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浙江工业大学环境学院导师教师师资介绍简介-胡二丹

本站小编 Free考研考试/2021-04-10

胡二丹(1987-
博士,讲师
联系电话:**
E-mail: huerdan@zjut.edu.cn

研究方向
污染物在土壤和水环境中的迁移转化、污染物物化处理技术、有机污染物分离检测技术

主要科研项目
1.国家自然科学基金青年项目,**,矿物微孔中常见金属离子与有机污染物作用机理研究,2017.01-2019.12,主持
2.国家重点研发计划子课题,2018YFC**,复合有机污染场地高效还原修复材料与技术课题二:复合有机污染场地土壤高效强化化学氧化/还原协同修复技术,2018/12-2022/11,参加
3.国家自然科学基金面上项目,**,球磨硫化微米零价铁修复氯代烃污染地下水的机制研究,2019.01-2022.12,参加
代表性论文
(1) Erdan Hu, Xinglei Zhao, Shangyue Pan, Ziwei Ye, Feng He*. Sorption of nonionic aromatic organics to mineral micropores: Interactive effect of cation hydration and mineral charge density, Environmental Science & Technology, 2019, DOI:10.1021/acs.est.9b00145.
(2) Erdan Hu, Ya Zhang, Shuyan Wu, Jun Wu, Liyuan Liang, Feng He*. Role of dissolved Mn(III) in transformation of organic contaminants: Non-oxidative versus oxidative mechanisms, Water Research, 2017, 111: 234-243.
(3) Erdan Hu, Yuanan Hu, Hefa Cheng*. Performance of a novel microwave-based treatment technology for atrazine removal and destruction: Sorbent reusability and chemical stability, and effect of water matrices, Journal of HazardousMaterials, 2015, 299: 444-452.
(4)ErdanHu, HefaCheng*. Catalytic effect of transition metals on microwave-induced degradation of atrazine in mineral micropores, Water Research, 2014, 57: 8-19.
(5) Erdan Hu,Hefa Cheng*. Impact of surface chemistry on microwave-induced degradation of atrazine in mineral micropores,Environmental Science & Technology, 2013, 47 (1): 533–541.
(6) Erdan Hu, Hefa Cheng*. Rapid extraction and determination of atrazine and its degradation products from microporous mineral sorbents using microwave-assisted solvent extraction followed by ultra-HPLC-MS/MS,Microchim Acta, 2013, 180 (7): 703–710.
(7)Erdan Hu, Hefa Cheng*,Yuanan Hu. Microwave-induced degradation of atrazine sorbed in mineral micropores, Environmental Science & Technology, 2012, 46 (9): 5067–5076.

专利
(1)Hefa Cheng, Erdan Hu, A Method to Remove Organic Pollutants through
Coupling Microwave Degradation based on Microporous Mineral Adsorption, 2012.02.11, 美国,US Patent 9,073,765 B2.







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