男,1979年8月生,博士,二级教授,博士生导师,国家杰出青年科学基金获得者、教育部国家级人才青年学者、国家重点研发计划首席科学家。现任bwin团队建设处处长。
主要从事功能膜材料及其应用技术开发研究,2012年至2013年澳大利亚莫纳什大学访问学者,入选江苏省六大人才高峰、江苏省333人才工程、江苏省青蓝工程、南京市中青年拔尖领军人才等。兼任石油和化工行业气体净化膜及装备工程实验室主任、《Membranes》编委、《Chinese Journal of Chemical Engineering》编委、《Advanced Membrane》编委、《膜科学与技术》编委、中国膜工业协会特种分离膜专业委员会主任、中国膜工业协会疏水膜专业委员会副主任、中国材料学会多孔材料分会副秘书长、中国化工学会过滤与分离专业委员会副主任。
获国家科技进步二等奖(排名第2)、江苏省科学技术一等奖(排名第1)、中国石油和化学工业联合会技术发明一等奖(排名第1)、教育部高等学校技术发明二等奖(排名第1)、2023年度青山科技奖、首届江苏省专利发明人奖、侯德榜化工科学技术创新奖、全国杰出工程师青年奖、中国石油和化学工业联合会青年科技突出贡献奖、中国膜科技中青年突出贡献专家、第十六届江苏省青年科技奖、全国百篇优秀博士论文提名奖等。主持国家重点研发计划项目、国家重点研发计划青年科学家项目、国家自然基金项目、国家科技支撑计划、江苏省杰出青年基金项目、中国-澳大利亚国际合作项目、江苏省支撑计划项目、江苏省自然科学基金等二十多项项目,已发表SCI收录180余篇,主要发表在化工与材料领域权威期刊AIChE J.、Ind. & Eng. Chem. Res.、J. Membr. Sci.、J. Mater. Chem A、ACS Appl. Mater. Inter.等上。申请中国专利40余项,国际PCT 7项,已授权中国专利30余项,国际专利4项。主持编写国家化工行业标准2项。主编气体净化膜专著1部。开发的气体净化膜技术已经在工业烟气处理和家用空气净化领域获得推广应用。
人才培养方面,曾获工大精英九思奖、南京工大集团奖教金、校教书育人竞赛先进个人、校本科毕业论文优秀指导老师(2次)。指导的本科生研究生多次获得南京市科技论坛、江苏省科技创新创业大赛、以及国家节能减排科技大赛的特等奖、二等奖、三等奖等。多名毕业研究生进入世界500强企业,如美国A.O.史密斯、美国通用公司(GE)、美国陶氏化学、法国液空、美国普莱克斯等,或者进入国内外知名高校深造,如澳大利亚莫纳什大学、迪肯大学、麦考瑞大学、新加坡国立大学、上海交通大学、南京大学、东南大学等。
主要研究兴趣:
1) 空气净化膜材料
2) 环境功能纳米材料
3) 空气污染物净化过程
4) 新型水处理膜材料与过程
联系方式:
办公室:尚德楼B2-507
Tel:025-58139648
E-mail:zhongzx@njtech.edu.cn ;njutzzx@163.com
代表性论文:
1) Kai Yuan, Shasha Feng, Feng Zhang, Zhaoxiang Zhong*, Weihong Xing. Steric Configuration - Controllable Carbon Nanotubes-Integrated SiC Membrane for Ultrafine Particles Filtration[J]. Industrial & Engineering Chemistry Research, 2020, 59(44): 19680-19688.
2) Qian Jiang, Jian Zhou, Yu Miao, Surui Yang, Ming Zhou, Zhaoxiang Zhong*, Weihong Xing*. Lower-temperature preparation of SiC ceramic membrane using zeolite residue as sintering aid for oil-in-water separation, Journal of Membrane Science, 2020, 610,118238.
3) Bing Pan, Jiahao Chen, Feng Zhang, Bowen Zhang, Dongyan Li, Zhaoxiang Zhong*, Weihong Xing. Porous TiO2 aerogel-modified SiC ceramic membrane supported MnOx catalyst for simultaneous removal of NO and dust. Journal of Membrane Science, 2020, 611, 118366.
4) Min Hu, Linghui Yin, Huixian Zhou, Lvxiong Wu, Kai Yuan, Bing Pan, Zhaoxiang Zhong*, Weihong Xing, Manganese dioxide-filled hierarchical porous nanofiber membrane for indoor air cleaning at room temperature. Journal of Membrane Science, 2020, 605,118094.
5) Yanqiu Wang, LuChen, Zhenye Xu, Chengjie Yi, Zhaoxiang Zhong*, Shengui Ju, Weihong Xing*. A novel ultralight 3D-Mn(OH)4 porous material for heavy metal ions removal from water. Separation and Purification Technology, 2020, 238:116426.
6) Shasha Feng, Mengdi Zhou, Feng Han, Zhaoxiang Zhong*, Weihong Xing. A bifunctional MnOx@PTFE catalytic membrane for efficient low temperature NOx-SCR and dust removal. Chinese Journal of Chemical Engineering, 2020, 28 (5): 1260-1267.
7) Xiao Zhu, Shasha Feng, Shuaifei Zhao, Feng Zhang, Chong Xu, Min Hu, Zhaoxiang Zhong*, Weihong Xing. Perfluorinated superhydrophobic and oleophobic SiO2@PTFE nanofiber membrane with hierarchical nanostructures for oily fume purification[J]. Journal of Membrane Science, 2020, 594:117473.
8) Min Hu, Linghui Yin, Nicholas Low, Donghuan Ji, Yishui Liu, Jianfeng Yao, Zhaoxiang Zhong*, Weihong Xing. Zeolitic-imidazolate-framework filled hierarchical porous nanofiber membrane for air cleaning. Journal of Membrane Science, 2020, 594,117467.
9) Hao Qiao, Shasha Feng, Ze-xian Low, Jiarui Chen, Feng Zhang, Zhaoxiang Zhong*, Weihong Xing. Al-DTPA microfiber assisted formwork construction technology for high-performance SiC membrane preparation. Journal of Membrane Science, 2020, 594, 117464.
10) Xi Tang, Shuaifei Zhao, Shasha Feng, Zhaoxiang Zhong*, Weihong Xing. Exploring the Key Factors in Dusty Gas Filtration: Experimental and Modeling Studies. Industrial & Engineering Chemistry Research, 2019, 58(42):19633-19641.
11) Qiuyun Zhu, Xi Tang, Shasha Feng, Zhaoxiang Zhong*, Jianfeng Yao, Zhong Yao. ZIF-8@SiO2 composite nanofiber membrane with bioinspired spider weblike structure for efficient air pollution control. Journal of Membrane Science, 2019, 581:252-261.
12) Yanqiu Wang, Lu Chen, Min Chen, Zhaoxiang Zhong*, Qingwei Meng, Weihong Xing*. Ultralight 3D-gamma-MnOOH porous materials fabricated by hydrothermal treatment and freeze-drying. Science China-Materials, 2019, 62(4):527-535.
13) Shasha Feng, Xingya Li, Shuaifei Zhao, Yaoxin Hu, Zhaoxiang Zhong*, Weihong Xing*, Huanting Wang. Multifunctional metal organic framework and carbon nanotube- modified filter for combined ultrafine dust capture and SO2 dynamic adsorption. Environmental Science-Nano, 2018,5(12): 3023-3031.
14) Chong Xu, Jian Fang, Ze-Xian Low, Shasha Feng, Min Hu, Zhaoxiang Zhong*, Weihong Xing Amphiphobic PFTMS@nano-SiO2/ePTFE Membrane for Oil Aerosol Removal. Industrial & Engineering Chemistry Research. 2018, 57(31): 10431-10438.
15) Shasha Feng, Dongyan Li, Ze-xian Low, Zhongyun Liu, Zhaoxiang Zhong*, Yunxia Hu, Yong Wang, Weihong Xing, ALD-seeded hydrothermally-grown Ag/ZnO nanorod PTFE membrane as efficient indoor air filter. Journal of Membrane Science. 2017, 531(1): 86-93.
16) Yang Zhao, Ze-Xian Low, Shasha Feng, Zhaoxiang Zhong*,Yong Wang, Zhong Yao, Multifunctional hybrid porous filters with hierarchical structures for simultaneous removal of indoor VOCs, dusts and microorganisms. Nanoscale. 2017, 9, 5433-5444.
17) Dongyan Li, Jian Hu, Ze-Xian Low, Zhaoxiang Zhong*, Yong Wang. Hydrophilic ePTFE Membranes with Highly Enhanced Water Permeability and Improved Efficiency for Multipollutant Control. Industrial & Engineering Chemistry Research. 2016, 55, 2806-2812.
18) Shasha Feng, Zhaoxiang Zhong*, Feng Zhang, Yong Wang, Weihong Xing*. Amphiphobic Polytetrafluoroethylene Membranes for Efficient Organic Aerosol Removal. ACS Applied Materials & Interfaces, 2016, 8, 8773-8781.
19) Wei Wei, Weiqi Zhang,Qian Jiang,Peng Xu, Zhaoxiang Zhong*, Feng Zhang, Weihong Xing*. Preparation of non-oxide SiC membrane for gas purification by spray coating. Journal of Membrane Science. 2017, 540: 381-390.
20) Bin Chen, Xiaohui Xiong, Zhong Yao, Na Yin, Ze-Xian Low, Zhaoxiang Zhong*. Integrated membrane process for wastewater treatment from production of instant tea powders. Desalination, 2015, 355, 147-154.
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