近 五 年 论 文 著 作 专 利 发 明 成 果 |
一、学术论文 [1] Duan Jie-Bin, Pang Su-Yan *, Wang Zhen, Zhou Yang*, Gao Yuan, Li Juan, Guo Qin, Jiang Jin. Hydroxylamine driven advanced oxidation processes for water treatment: A review. Chemosphere, 2021, 262: 128390. [2] Pang Su-Yan, Duan Jie-Bin, Zhou Yang, Gao Yuan*, Jiang Jin. Oxidation kinetics of anilines by aqueous permanganate and effects of manganese products: Comparison to phenols.Chemosphere, 2019, 235, 104-112. [3] Sun Shaofang, Jiang Jin, Qiu Liping,Pang Su-Yan*, Li Juan, Liu Caihong, Wang Lihong, Xue Mang, Ma Jun. Activation of ferrate by carbon nanotube for enhanced degradation of bromophenols: Kinetics, products, and involvement of Fe(V)/Fe(IV).Water Research, 2019, 156, 1-8. (SCI, IF=7.051) [4] Li Juan, Jiang Jin,Pang Su-Yan*, Gao Yuan, Sun Shaofang, Wang Zhen, Wang Panxin, Wang Lihong, Zhou Yang. Transformation of bisphenol AF and bisphenol S by permanganate in the absence/presence of iodide: Kinetics and products.Chemosphere, 2019, 217, 402-410. (SCI, IF=4.427) [5] Zhou Yang, Gao Yuan,Pang Su-Yan*, Jiang Jin, Yang Yi, Ma Jun, Yang Yue, Duan Jiebin, Guo Qin. Oxidation of fluoroquinolone antibiotics by peroxymonosulfate without activation: Kinetics, products, and antibacterial deactivation.Water Research, 2018, 145, 210-219. (SCI, IF=7.051) [6] Zhou Yang, Jin Jiang, Gao Yuan,Pang Su-Yan*, Ma Jun, Duan Jiebin, Guo Qin, Li Juan, Yang Yue. Oxidation of steroid estrogens by peroxymonosulfate (PMS) and effect of bromide and chloride ions: Kinetics, products, and modeling.Water Research, 2018, 138: 56-66. (SCI, IF=7.051) [7] Li Juan, Jiang Jin,Pang Su-Yan*, Zhou Yang, Gao Yuan, Yang Yi, Sun Shaofang, Liu Guanqi, Ma Jun, Jiang Chengchun, Wang Lihong. Transformation of methylparaben by aqueous permanganate in the presence of iodide: Kinetics, modeling, and formation of iodinated aromatic products.Water Research, 2018, 135: 75-84. (SCI, IF=7.051) [8] Gao Yuan,Jiang Jin, Zhou Yang,Pang Su-Yan*, Ma Jun, Jiang Cheng-Chun, Yang Yue, Huang Zhuang-Song, Gu jia, Guo Qin, Duan Jie-Bin, Li Juan. Chlorination of bisphenol S: Kinetics, products, and effect of humic acid.Water Research,2018, 131: 208-217.(SCI, IF=7.051) [9] Song Haoran, Yan Linxia, Jiang Jin, Ma Jun,Pang Su-Yan*, Zhai Xuedong, Zhang Wei, Li Dong. Enhanced degradation of antibiotic sulfamethoxazole by electrochemical activation of PDS using carbon anodes.Chemical Engineering Journal, 2018, 344: 12-20.(SCI, IF=6.735) [10]Guan Chaoting, Jiang Jin, Luo Congwei,Pang Su-Yan*, Yang Yi, Wang Zhen, Ma Jun, Yu Jing, Zhao Xi. Oxidation of bromophenols by carbon nanotube activated peroxymonosulfate (PMS) and formation of brominated products: Comparison to peroxydisulfate (PDS).Chemical Engineering Journal, 2018, 337: 40-50.(SCI, IF=6.735) [11]Li Juan, Zhou Yang, Jiang Jin,Pang Su-Yan*, Gao Yuan, Yang Yi, Liu Guanqi, Ma Jun, Jiang Chengchun, Wang Lihong. Transformation of phenolic compounds by peroxymonosulfate in the presence of iodide and formation of iodinated aromatic products.Chemical Engineering Journal, 2018, 335: 855-864.(SCI, IF=6.735) [12]Liu Yongze, Yang Yi,Pang Su-Yan*, Zhang Liqiu, Ma Jun, Luo Congwei,Guan Chaoting, JiangJin.Mechanistic insight into suppression of bromate formation by dissolved organic matters in sulfate radical-based advanced oxidation processes.Chemical Engineering Journal,2018, 333: 200-205.(SCI, IF=6.735) [13]Sun Shaofang, Liu Yulei, Ma Jun,Pang Su-Yan*, Huang Zhuangsong, Gu Jia, Gao Yuan, Xue Mang, Yuan Yixing, Jiang Jin. Transformation of substituted anilines by Ferrate(VI): Kinetics, pathways, and effect of dissolved organic matter.Chemical Engineering Journal, 2018, 332: 245-252.(SCI, IF=6.735) [14]Sun Shaofang,JiangJin,Pang Su-Yan*, Ma Jun, Xue Mang, Li Juan, Liu Yulei, Yuan Yixing.Oxidation of theophylline by Ferrate(VI) and formation of disinfection byproducts during subsequent chlorination.Separation and Purification Technology, 2018, 201: 283-290.(SCI, IF=3.927) [15]Zhou Yang, Jiang Jin, Gao Yuan,Pang Su-Yan*, Yang Yi, Ma Jun, Gu Jia, Li Juan, Wang Zhen, Wang Li-Hong, Yuan Li-Peng, Yang Yue. Activation of peroxymonosulfate by phenols: Important role of quinone intermediates and involvement of singlet oxygen.Water Research,2017, 125: 209-218.(SCI, IF=7.051) [16]Guan Chaoting, Jiang Jin,Pang Su-Yan*, Luo Cong-wei, Ma Jun, Zhou Yang, Yang Yi. Oxidation kinetics of bromophenols by nonradical activation of peroxydisulfate in the presence of carbon nanotube and formation of brominated polymeric products.Environmental Science & Technology 2017, 51: 10718-10728.(SCI, IF=6.653) [17]Pang Su-Yan, Wang Qiang,Jiang Jin. The confounding effects of dissolved humic acids on the oxidation of simple substituted phenols by permanganate: Comment on "Reinvestigation of the role of humic acid in the oxidation of phenols by permanganate".Environmental Science & Technology, 2014, 48(11): 6518-6519. (SCI, IF=6.653) [18]Pang Su-Yan,Jiang Jin, Gao Yuan, Zhou Yang, Huangfu Xiaoliu, Liu Yongze, Ma Jun. Oxidation of flame retardant tetrabromobisphenol A by aqueous permanganate: Reaction kinetics, brominated products, and pathways.Environmental Science & Technology, 2014, 48(1): 615-623. (SCI, IF=6.653) [19]庞素艳*, 段杰斌, 江进, 姜成春, 马军. KMnO4氧化降解阻燃剂四氯双酚A的动力学、氧化产物及反应路径. 哈尔滨工业大学学报, 2018, 50(8): 20-26 (EI) [20]郭钦,庞素艳*,姜成春,江进,马军. KMnO4氧化降解2,4-二氯酚的产物及机理推测.中国给水排水, 2018, 34(21): 53-58. [21]庞素艳*,杨悦,姜成春,江进,马军. KMnO4降解2-溴酚的氧化产物与反应路径.中国环境科学, 2017, 37(11): 4159-4165. (EI) [22]庞素艳*,鲁雪婷,江进,袁立鹏,马军. KMnO4氧化降解雌酮反应动力学与氧化产物.哈尔滨工业大学学报, 2016, 48(2): 38-43. (EI) [23]解磊,庞素艳*,江进,孙晓君.表面活性剂对MnO2胶体凝聚动力学的影响.哈尔滨工程大学学报. 2016, 37(6): 867-872. (EI) [24]庞素艳*, 王强, 鲁雪婷, 江进, 刘波, 马军. 中间价态锰强化KMnO4氧化降解三氯生. 哈尔滨工业大学学报, 2015, 47(2): 87-91. (EI) 二、学术专著 [1] 庞素艳,江进. 高锰酸钾氧化降解水中有机污染物的研究: 动力学、氧化产物及反应机理. 科学出版社, 2018年8月. 三、发明专利 [1] 庞素艳,王强, 郭晓瑜, 江进, 鲁雪婷, 黄亮, 郭仕达, 王玲. 一种利用无机固体过氧化物诱导过一硫酸盐产生单线态氧清洗膜污染的方法. 中国发明专利, 授权号: ZL201310589567.2,授权日: 2015.07.22. [2] 庞素艳,江进, 王强, 鲁雪婷, 郭晓瑜, 黄亮, 郭仕达, 王玲. 一种利用无机固体过氧化物诱导过一硫酸盐产生单线态氧的水处理方法. 中国发明专利, 授权号: ZL201310589568.7,授权日: 2015.04.15. [3] 庞素艳,江进, 孙晓君, 王强, 鲁雪婷, 袁立鹏. 一种利用无机固体过氧化物诱导过一硫酸盐产生单线态氧处理反渗透浓缩液的方法. 中国发明专利, 授权号: ZL201310589383.6,授权日: 2015.03.18. [4] 庞素艳,江进, 孙晓君, 王强, 鲁雪婷, 袁立鹏. 一种利用无机固体过氧化物诱导过硫酸盐产生单线态氧除藻的水处理方法. 中国发明专利, 授权号: ZL201310593743.X,授权日: 2015.03.11. [5] 庞素艳,杨悦, 江进, 等. 一种利用单线态氧处理反渗透浓缩液的方法. 发明专利. 授权号: ZL201510785886X,授权日: 2017.08.29. [6] 庞素艳,鲁雪婷, 江进, 等. 一种利用单线态氧清洗膜污染的方法. 发明专利. 授权号: ZL2015107857941,授权日: 2017.09.26. [7] 庞素艳,江进, 杨悦, 等. 一种利用单线态氧处理垃圾渗滤液的方法. 发明专利. 授权号: ZL2015107857956,授权日: 2017.11.10. [8] 庞素艳,江进, 杨悦, 等. 一种利用单线态氧处理压舱水的方法. 发明专利. 授权号: ZL2015107858889,授权日: 2018.01.05. [9] 庞素艳,袁立鹏, 江进, 等. 一种催化过氧化物产生单线态氧除污染的水处理方法. 发明专利. 授权号: ZL2015107858874,授权日: 2018.01.05. [10]Jiang Jin,Pang Su-Yan, Ma Jun. Water treatment agent for removing contaminant through oxidation with highly-active manganese(V) intermediate.美国发明专利, 授权号: US 9463990 B2,授权日: 2016.10.11. [11]Ma Jun, Jiang Jin,Pang Su-Yan, Yang Yi, Zhu Juntao. Water treatment method by catalyzing ozone with a persulfate.美国发明专利,授权号: US 9169141 B2,授权日: 2015.10.27. [12] Ma Jun, Jiang Jin,Pang Su-Yan, Liu Zenghe. Water treatment agent for removing pollutant by reinforcing potassiun permanganate with intermediate manganese.美国发明专利, 授权号: US 8858827 B2,授权日: 2014.10.14. |