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郑煜铭 研究员

中国科学院

中科院城市环境研究所、博士研究生导师

个人履历

  郑煜铭,博士,研究员,博士研究生导师,厦门市“双百计划”海外高层次创新人才入选者。

       本科就读于中国科学技术大学,2001年获应用化学学士学位;同年,取得免试硕博连读资格,在环境工程科学实验室俞汉青教授指导下进行博士研究生课题研究;2006年,获得环境工程工学博士学位。2006年9月至2012年3月,先后作为Research Fellow和Senior Research Fellow在新加坡国立大学(National University of Singapore)工程学院环境科学与工程系、市政与环境工程系从事科研工作。2012年,加入中国科学院城市环境研究,任研究员和博士生导师。

  研究组工作围绕“分离功能材料与污染控制技术”展开,主要涉及静电纺丝纳米纤维功能膜材料的制备与应用开发、高效吸附分离功能材料的开发,以及高级氧化技术、船舶尾气与压载水处理技术、电化学絮凝等。

  目前,研究组建有应用基础和产业化研发实验室1000多平方米,已成功研发年产能100万平方米纳米纤维膜的量化生产线,所制备的纳米纤维膜主要应用于空气细颗粒物的去除和水体微污染物的分离。在国外SCI源刊物上发表论文30多篇,申请发明专利十余项,6项获得授权。

研究方向

                                           膜分离材料与技术、高效吸附材料与技术、高级氧化技术、电化学水处理技术、污染物快速检测等                                        

研究成果

  1. Lu-Bin Zhong, Jun Yin, Yu-Ming Zheng*, Qing Liu, Xiao-Xia Cheng, and Fang-Hong Luo,Self-Assembly of Au Nanoparticles on PMMA Template as Flexible, Transparent, and Highly Active SERS Substrates, Analytical Chemistry, 2014, 86, 6262-6267. (IF: 5.825)

  2. Ling-Li Min, Zhi-Hua Yuan, Lu-Bin Zhong, Qing Liu1, Ren-Xiang Wu, Yu-Ming Zheng*, Preparation of chitosan based electrospun nanofiber membrane and its adsorptive removal of arsenate from aqueous solution,Chemical Engineering Journal, DOI:10.1016/j.cej.2014.12.024. (IF:4.058)

  3. Zheng, Y.M., Yu, L., Wu, D., Chen, J.P. Removal of arsenite from aqueous solution by a zirconia nanoparticle, Chemical Engineering Journal, 2012, 188, 15-22. (IF:4.058)

  4. Zheng, Y.M., Zou, S.W., Nanayakkara, K.G.N.,Matsuura, T., Chen, J.P. Adsorptive removal of arsenic from aqueous solution by a PVDF/Zirconia blend flat sheet membrane, Journal of Membrane Science, 2011, 374, 1-11. (IF:4.908)

  5. Qing Liu, Yu-Ming Zheng*, Lu-Bin Zhong, Xiao-Xia Cheng, Removal of tetracycline from aqueous solution by a Fe3O4 incorporated PAN electrospun nanofiber mat, Journal of Environmental Science, DOI: 10.1016/j.jes.2014.04.016. (IF:1.922)

  6. Nanayakkara, K.G.N.,Alam, A.K.M.K.,Zheng*, Y.M.,Chen, J.P. A low-energy intensive electrochemical system for the eradication of Escherichia coli from ballast water: Process development, disinfection chemistry, and kinetics modeling, Marine Pollution Bulletin, 2012, 64, 1238-1245. (IF:2.793)

  7. Zheng, Y.M., Yu, L., Chen, J.P. Removal of methylated arsenic using a nanostructured zirconia-based sorbent: Process performance and adsorption chemistry, Journal of Colloid and Interface Science, 2012, 367, 362-369. (IF:3.552)

  8. Zheng, Y.M., Yunus, R., Nanayakkara, N.K.G., Chen, J.P. Electrochemical decoloration of synthetic wastewater containing Rhodamine 6G: behaviors and mechanism, Industrial & Engineering Chemistry Research, 2012, 51, 5953-5960. (IF:2.235)

  9. Zheng, Y.M., Liu, T.; Jiang, J.W., Yang, L., Fan, Y.P., Wei, A.T.S., Chen, J.P. Characterization of hexavalent chromium interaction with Sargassum by X-ray absorption fine structure spectroscopy, X-ray photoelectron spectroscopy and quantum chemistry calculation, Journal of Colloid and Interface Science, 2011, 356, 741-748. (IF:3.552)

  10. Zheng, Y.M., Lim, S.F., and Chen, J.P. Preparation and characterization of zirconium based magnetic sorbent for arsenate removal, Journal of Colloid and Interface Science, 2009, 338(1), 22-29. (IF:3.552)

  11. Yunus, R., Zheng*, Y.M., Nanayakkara, N.K.G., Chen*, J.P. Electrochemical Removal of Rhodamine 6G by Using RuO2 Coated Ti DSA, Industrial & Engineering Chemistry Research, 2009, 16, 7466-7473. (IF:2.235)

  12. Zheng, Y.M., Yu, H.Q. Determination of the pore size distribution and porosity of aerobic granules using size-exclusion chromatography, Water Research, 2007, 41: 39-46. (IF:5.323)

  13. Zheng, Y.M., Yu, H.Q., Liu, S.J., Liu, X.Z. Formation and instability of aerobic granules under high organic loading conditions, Chemosphere, 2006, 63(10): 1791-1800. (IF:3.499)

  14. Zheng, Y.M., Yu, H.Q., Sheng, G.P. Physical and chemical characteristics of granular activated sludge from a sequencing batch airlift reactor, Process Biochemistry, 2005, 40(2): 645-650. (IF:2.524)

  15. Wei, Y.T., Zheng, Y.M., Chen, J.P. Functionalization of regenerated cellulose membrane via surface initiated atom transfer radical polymerization for boron removal from aqueous solution, Langmuir, 2011, 27, 6018-6025. (IF:4.384)

  16. Wei, Y.T., Zheng, Y.M., Chen, J.P. Design and fabrication of an innovative and environmental friendly adsorbent for boron removal, Water Research, 2011, 45(6), 2297-2305. (IF:5.323)

  17. Liu, H.J., Yang, F., Zheng, Y.M., Kang, J., Qu, J.H. and Chen, J.P. Improvement of metal adsorption onto chitosan/Sargassum sp. composite sorbent by an innovative ion-imprint technology, Water Research, 2011, 45(1): 145-154. (IF:5.323)

  18. Lim, S.F., Zheng, Y.M., Zou, S.W.; Chen, J.P. Characterization of copper adsorption onto an alginate encapsulated magnetic sorbent by a combined FT-IR, XPS, and mathematical modeling study, Environmental Science & Technology, 2008, 42, 2551-2556. (IF:5.481)

热门排行
1
采用电纺丝法制备了前驱体纳米纤维膜,固化的纳米纤维均匀分布。在随后的热解过程中,PVP被碳化成相互连接的3D碳骨架,纳米纤维形态得到了很好的保存。

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