PEOPLE
PEOPLE

图片1.png

WU Zihao
吴梓昊


Advanced oxidation process, Radical chemistry, Detection and removal of emerging contaminants from water

Associate Professor


Google Scholar
ResearcherID
Scopus ID

Featured Funded Projects:

1.Natural Science Foundation of China (Grant No. 51908564), Mechanisms of micropollutant abatement by various radicals in the VUV/UV/persulfate process. PI, ¥270,000.

2.China Postdoctoral Science Foundation (Grant No. 2020T130750), Efficiency and mechanism of micropollutant degradation by VUV/UV/chloramine process based on the coexistence of oxidative and reductive species in system. PI, ¥180,000.

3.China Postdoctoral Science Foundation (Grant No. 2019M653178), Control of antibiotics by a novel VUV/UV/chlorine process advanced oxidation process. PI, ¥80,000.

4.Fundamental Research Funds for the Central Universities (Grant No. 19lgpy161), Control of micropollutants by a novel advanced oxidation process based on the enhancement of reductive species by persulfate. PI, ¥150,000.

5.Talent Startup Fund of Beijing Normal University (Grant No. 310432105). PI, ¥500,000.


Featured Publications:

1. Wu, Z.Yang, Y.*, Ling, Li.* Detecting disinfection byproducts and understanding their formation mechanisms using isotopic analysis. TrAC-Trends in Analytical Chemistry, 2024, 175, 117717.

2. Wu, Z.#, Chen, C.#, Zhu, B., Huang, C., An, T., Meng, F., Fang, J.* Reactive nitrogen species are also involved in the transformation of micropollutants by the UV/monochloramine process. Environmental Science & Technology, 2019, 53, 11142-11152.

3. Wu, Z., Fang, J.*, Xiang, Y., Shang, C., Li, X., Meng, F., Yang, X. Roles of reactive chlorine species in trimethoprim degradation in the UV/chlorine process: Kinetics and transformation pathways. Water Research, 2016, 104, 272-282. (ESI 1%)

4. Wu, Z., Guo, K., Fang, J*., Yang, X., Xiao, H., Hou, S., Kong, X., Shang, C., Yang, X., Meng, F. Chen, L. Factors affecting the roles of reactive species in the degradation of micropollutants by the UV/chlorine process. Water Research, 2017, 126, 351-360. (ESI 1%)

5. Zhang, B., Long, Z., Zeng, G., Zhang, W., Su, P., Hou, X., Lv, Q., Li, W., Jiang, J., Wu, Z.*, Yang, T.* Visible light can also efficiently activate chlorine dioxide for the abatement of micropollutants. Chemical Engineering Journal, 2025, 514, 163208.

6. Chen, Z.#, Wang, Z.#, Ma, J., Li, X., Zhou, Y., Gao, Y., Yang, T., Zhang, Z.*, Wu, Z.* Comparative analysis of Fe(IV)-based advanced oxidation processes in generating disinfection byproducts and altering dissolved organic matter molecular structure. Chemical Engineering Journal, 2025, 512, 162379.

7. Huang, Z.#, Huang, L.#, Fang, S., Yang, Y., Lai, M., Zhong, X., Liao, C., Wu, Z.*, Liu, J.* Construction of Z-scheme C-LaFeO3/Co-doped g-C3N4 heterojunction for synergistic photocatalysis-PMS activation in antibiotic degradation. Chemical Engineering Journal, 2026, 176283.

8. Guo, K.#, Wu, Z.#, Chen, C., Fang, J.* UV/Chlorine Process: An Efficient Advanced Oxidation Process with Multiple Radicals and Functions in Water Treatment. Accounts of Chemical Research, 2022, 55, 286–297. (ESI 1%)

9. Chen, C.#, Wu, Z.#, Hou, S., Wang, A., Fang, J.* Transformation of gemfibrozil by the interaction of chloride with sulfate radicals: Radical chemistry, transient intermediates and pathways. Water Research, 2022, 209, 117944. 

10. Pan, M.#, Wu, Z.#, Tang, C., Guo, K., Cao, Y., Fang, J.* Emerging investigators series: comparative study of naproxen degradation by the UV/chlorine and the UV/H2O2 advanced oxidation processes. Environmental Science: Water Research & Technology. 2018, 4, 1219-1230.



Course offered :

Experiments of Synthetic Chemistry, Water Cleantech in Cross-Cultural Perspective