科研论文
[1] 周建敏1;,李非1,2,3,4;,费莉婷1;,刘杰1,2,3,4;,纪志永1,2,3,4;,赵颖颖1,2,3,4;,汪婧1,2,3,4;,郭小甫1,2,3,4;,王士钊1,2,3,4;,袁俊生1,2,3,4;,毕京涛1,2,3,4;,刘凤禛1;. 纳米粒子/氧化石墨烯改性复合膜制备及其分离性能研究. 化学工业与工程, 2023, 40 2, 104-113.
[2] Mengdan Qiao;|Meiling Wang;|Xianze Meng;|Hanyu Zhu;|Yu Zhang;|Zhiyong Ji;|Yingying Zhao;|Jie Liu;|Shizhao Wang;|Xiaofu Guo;|Jing Wang;|Jingtao Bi;|Panpan Zhang;|Devis Di Tommaso;|Fei Li;|Junsheng Yuan. Corrigendum to “Fine analysis of the component effect on the microstructure of LiCl solution” [J. Mol. Liquids 373 (2023) 121238]. Journal of Molecular Liquids, 2023, 381 , 121820.
[3] Xin-Lin Zhou;Zhi-Yong Ji;Jing Wang;Xiao Zhang;Xiao-Fu Guo;Jie Liu;Pan-Pan Zhang;Jing-Tao Bi;Ying-Ying Zhao;Jun-Sheng Yuan. Highly efficient recovery of bromine from shale gas wastewater by selective electrochemical oxidation. Journal of Environmental Chemical Engineering, 2022, 10 3, 107946.
[4] Chen, Tianyi1; Bi, Jingtao1; Zhao, Yingying1, 2, 3, 5; Du, Zhongte1; Guo, Xiaofu1, 2, 3; Yuan, Junsheng4; Ji, Zhiyong1, 2, 3; Liu, Jie1, 2, 3; Wang, Shizhao1, 2, 3; Li, Fei1, 2, 3; Wang, Jing1, 2, 3 . Carbon dioxide capture coupled with magnesium utilization from seawater by bipolar membrane electrodialysis. Science of the Total Environment, 2022, 820 , .
[5] Cui WZ;Ji ZY;Tumba K;Zhang ZD;Wang J;Zhang ZX;Liu J;Zhao YY;Yuan JS. Response of salinity gradient power generation to inflow mode and temperature difference by reverse electrodialysis.. Journal of environmental management, 2022, 303 , 114124.
[6] Chen, Tianyi1; Bi, Jingtao1; Zhao, Yingying1, 2, 3, 5; Du, Zhongte1; Guo, Xiaofu1, 2, 3; Yuan, Junsheng4; Ji, Zhiyong1, 2, 3; Liu, Jie1, 2, 3; Wang, Shizhao1, 2, 3; Li, Fei1, 2, 3; Wang, Jing1, 2, 3 . Carbon dioxide capture coupled with magnesium utilization from seawater by bipolar membrane electrodialysis. Science of the Total Environment, 2022, , .
[7] Fang, Jiawei1, 2, 3; Wang, Jing1, 2, 3; Ji, Zhi-Yong1, 2, 3; Li, Xinwei1, 2, 3; Guo, Zhiyuan1, 2, 3; Liu, Jie1, 2, 3; Zhao, Yingying1, 2, 3; Yuan, Junsheng1, 2, 3 . Preparation of a Novel Hollow Porous Limn2o4 Film Electrode (H-Lmoe) and its Improved Performance for Lithium Recovery at Low Concentration. SSRN, 2022, , .
[8] Zhou, Xinlina,b,c;Ji, Zhiyonga,b,c;Wang, Jinga,b,c;Zhang, Xiaoa,b,c;Guo, Xiaofua,b,c;Liu, Jiea,b,c;Zhang, Panpana,b,c;Bi, Jingtaoa,b,c;Zhao, Yingyinga,b,c;Yuan, Junshenga,b,c;. Highly efficient recovery of bromine from shale gas wastewater by selective electrochemical oxidation. Journal of Environmental Chemical Engineering, 2022, 10 3, .
[9] 张兆祥1,2,3;,黄智辉1,2,3;,纪志永1,2,3;,汪婧1,2,3;,郭小甫1,2,3;,刘杰1,2,3;,赵颖颖1,2,3;,李洪1,2,3;,袁俊生1,2,3;. Fe2+/电复合活化过硫酸盐处理酸性橙Ⅱ的过程研究. 环境科学学报, 2022, 42 4, 113-121.
[10] 张帆,纪志永,汪婧,郭志远,方嘉炜,郭小甫,赵颖颖,刘杰,袁俊生. GO/LiMn_2O_4膜电极构建及其提锂性能研究. 材料导报, 2022, 36 6A, 21040052.