教育经历:
2013.09-2017.06 华中科技大学 化学与化工学院 本科
2017.09-2022.06 华中科技大学 环境科学与工程学院 博士
工作经历:
2022.06 至今 广西民族大学 材料与环境学院 讲师
研究方向:
1. 光催化 CO2 还原技术
自掺杂 TiO2 纳米管基催化剂在光催化还原 CO2 的研究及应用
2. 光催化 VOCs 处理技术
自掺杂 TiO2 纳米管基催化剂在光催化降解 VOCs 的研究及应用
3. 基于生物炭的土壤修复高级氧化技术
生物炭活化过硫酸盐/亚硫酸盐去除土壤中持久性有机污染物
发表论文:
1.Xixiang Liu, Hengyi Wang, Chenxu Wang, Liyang Zhao, Honghui Pan*, Yan Liu*, Liying Liang, Chuanqi Zhao, Shiyong Huang. Self-endowed magnetic photocatalysts derived from iron-rich sludge and its recycling in photocatalytic process for tetracycline degradation. Bioresource Technology, 2024, 395, 130357. (中科院 1 区,高被引论文)
2. Xixiang Liu, Xinyi Shi, Mingjian Huang, Honghui Pan*, Yan Liu, Liying Liang, Chuanqi Zhao, Shiyong Huang, Tieguang He*. Insight into the sulfite activation by Fe-rich sludge-derived biochar for efficient organic contaminant degradation: The role of iron species. Journal of Water Process Engineering, 2024, 64, 105688. (中科院 2 区)
3. Xixiang Liu, Luo Fuyu, Liying Liang*, Nan Li, Zheng Zhou, Yan Liu, Honghui Pan*. Enhanced dewaterability of waste activated sludge via peroxymonosulfate activation process initiated by magnetic biochar derived from iron-rich sludge. Sustainable Chemistry and Pharmacy, 2024, 39, 101585. (中科院 2 区)
4. Liyang Zhao, Qian Li, Hengyi Wang, Zheng Zhou, Nan Li, Honghui Pan*, Yan Liu*, Xixiang Liu*. Enhanced adsorptive removal of tetracycline by phosphomolybdic acid-modified low-temperature sludge biochar. Langmuir, 2024, 40, 751-760. (中科院 2 区)
5. Honghui Pan, Minghui Sun, Xiaoguang Wang, Ming Zhang, Muthu Murugananthan, Yanrong Zhang*. A novel electric-assisted photocatalytic technique using self-doped TiO2 nanotube films. Applied Catalysis B: Environmental, 2022, 307, 121174. (中科院 1 区,高被引论文)
6. Honghui Pan, Jianyu Gong, Yanrong Zhang*. Enabling durable selectivity of CO2 electroreduction to formate achieved by a multi-layer SnOx structure. Applied Surface Science, 2022, 579, 151971. (中科院 1 区)
7. Honghui Pan, Xiaoguang Wang, Zhiwei Xiong, Minghui Sun, Muthu Murugananthan, Yanrong Zhang*. Enhanced photocatalytic CO2 reduction with defective TiO2 nanotubes modified by single-atom binary metal components. Environmental Research, 2021, 198, 111176. (中科院 2 区)