, and greenhouse gas mitigation under hydrodynamic conditions in estuary ecosystems, as well as their responses to global environmental changes.

Research Interests

  • Hydrodynamic regulation

  • Estuary Carbon Sequestration

  • Greenhouse gas mitigation

  • Microbial Carbon Cycle  

Education Experience

  • 2019.09–2025.06: Peking University, Environmental Engineering (Ph.D.)

  • 2015.09-2019.09: Inner Mongolia University, Horticulture (B.S.)

Work Experience

  • 2025.08-Present: South China University of Technology, School of Marine Science and Engineering, Postdoctoral Fellow

Research Achievement

  • Bai, X., Huang, D., Yang, W., Yue, Y., Zhao, N., Wang, N., Zhang, R., Wu, J., and Xu, Q.*. Ammonium-induced microbial and metabolic activity in aerobic methane oxidation processes by zeolite-leaching systems. Journal of Environmental Chemical Engineering 2025, 13: 118637.

  • Bai, X., Huang, D., Yang, W., Wang, Q., Huang, K., Wang, N., Wu, J., Zhang, R., and Xu, Q.*. Impact of co-introduction of soluble potassium and nitrogen on methanotrophs. Chemical Engineering Journal 2025, 511: 162171.

  • Bai, X., Huang, D., Chen, Y., Wang, Q., Chen, Q., Wang, N., and Xu, Q.*. Examination of Fe speciation preference for aerobic methane oxidation by using isotopic Fe-modified zeolites. Chemical Engineering Journal 2023, 455: 140844.

  • Bai, X., Huang, D., Chen, Y., Shao, M., Wang, N., Wang, Q., and Xu, Q.*. Enhancing methane oxidation in biochar-amended Soil: insights from dominant microbial shifting and carbon metabolites perspectives.Chemosphere 2023, 343:140279.

  • 白新月, 陈予珂, 黄丹丹, 徐期勇*.富铁炭对填埋覆土层甲烷氧化主导的微生物活动影响. 中国环境科学 2022, 42 (2):778-793.