邵彬彬
时间:2024-04-27 21:06 来源: 作者: 点击:次
个人简介 教育经历2017.09-2020.08 同济大学 市政工程系 工学博士2013.09-2016.05 同济大学 环境工程系 工学硕士2009.09-2013.06 南京信息工程大学 环境科学系 理学学士工作经历2023.03-至今 浙江工业大学土木工程学院 市政工程系 特聘副研究员2020.09-2023.03 同济大学环境学院 博士后研究方向水处理高级氧化/还原技术及原理非自由基氧化技术及原理 教学与课程 育人成果 科研项目 国家自然科学基金青年项目,22106120,2022-2024,项目负责人 科研成果 1. Shao, B.B.; Dong H.; Zhou, G.; Ma, J.; Sharma, V. K.; Guan, X. Degradation of organic contaminants by reactive iron/manganese species: Progress and challenges. Water Research, 2022, 221, 118765.2. Shao, B.B.; Zhu, Y.; Chen, J.; Lin, Y.; Guan, X. Fate and transformation of iodine species during Mn(VII)/sulfite treatment in iodide-containing water. Water Environmental Research, 2022, 94(9), e10788.3. Shao, B.B.; Zhu, J.; Zhou, G.; Pan, B.; Zhang, X.; Dong, L; Guan, X. Importance of high-valent iron complex and reactive radicals in organic contaminants’ abatement by the Fe-TAML/free chlorine system. ACS ES&T Engineering, 2021, 1(10), 1401-1409.4. Shao, B.B.; Dong, H.; Feng, L.; Qiao, J.; Guan, X. Influence of [sulfite]/[Fe(VI)] molar ratio on the active oxidants generation in Fe(VI)/sulfite process. Journal of Hazardous Materials, 2020, 384, 121303.5. Shao, B.B.; Dong, H.; Sun, B.; Guan, X. Role of ferrate(IV) and ferrate(V) in activating ferrate(VI) by calcium sulfite for enhanced oxidation of organic contaminants. Environmental Science & Technology, 2019, 53, 894-902.(ESI高被引)6. 邵彬彬,乔俊莲,赵志伟,关小红. 基于高铁酸盐的水污染控制技术研究进展. 科学通报,2019,64(33),3401-3411.7. Wu, D.L.; Zong, Y.; Tian, Z.; Shao, B.B.* Role of reactive oxygen species in As(III) oxidation by carbonate structural Fe(II): A surface-mediated pathway. Chemical Engineering Journal, 2019, 368, 980-987.8. Shao, B.B.; Chen, Y.; Wu, D.L.; Dai, C.; Zhang, Y. Mineral transformation of structural Fe(II) hydroxides with O2, Cu(II), Cr(VI) and NO2- for enhanced arsenite sequestration. Chemical Engineering Journal, 2017, 311, 247-254.9. Shao, B.B.; Guan, Y.; Tian, Z.; Guan, X.; Wu, D.L. Advantages of aeration in arsenic removal and arsenite oxidation by structural Fe(II) hydroxides in aqueous solution. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2016, 506, 703-710.10. Shao, B.B.; Chen, Y.; Wu, D.L.; et al. Aqueous nickel sequestration and release during structural Fe(II) hydroxide remediation: The roles of coprecipitation, reduction and substitution. RSC Advances, 2016, 6(88), 85347-85354. 社会服务 |