SCHOOL OF CHEMICAL ENGINEERING

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副教授

韩 煦

现任职称/职务:副教授
通讯地址:化工学院50-D319
电子邮箱:xuhan@tju.edu.cn
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论著专利:

1.       Zhang, X., Tian, H., Wu, S., Liu, Y., & Han, X.*, 2023. Speciation differences in the surface oxidizing species on FeS2 and NiS2: Reactivity in hydrogen atom transfer and oxygen atom transfer. ACS Earth and Space Chemistry 7(5), 998–1008.

2.       Shan, Y. D., Wu, S. H., Wang, Y. L., Wang, C., Zhi, S. Q., Liu, Y., & Han, X.*, 2023. Selective Oxidation of Cyclohexane to Cyclohexanol/Cyclohexanone by Surface Peroxo Species on Cu-Mesoporous TiO2Inorganic Chemistry 62(12), 4872–4882.

3.       Zhi, S. Q., Zhang, J. Y., Wu, S. H., Zhu, W. S., Shan, Y. D., Liu, Y., & Han, X.*, 2023. Oxidative Desulfurization of Benzothiophene by Persulfate and Cu-Doped G-C3N4 Via the Polymerization Pathway. Industrial & Engineering Chemistry Research 62(9), 3909–3920.

4.      Tian, H., Zhang, X. B., Li, Y. P., He, Q., Tian, N. N., Wu, S. H., & Han, X.*, 2023. Differences in the oxidizing species on the surface of metal-doped ferrihydrite and hematite in the alkaline S(IV)-O2 solution. ACS Earth and Space Chemistry 7(2), 278-288.

5.       Zhu, W. S., Sun, D., Yu, L. L., Zhi, S. Q., Shan, Y. D., Lu, Y. F., ... & Han, X.*, 2022. Selective Photooxidation of Benzyl Alcohol to Benzaldehyde via H-Abstraction by Bi2.15WO6 under Alkaline Conditions. Industrial & Engineering Chemistry Research 61(51), 18685-18695.

6.      Sun, D., Wang, Y.L., Zhu, P.Y., Ren, H.T., Li, Y., Wu, S.H., Jia, S.Y., Han, X.*, 2021. Contribution of H-abstraction to photocatalytic oxidation of As(III) by Bi2.15WO6. Journal of Physical Chemistry C 125, 48, 26492–26502.

7.       Wang, C., Jia, S.Y., Han, Y., Li, Y., Liu, Yong, Ren, H.T., Wu, S.H., Han, X.*, 2021. Selective oxidation of various phenolic contaminants by activated persulfate via the hydrogen abstraction pathway. ACS ES&T Engineering 1(9), 1275-1286

8.    Zhang, X.C., Wu, S.H.*, Jia, S.Y., Wang, C., Sun, S.W., Wang, X.M., Meng, Z.H., Liu, Y., Ren, H.T., Han, X.*, 2020. Turning thiophene contaminant into polymers from wastewater by persulfate and CuO. Chemical Engineering Journal 397, 125351.