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南方科技大学环境科学与工程学院导师教师师资介绍简介-刘鑫

本站小编 Free考研考试/2021-06-12

刘鑫 liux5 at sustech.edu.cn

简历
科研
教学
发表论著
个人主页
刘鑫,2009年获得山东大学学士学位,2010年获得南洋理工大学硕士学位,2015年获得南洋理工大学博士学位;博士毕业后就职于新加坡膜技术中心(SMTC),任研究助理、博士后研究员;新加坡膜协会(MEMSIS)会员。主要研究方向为基于膜分离的高效水处理技术,具体研究内容包括:多种高分子分离膜的制备与改性、基于先进光学技术的膜过程表征、纳米材料在分离膜制备中的应用和多种水处理膜分离过程。研究成果发表在包括Water Res.、Environ. Sci. Technol.、Environ. Sci. Technol. Letters、J. Membrane Sci.和Desalination等在内的多个国际著名权威期刊上,总引用数300余次,h指数8;作为团队核心成员或主要成员参与了多个国内外科研项目;作为合作发明人拥有授权的实用新型专利2 项;参加过多次国际会议并做口头报告;被邀请为多个期刊的审稿人。
教育背景
2013/09 - 2014/09:约翰霍普金斯大学,地理与环境工程系,访问学生
2010/09 - 2014/09:南洋理工大学,环境工程,博士
2009/06 - 2010/06:南洋理工大学,环境工程,硕士
2009/06 - 2009/08:斯坦福大学,土木与环境工程学院,访问学生
2008/08 - 2008/12:香港理工大学,土木及环境工程学系,访问学生
2005/09 - 2009/06:山东大学,环境科学,学士
目前任职
南方科技大学环境科学与工程学院,研究副教授
工作经历
2020/12 - 至今:南方科技大学环境科学与工程学院,研究副教授
2018/07 - 2020/12:南方科技大学环境科学与工程学院,助理研究员
2015/09 - 2017/08:新加坡膜技术中心,博士后
2014/12 - 2015/09:新加坡膜技术中心,研究助理
获奖情况及荣誉
2010:新加坡国家科研基金委,环境与水技术博士奖学金
2008:中华人民共和国教育部,国家奖学金
研究兴趣
1)高分子分离膜的制备与改性
2)新型膜过程表征技术
3)纳米材料在膜制备中的应用
4)用于海水淡化、水处理和膜蒸馏的膜分离过程
发表论著
1. T. A. Trinh, W. Li*, Q. Han, X. Liu, A. G. Fane, J. W. Chew*, Analyzing external and internal membrane fouling by oil emulsions via 3D optical coherence tomography. Journal of Membrane Science 2018, 548, 632-640. (IF=6.578)
2. B. Wu*, T. Christen, H. S. Tan, F. Hochstrasser, S. R. Suwarno, X. Liu, T. H. Chong, M. Burkhardt, W. Pronk*, A. G. Fane, Improved performance of gravity-driven membrane filtration for seawater pretreatment: Implications of membrane module configuration. Water Research 2017, 114, 59-68. (IF=7.051)
3. Q. Han, W. Li*, T. A. Trinh, X. Liu, J. W. Chew*, A network-based approach to interpreting pore blockage and cake filtration during membrane fouling. Journal of Membrane Science 2017, 528, 112-125. (IF=6.578)
4. X. Liu, W. Li*, T. H. Chong*, A. G. Fane, Effects of spacer orientations on the cake formation during membrane fouling: Quantitative analysis based on 3D OCT imaging. Water Research 2017, 110, 1-14. (IF=7.051)
5. W. Li*, X. Liu, Y.-N. Wang, T. H. Chong, C. Y. Tang, A. G. Fane, Analyzing the evolution of membrane fouling via a novel method based on 3D optical coherence tomography imaging. Environmental Science & Technology 2016, 50, (13), 6930-6939. (IF=6.653)
6. M. Mukherjee, N. V. Menon, X. Liu, Y. Kang, B. Cao*, Confocal laser scanning microscopy-Compatible microfluidic membrane flow cell as a nondestructive tool for studying biofouling dynamics on forward osmosis membranes. Environmental Science & Technology Letters 2016, 3, (8), 303-309. (IF=5.869)
7. X. Liu, L. X. Foo, Y. Li, J. Y. Lee, B. Cao, C. Y. Tang*, Fabrication and characterization of nanocomposite pressure retarded osmosis (PRO) membranes with excellent anti-biofouling property and enhanced water permeability. Desalination 2016, 389, 137-148. (IF=6.603)
8. X. Liu, X. Jin, B. Cao, C. Y. Tang*, Bactericidal activity of silver nanoparticles in environmentally relevant freshwater matrices: Influences of organic matter and chelating agent. Journal of Environmental Chemical Engineering 2014, 2, (1), 525-531. (IF=4.010)
9. J.-Y. Lee, S. Qi, X. Liu, Y. Li, F. Huo*, C. Y. Tang*, Synthesis and characterization of silica gel–polyacrylonitrile mixed matrix forward osmosis membranes based on layer-by-layer assembly. Separation and Purification Technology 2014, 124, 207-216. (IF=3.927)
10. J. Nikkola*, X. Liu, Y. Li, M. Raulio, H. L. Alakomi, J. Wei, C. Y. Tang, Surface modification of thin film composite RO membrane for enhanced anti-biofouling performance. Journal of Membrane Science 2013, 444, 192-200. (IF=6.578)
11. S.-L. Loo, A. G. Fane, T.-T. Lim*, W. B. Krantz, Y.-N. Liang, X. Liu, X. Hu*, Superabsorbent cryogels decorated with silver nanoparticles as a novel water technology for point-of-use disinfection. Environmental Science & Technology 2013, 47, (16), 9363-9371. (IF=6.653)
“Best Technology Paper 2013” by Environmental Science & Technology
12. C. K. Ng, K. Sivakumar, X. Liu, M. Madhaiyan, L. Ji, L. Yang, C. Tang, H. Song, S. Kjelleberg, B. Cao*, Influence of outer membrane c-type cytochromes on particle size and activity of extracellular nanoparticles produced by Shewanella oneidensis. Biotechnology and Bioengineering 2013, 110, (7), 1831-1837. (IF=3.952)
13. X. Liu, S. Qi, Y. Li, L. Yang, B. Cao, C. Y. Tang*, Synthesis and characterization of novel antibacterial silver nanocomposite nanofiltration and forward osmosis membranes based on layer-by-layer assembly. Water Research 2013, 47, (9), 3081-3092. (IF=7.051)
14. J. Wei, X. Liu, C. Qiu, R. Wang, C. Y. Tang*, Influence of monomer concentrations on the performance of polyamide-based thin film composite forward osmosis membranes. Journal of Membrane Science 2011, 381, (1–2), 110-117. (IF=6.578)
15. B. Cao, B. Gao*, X. Liu, M. Wang, Z. Yang, Q. Yue, The impact of pH on floc structure characteristic of polyferric chloride in a low DOC and high alkalinity surface water treatment. Water Research 2011, 45, (18), 6181-6188. (IF=7.051)
16. 包南, 张锋, 马志会, 刘鑫, 孙剑, 刘峰. 介孔TiO2纤维的制备及其光催化性能. 化工环保 2007, 27 (3), 204-208. (IF=1.429)
国际会议
1. X. Liu, S. Qi, Y. Li, B. Cao, L. Yang, C. Y. Tang, "Synthesis and characterization of novel anti-biofouling silver nanocomposite forward osmosis membranes", presented in: 1st International Conference on Desalination Using Membrane Technology, April 8-10, 2013, Sitges, Barcelona, Spain.
2. X. Liu, L. X. Foo, S. Qi, Y. Li, J. Y. Lee, B. Cao, C. Y. Tang, "Synthesis and characterization of novel anti-bacterial silver nanocomposite membranes with versatile environmental applications", presented in: The 23rd Annual Meeting of the North American Membrane Society (NAMS 2013), June 8-12, 2013, Boise, Idaho, USA.
3. X. Liu, P. Yang, M. Gallagher, D. H. Fairbrother, K. L. Chen, “Antimicrobial properties of low-pressure graphene oxide nanocomposite membranes for water purification”, presented in: The 24nd Annual Meeting of the North American Membrane Society (NAMS 2014), May 31-June 4, 2014, Houston, Texas, USA.
4. X. Liu, X. Jin, B. Cao, C. Y. Tang, "Bactericidal activity of silver nanoparticles in environmentally relevant freshwater matrices: Influences of organic matter and chelating agent”, presented in: 247th National Spring Meeting of the American-Chemical-Society (ACS), March 16-20, 2014, Dallas, Texas, USA.
授权专利
1. 包南,马志会,刘鑫 等,三维TiO2纤维非织造布,2008.05.21,中国,ZL1.6
2. 包南,马志会,孟凡琳,刘鑫 等,三维二氧化钛纤维层光催化净水处理装置,2008.05.07,中国,ZL7.5
研究兴趣
1)高分子分离膜的制备与改性
2)新型膜过程表征技术
3)纳米材料在膜制备中的应用
4)用于海水淡化、水处理和膜蒸馏的膜分离过程


发表论著
1. T. A. Trinh, W. Li*, Q. Han, X. Liu, A. G. Fane, J. W. Chew*, Analyzing external and internal membrane fouling by oil emulsions via 3D optical coherence tomography. Journal of Membrane Science 2018, 548, 632-640. (IF=6.578)
2. B. Wu*, T. Christen, H. S. Tan, F. Hochstrasser, S. R. Suwarno, X. Liu, T. H. Chong, M. Burkhardt, W. Pronk*, A. G. Fane, Improved performance of gravity-driven membrane filtration for seawater pretreatment: Implications of membrane module configuration. Water Research 2017, 114, 59-68. (IF=7.051)
3. Q. Han, W. Li*, T. A. Trinh, X. Liu, J. W. Chew*, A network-based approach to interpreting pore blockage and cake filtration during membrane fouling. Journal of Membrane Science 2017, 528, 112-125. (IF=6.578)
4. X. Liu, W. Li*, T. H. Chong*, A. G. Fane, Effects of spacer orientations on the cake formation during membrane fouling: Quantitative analysis based on 3D OCT imaging. Water Research 2017, 110, 1-14. (IF=7.051)
5. W. Li*, X. Liu, Y.-N. Wang, T. H. Chong, C. Y. Tang, A. G. Fane, Analyzing the evolution of membrane fouling via a novel method based on 3D optical coherence tomography imaging. Environmental Science & Technology 2016, 50, (13), 6930-6939. (IF=6.653)
6. M. Mukherjee, N. V. Menon, X. Liu, Y. Kang, B. Cao*, Confocal laser scanning microscopy-Compatible microfluidic membrane flow cell as a nondestructive tool for studying biofouling dynamics on forward osmosis membranes. Environmental Science & Technology Letters 2016, 3, (8), 303-309. (IF=5.869)
7. X. Liu, L. X. Foo, Y. Li, J. Y. Lee, B. Cao, C. Y. Tang*, Fabrication and characterization of nanocomposite pressure retarded osmosis (PRO) membranes with excellent anti-biofouling property and enhanced water permeability. Desalination 2016, 389, 137-148. (IF=6.603)
8. X. Liu, X. Jin, B. Cao, C. Y. Tang*, Bactericidal activity of silver nanoparticles in environmentally relevant freshwater matrices: Influences of organic matter and chelating agent. Journal of Environmental Chemical Engineering 2014, 2, (1), 525-531. (IF=4.010)
9. J.-Y. Lee, S. Qi, X. Liu, Y. Li, F. Huo*, C. Y. Tang*, Synthesis and characterization of silica gel–polyacrylonitrile mixed matrix forward osmosis membranes based on layer-by-layer assembly. Separation and Purification Technology 2014, 124, 207-216. (IF=3.927)
10. J. Nikkola*, X. Liu, Y. Li, M. Raulio, H. L. Alakomi, J. Wei, C. Y. Tang, Surface modification of thin film composite RO membrane for enhanced anti-biofouling performance. Journal of Membrane Science 2013, 444, 192-200. (IF=6.578)
11. S.-L. Loo, A. G. Fane, T.-T. Lim*, W. B. Krantz, Y.-N. Liang, X. Liu, X. Hu*, Superabsorbent cryogels decorated with silver nanoparticles as a novel water technology for point-of-use disinfection. Environmental Science & Technology 2013, 47, (16), 9363-9371. (IF=6.653)
“Best Technology Paper 2013” by Environmental Science & Technology
12. C. K. Ng, K. Sivakumar, X. Liu, M. Madhaiyan, L. Ji, L. Yang, C. Tang, H. Song, S. Kjelleberg, B. Cao*, Influence of outer membrane c-type cytochromes on particle size and activity of extracellular nanoparticles produced by Shewanella oneidensis. Biotechnology and Bioengineering 2013, 110, (7), 1831-1837. (IF=3.952)
13. X. Liu, S. Qi, Y. Li, L. Yang, B. Cao, C. Y. Tang*, Synthesis and characterization of novel antibacterial silver nanocomposite nanofiltration and forward osmosis membranes based on layer-by-layer assembly. Water Research 2013, 47, (9), 3081-3092. (IF=7.051)
14. J. Wei, X. Liu, C. Qiu, R. Wang, C. Y. Tang*, Influence of monomer concentrations on the performance of polyamide-based thin film composite forward osmosis membranes. Journal of Membrane Science 2011, 381, (1–2), 110-117. (IF=6.578)
15. B. Cao, B. Gao*, X. Liu, M. Wang, Z. Yang, Q. Yue, The impact of pH on floc structure characteristic of polyferric chloride in a low DOC and high alkalinity surface water treatment. Water Research 2011, 45, (18), 6181-6188. (IF=7.051)
16. 包南, 张锋, 马志会, 刘鑫, 孙剑, 刘峰. 介孔TiO2纤维的制备及其光催化性能. 化工环保 2007, 27 (3), 204-208. (IF=1.429)
国际会议
1. X. Liu, S. Qi, Y. Li, B. Cao, L. Yang, C. Y. Tang, "Synthesis and characterization of novel anti-biofouling silver nanocomposite forward osmosis membranes", presented in: 1st International Conference on Desalination Using Membrane Technology, April 8-10, 2013, Sitges, Barcelona, Spain.
2. X. Liu, L. X. Foo, S. Qi, Y. Li, J. Y. Lee, B. Cao, C. Y. Tang, "Synthesis and characterization of novel anti-bacterial silver nanocomposite membranes with versatile environmental applications", presented in: The 23rd Annual Meeting of the North American Membrane Society (NAMS 2013), June 8-12, 2013, Boise, Idaho, USA.
3. X. Liu, P. Yang, M. Gallagher, D. H. Fairbrother, K. L. Chen, “Antimicrobial properties of low-pressure graphene oxide nanocomposite membranes for water purification”, presented in: The 24nd Annual Meeting of the North American Membrane Society (NAMS 2014), May 31-June 4, 2014, Houston, Texas, USA.
4. X. Liu, X. Jin, B. Cao, C. Y. Tang, "Bactericidal activity of silver nanoparticles in environmentally relevant freshwater matrices: Influences of organic matter and chelating agent”, presented in: 247th National Spring Meeting of the American-Chemical-Society (ACS), March 16-20, 2014, Dallas, Texas, USA.
授权专利
1. 包南,马志会,刘鑫 等,三维TiO2纤维非织造布,2008.05.21,中国,ZL1.6
2. 包南,马志会,孟凡琳,刘鑫 等,三维二氧化钛纤维层光催化净水处理装置,2008.05.07,中国,ZL7.5






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