
BAI Xinyue
Position: postdoc
Title:
Email: baixy@scut.edu.cn
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.
Hydrodynamic regulation
Estuary Carbon Sequestration
Greenhouse gas mitigation
Microbial Carbon Cycle
2019.09–2025.06: Peking University, Environmental Engineering (Ph.D.)
2015.09-2019.09: Inner Mongolia University, Horticulture (B.S.)
2025.08-Present: South China University of Technology, School of Marine Science and Engineering, Postdoctoral Fellow
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.