环境科学与工程系

于童个人简历

发布人:冷吉虎时间:2019年10月12日浏览:

姓名

于童

单位

环境与市政工程学院

职称

讲师

电话

13969792193        

邮箱

Yt1987728@126.com

学术兼职

个人简介

教育经历:

本科:2006/09-2010/07,中国海洋大学,海洋生命学院

硕士:2010/09-2013/07,中国海洋大学,海洋生命学院

博士:2013/09-2018/07,清华大学,    环境学院

工作经历:

2018/09-今,青岛理工大学,主要从事专业教师工作,主要研究方向:环境工程微生物;污水处理与资源化;再生水水质评价;膜技术应用及污染控制

课程教学

本科:清洁生产

学术成果

主持科研项目:

低水温反渗透工艺生物污堵的氯消毒控制效果及作用机理,2019.6-2021.12,中国博士后科学基金面上资助,8万。

代表性论文:

Yu Tong,   Sun Hao, Chen Zhuo, Wang Yun-Hong, Huo Zheng-Yang, Nozomu Ikuno, Kazuki   Ishii, Jin Yan, Hu Hong-Ying, Wu Yin-Hu, Lu Yun. Different bacterial species   and their extracellular polymeric substances (EPSs) significantly affected   reverse osmosis (RO) membrane fouling potentials in wastewater reclamation.   Science of the Total Environment, 2018, 644: 486-493. (IF 4.610)

Yu Tong,   Meng Lu, Zhao Qing-Bo, Shi Ye, Hu Hong-Ying, Lu Yun. Effects of chemical   cleaning on RO membrane inorganic, organic and microbial foulant removal in a   full-scale plant for municipal wastewater reclamation. Water Research, 2017,   113: 1-10. (IF 7.052)

Yu Tong,   Li Guo-Qiang, Lin Wen-Qi, Hu Hong-Ying, Lu Yun. Coagulation increased the   growth potential of various species bacteria of the effluent of a MBR for the   treatment of domestic wastewater. Environmental Science and Pollution   Research, 2017, 24 (6): 5126–5133. (IF 2.741)

Yu Tong,   Zhang Zeng-Hu, Fan Xiao-Yang, Zhang Xiao-Hua. Aquimarina megaterium sp. nov.,   isolated from seawater. International Journal of Systematic and Evolutionary   Microbiology, 2014, 64: 122-127. (IF 2.134)

Yu Tong,   Yin Qi, Song Xiang-Yu, Zhao Rui, Shi Xiao-Chong, Zhang Xiao-Hua. Aquimarina   longa sp. nov., isolated from seawater, and emended description of Aquimarina   muelleri. International Journal of Systematic and Evolutionary Microbiology,   2013, 63: 1235–1240. (IF 2.134)

Chen Zhuo, Yu   Tong (Joint First), Lu Yun, Li Guo-Qiang, Wu Qian-Yuan, Li Kui-Xiao, Bai   Yu, Liu Shu-Ming, Hu Hong-Ying. Significance of assimilable organic carbon   (AOC) changes and fluctuations in reclaimed water: critical insights into better   biological stability evaluation and control for sustainable water reuse.   Bioresource Technology, 2018, 254,290-299. (IF 5.651)

奖励与荣誉: