• 姓名: 银仁莉
  • 职称: 副教授
  • 学位: 博士
  • 华南农业大学
  • 资源环境学院
性别:女 职称:首聘副教授 Email:yinrenli@scau.edu.cn 办公电话: 办公地址:农学楼421室

教育背景

2008年9月-2012年6月,四川农业大学,环境工程;学士
2012年9月-2014年7月,哈尔滨工业大学,环境科学与工程(国家重点实验室,双一流A+学科);硕士,导师:郭婉茜 教授
2014年9月-2019年1月,哈尔滨工业大学,环境科学与工程(国家重点实验室,双一流A+学科);博士,导师:张嘉修/郭婉茜 教授

工作履历

2019年1月-2021年5月,暨南大学,生态学,博士后,合作导师:曾力希/朱明山 教授

学术兼职

研究领域

高级氧化技术:过硫酸盐氧化技术、光催化技术、臭氧氧化技术等;
难降解有机污染物的深度处理:抗生素及个人护理品,药物及全氟类化合物等;
理论计算化学:DFT计算,高斯计算,VASP

奖励与荣誉

四川农业大学“杰出校友”;国家奖学金(本硕博期间均获得),国家励志奖学金,优秀共产党员,优秀团干部,等  

主持项目

广东省区域联合基金青年基金项目,2019A1515111088,基于过渡金属磷化物活化过硫酸盐降解抗生素的效能及机理研究,2020-01-01 至 2021-12-31,10万元,在研,主持。
中国博士后科学基金,第65批面上项目,55350333,非自由基氧化主导的过硫酸盐技术降解磺胺抗生素的研究,2019-01至2021-01,8万元,已结题,主持。

学术成果

一、发表论文:
[1] Renli Yin, Binghua Jing, Shaoxiong He, Jiayue Hu, Gang Lu, Zhimin Ao, Chuanyi Wang, Mingshan Zhu. Near-infrared light to heat conversion in peroxydisulfate activation with MoS2: a new photo-activation process for water treatment. Water Research, 190 (2021): 116720. (中科院一区,IF = 11.236)
[2] Renli Yin, Wanqian Guo, Nanqi Ren, Lixi Zeng, Mingshan Zhu. New insight into the substituents affecting the peroxydisulfate nonradical oxidation of sulfonamides in water. Water Research 171 (2020): 115374. (中科院一区,IF = 11.236)
[3] Renli Yin, Jiayu Hu, Gang Lu, Wonyong Choi, Mingshan Zhu. Complexes of Fe(III)-organic pollutants that directly activate Fenton-like processes under visible light. Applied Catalysis B: Environmental 283 (2021), 119663. (中科院一区,IF = 19.503)
[4] Renli Yin, Yanxi Chen, Jiayu Hu, Shangbin Jin, Wanqian Guo, Mingshan Zhu. Peroxydisulfate bridged photocatalysis of covalent triazine framework for carbamazepine degradation. Chemical Engineering Journal, 427 (2021): 131613. (中科院一区,IF = 13.273)
[5] Shaoxiong He, Renli Yin*, Yanxi Chen, Tianyi Lai, Wanqian Guo, Lixi Zeng, Mingshan Zhu et al. Consolidated 3D Co3Mn-layered double hydroxide aerogel for photo-assisted peroxymonosulfate activation in metronidazole degradation. Chemical Engineering Journal, 423 (2021): 130172. (中科院一区,IF = 13.273)
[6] Renli Yin, Yanxi Chen, Shaoxiong He, Wanbin Li, Lixi Zeng, Wanqian Guo, Mingshan Zhu. In situ photoreduction of structural Fe (III) in a metal–organic framework for peroxydisulfate activation and efficient removal of antibiotics in real wastewater. Journal of Hazardous Materials 388 (2020): 121996. (中科院一区,IF =10.588)
[7] Renli Yin, Wanqian Guo, Huazhe Wang, Juanshan Du, Qinglian Wu, Jo-Shu Chang, Nanqi Ren. Singlet oxygen-dominated peroxydisulfate activation by sludge-derived biochar for sulfamethoxazole degradation through a nonradical oxidation pathway: Performance and mechanism. Chemical Engineering Journal 357 (2019): 589-599. (Hot Paper & Highly Cited Paper, 中科院一区,IF=13.273)
[8] Renli Yin, Wanqian Guo, Huazhe Wang, Juanshan Du, Xianjiao Zhou, Qinglian Wu, Heshan Zheng, Jo-Shu Chang, Nanqi Ren. Selective degradation of sulfonamide antibiotics by peroxymonosulfate alone: direct oxidation and nonradical mechanisms. Chemical Engineering Journal 334 (2018): 2539–2546. (Hot Paper & Highly Cited Paper, 中科院一区,IF = 13.273)
[9] Renli Yin, Wanqian Guo, Huazhe Wang, Juanshan Du, Xianjiao Zhou, Qinglian Wu, Heshan Zheng, Jo-Shu Chang, Nanqi Ren. Enhanced peroxymonosulfate activation for sulfamethazine degradation by ultrasound irradiation: performances and mechanisms. Chemical Engineering Journal 335 (2018): 145–153. (Highly Cited Paper, 中科院一区,IF = 13.273
[10] Renli Yin, Wanqian Guo, Juanshan Du, Xianjiao Zhou, Heshan Zheng, Qinglian Wu, Jo-Shu Chang, Nanqi Ren. Heteroatoms doped graphene for catalytic ozonation of sulfamethoxazole by metal-free catalysis: Performances and mechanisms. Chemical Engineering Journal 317 (2017): 632-639.  (中科院一区,IF = 13.273)
[11] Renli Yin, Wanqian Guo, Xianjiao Zhou, Heshan Zheng, Juanshan Du, Qinglian Wu, Jo-Shu Chang, Nanqi Ren. Enhanced sulfamethoxazole ozonation by noblemetal-free catalysis based on magnetic Fe3O4 nanoparticles: catalytic performance and degradation mechanism. RSC Advances 6 (2016): 19265. (中科院三区,IF = 3.361)

二、授权专利:
郭婉茜,银仁莉,周显娇,曹海欧,任南琪. 一种超声/臭氧联合强化降解污水中抗生素的方法,ZL201410244701.X.
郭婉茜,银仁莉,周显娇,杜鹃山,任南琪. 一种降解废水中抗生素的方法,ZL201610907752.5.