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教育背景 2005-2009 就读燕山大学环境工程专业取得学士学位 2009-2012 就读燕山大学环境工程专业取得硕士学位 2012-2017 哈尔滨工业大学市政环境工程学院马军教授课题组攻读博士研究生学位。在读期间,申请到国家留学基金委 (国家建设高水平大学公派研究生项目) 资助,赴Swiss Federal Institution of Aquatic Science and Technology (瑞士联邦供水、废水处理与水资源保护研究所 Eawag) Urs von Gunten教授课题组进行为期18个月的博士课题研究。 工作经历 2017至今 华侨大学任职 讲师 硕士生导师 课程教学 研究生:水污染控制理论与技术;生态文明建设与可持续发展 本科生:土壤污染防治与生态修复(全英课);水污染控制工程实验;环境工程课程设计 科研项目 [1] 国家自然科学基金青年项目:亚硫酸盐/过氧乙酸新型体系对水中碘代药物的降解效能与机制(51808233) [2] 华侨大学高层次人才科研启动项目:过氧乙酸氧化含碘水体中碘代消毒副产物的形成机制(600005-Z17Y0069) 出版著作 刘正乾, 杨少霞, 文刚, 赵晓丹, 等.《水和污水的臭氧化学—基本原理与应用》, 中国建筑工业出版社. 授权发明专利 [1] 马军,赵晓丹,肖佳月等. 一种高锰酸盐异相催化氧化的水处理方法. 发明专利. ZL201310520318.8 [2] Jun Ma,Yulei Liu,Xiaodan Zhao,Jiayue Xiao. Preparation method for composite ferrate reagent. [3] Jun Ma,Yulei Liu,Jiayue Xiao,Xiaodan Zhao. Method for efficiently preparing ferrate based on nascent interfacial activity.

研究领域

化学氧化处理水中有机物和无机物及副产物的研究

近期论文

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[1] Xiaodan Zhao, Wenjing Wu, Guohua Jing, Zuoming Zhou. Activation of sulfite autoxidation with CuFe2O4 prepared by MOF-templated method for abatement of organic contaminants. Environmental pollution, 2020, 260, 114038 [2] Xiaodan Zhao, Ying Wu, Danying Xing, Zhaojin Ren, Lingfeng Ye. Enhanced abatement of organic contaminants by zero‑valent copper and sulfite. Environmental Chemistry Letters, 2020, 18, 237−241 [3] Xiaodan Zhao, Wenjing Wu, Yonggui Yan. Efficient abatement of an iodinated X-ray contrast media iohexol by Co(II) or Cu(II) activated sulfite autoxidation process. Environmental science and pollution research 2019, 26, 24707−24719 [4] Xiaodan Zhao, Yuhuan Bao, Huiling Liu, Jun Ma. Enhanced abatement of various phenols by integrated permanganate and activated carbon process: role of quinones and phenolic acids. Desalination and water treatment, 2019, 144: 263−271 [5] Xiaodan Zhao, Jun Ma, Urs von Gunten. Reactions of hypoiodous acid with model compounds and the formation of iodoform in absence/presence of permanganate. Water Research, 2017, 119, 126−135. [6] Xiaodan Zhao, Elisabeth Salhi, Huiling Liu, Jun Ma, Urs von Gunten. Kinetic and mechanistic aspects of the reactions of iodide and hypoiodous acid with permanganate: oxidation and disproportionation. Environmental Science and Technology, 2016, 50, 4358−4365. [7] Xiaodan Zhao, Jun Ma, Jin Jiang, Yuhuan Bao, Huiling Liu. Phenols and anilines degradation by permanganate in the absence/presence of carbon nanotubes: oxidation and dehalogenation. Separation and Purification Technology, 2016, 70, 344−352.

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