黄庆林 教授 博士 天津市 研究领域: 精细化工 研究方向: 中空纤维膜、静电纺丝纤维膜与膜蒸馏、膜催化研究。 所在单位: 天津工业大学

基本信息

所在单位:
天津工业大学
机构细分:
材料科学与工程学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
专家介绍:
黄庆林,男,教授/博士生导师,美国康涅狄格大学(University of Connecticut,UConn)访问学者。获中国科协“青年人才托举工程”项目连续三年资助(2016-2018,YESS20160168),天津市创新人才推进计划(青年科技优秀人才),天津市特聘教授青年学者。2019年中国纺织青年科技奖,2024年纺织产业创新奖。2012年至今受聘于天津工业大学材料科学与工程学院从事科研、教学工作。从事聚合物纤维膜材料的成形机理、制备技术及产品开发研究,侧重膜材料基础研究与产业化开发的衔接转化。研究方向:面向电子器件、新能源、半导体过滤、植入型医用材料等领域的PTFE、PI等高性能纳米纤维膜的产品开发及产业化应用。主持国家国家级、省部级及企业委托项目20余项,在Journal of Materials Chemistry, Journal of Membrane Science, Desalination等膜领域Top期刊发表学术论文50余篇,申请中国发明专利10余项。
专家荣誉:
[1] 黄庆林,中国科协青年人才托举工程(2016-2018),中国科学技术协会,2016
[2] 2024纺织产业创新奖,中国纺织工程学会,2024.10
[3] 第22届天津青年五四奖章,共青团天津市委员会,2023.05
[4] 黄庆林,2019年天津市特聘教授青年学者
[5] 黄庆林,2019中国纺织青年科技奖
[6] 同质增强型中空纤维膜制备关键技术及其产业化应用,天津市科学技术委员会,天津市技术发明一等奖,排名3,2018

科研能力

研究领域:
精细化工
研究方向:
中空纤维膜、静电纺丝纤维膜与膜蒸馏、膜催化研究。
论文著作:
2025年
[1] Shichao Qiu, Xinghe Teng, Yuxin Zhang, Xin Wang, Kaikai Chen*, Jian Zhao, Qinglin Huang*, Kaikai Chen, Wearing comfortable and high electrical output TENGs woven with PTFE core–shell nanofiber yarns, Chemical Engineering Journal, 2025, 505, 159501 (IF2023=13.4, 1区)
[2] Fuxin Qiu, Fan Liu, Rui Tian, Xutong Han,*, Kaikai Chen, Qinglin Huang*,Constructing a dual-layer PTFE nanofiltration membrane for enhanced salt solution permeability, Desalination, 2025, 601, 118552 (IF2023=8.6, 1区)
[3] Xiongfei Du, Yumin Sun, Yuxin Zhang, Pu Zhang, Mingxing Chen, Qinglin Huang*, Designing PMIA/MOF nanofiber membranes for heat-resistant nanofiltration and its application in dye/salt separation, Separation and Purification Technology, 2025,354,129494 (IF2023=8.6, 1区)
[4] Yongyan Deng, Fuxin Qiu, Jiaxing Wu, Jialu Li, Ziyi Li, Qinglin Huang,* Guangshan Zhu,* Xiaoqin Zou*, Flexible ZSM-5 Zeolite Membrane for High-Performance Helium Separation, Angew. Chem. Int. Ed. 2024, e202421285 (IF2023=16.1, 1区)
[5] Rui Tian1, Xiongfei Du1, Qiang Guo, Yang Li, Pu Zhang, Kaikai Chen,Xiaolei Li, Qinglin Huang*, A simple and efficient approach for pore structure optimization and hydrophilic modification of PTFE nanofiber membrane, Separation and Purification Technology, 2025,354,129494 (IF2023=8.6, 1区)
2024年
[6] Hao Cui, Wei Zhao, Hailiang Liu*, Yumin Sun, Huanyi Xiong, Qinglin Huang*, Kaikai Chen, Multidimensional nanochannel design and regulation of ultra-thin GOQDs-AGQDs composite membranes, Chemical Engineering Journal, 2024, 490, 151880 (IF2023=13.4, 1区)
[7] Yuxin Zhang, Xiongfei Du, Jiawei Huangfu, Kaikai Chen, Xutong Han, Changfa Xiao, Qinglin Huang*, Self-cleaning PTFE nanofiber membrane for long-term passive daytime radiative cooling, Chemical Engineering Journal, 2024, 490, 151831 (IF2023=13.4, 1区)
[8] Fuxin Qiu, Yumin Sun, Yuxin Zhang, Hailiang Liu*, Lu Shao, Qinglin Huang*, Electrospun PTFE nanofibrous composite membranes featuring a fiber network structure for organic solvent nanofiltration (OSN), Separation and Purification Technology, 2024,330,125416 (IF2023=8.6, 1区)
[9] Hongwei Piao, Jian Zhao*, Yifei Tang, Run Zhang, Shujie Zhang, Qinglin Huang*, Shiwei Zuo, Yong Liu, Changfa Xiao, Shaomin Liu*, On-demand switchable superamphiphilic nanofiber membrane reinforced by PET braided tube for efficient wastewater purification and photocatalytic regeneration, Applied Catalysis B: Environmental, 2024,341, 123300. (IF2023=22.1, 1区)
2023年
[10] Kaixuan Sun, Yifei Tang, Yan Huang, Yuchao Zhao, Xingming Jie, Yabin Zhang*,Qinglin Huang*, Fabrication of hydrophobic PI nanofibrous membrane with controllable pore structures, Journal of Environmental Chemical Engineering, 2023, 11, 111197 (IF2022=7.968, 2区)
[11] Yuxin Zhang, Jun Wu, Jinxue Cheng, Yuchao Zhao, Yan Huang*, Qinglin Huang* , A simple and effective approach to regulate and control pore structure of electrospun PTFE nanofiber membrane, Separation and Purification Technology, 2023,326,124848 (IF2023=8.6, 1区)
[12] Yifei Tang, Kaixuan Sun, Xiongfei Du, Jian Zhao, Hanli Wang*, Qinglin Huang*, Superhydrophobic electrospun FPI/PTFE nanofiber membranes for robust vacuum membrane distillation, Separation and Purification Technology, 2023, 326, 124856 (IF2023=8.6, 1区)
[13] Zhiwei Du, Jinxue Cheng, Qinglin Huang*, Mingxing Chen*, Changfa Xiao,Electrospinning organic solvent resistant preoxidized poly(acrylonitrile) nanofiber membrane and its properties, Chinese Journal of Chemical Engineering, 2023,53,289-299. (IF2022=3.898, 2区)
[14] Yan Huang* , Qiang Guo, Yuxin Zhang, Fuxin Qiu, Xuancheng Zhang, Guanghui Wang, Jian Zhao, Qinglin Huang**, Changfa Xiao, Design and construction of PTFE porous membranes with high modulus and structural stability via in-situ interlocking and anchoring strategy, Composites Communications, 2023, 40, 01632 (IF2022=7.568, 2区)
[15] Yan Huang, Mengdi Xu, Qiang Guo , Wenqi Xie, Jingcheng Shu, Xiongfei Du, Fuxin Qiu, Siqi Huang, Qinglin Huang*, A robust and environmental-friendly strategy for preparation of PTFE membranes with high separation accuracy and sequential separation performance, Journal of Environmental Chemical Engineering, 2023, 11, 110310 (IF2022=7.968, 2区)
2022年
[16] Qiang Guo, Yan Huang*, Mengdi Xu, Qinglin Huang*, Jinxue Cheng, Shiwen Yu, Yuxin Zhang, Changfa Xiao, PTFE porous membrane technology: A comprehensive review, Journal of Membrane Science, 2022,664:121115 (IF2021=10.53, 1区) WOS:000788512700002
[17] Hongwei Piao, Jian Zhao*, Mingyi Liu , Shujie Zhang, Qinglin Huang*, Yong Liu, Changfa Xiao, Ultra-low power light driven lycopodium-like nanofiber membrane reinforced by PET braid tube with robust pollutants removal and regeneration capacity based on photo-Fenton catalysis, Chemical Engineering Journal, 2022, 450 , 138204 (IF2021=16.744, 1区) 000833931000001
[18] Ma, Wenyi; Ren, Wanzheng; Bai, Xiaoyu; Pan, Jian*; Huang, Lilan ; Huang, Qinglin*; Guo, Zengge; Wang, Xinyan,Facile fabrication of PVDF-CTFE microporous membranes with optimized surface and sublayer structure via non-solvent induced phase separation,Journal of Water Process Engineering,2022,45,102504 (IF2021:5.485,二区)
[19] Jian Zhao,Shengnan Tian,Qinglin Huang*,Linpeng Fan,Changfa Xiao,Ultra-highly photocatalytic removal of pollutants by polypyrrole/cadmium sulfide/polyether sulfone hybrid porous membrane in single-pass mode,Chemical Engineering Journal,2022, 432,134300 (IF2021=16.744, 1区) WOS:000773072700001
[20] Du, Xiongfei; Zheng, Hanwen; Zhang, Yuxin; Zhao, Naijia; Chen, Mingxing; Huang, Qinglin, Pore structure design and optimization of electrospun PMIA nanofiber membrane, Journal of the Taiwan Institute of Chemical Engineers, 2022, 139:104512 (IF2021=5.477, 2区) 000862896400001
[21] Jinxue Cheng, Naijia Zhao, Yan Huang, Changfa Xiao, Xiao Ma, Qinglin Huang*,Effect of parameters on ME process by near-field electrospun PTFE membrane, Journal of the Taiwan Institute of Chemical Engineers, 2022, 131:104181 (IF2021=5.477, 2区) WOS:000754232500009
[22] Jinxue Cheng, Naijia Zhao, Yuxin Zhang, Yan Huang, Qinglin Huang*, Changfa Xiao,Facile preparation of PMMA@PLA core-shell microspheres by PTFE membrane emulsification, Journal of Membrane Science, 2022, 644:120178 (IF2021=10.53, 1区) WOS:000788512700002
[23] Mengdi Xu, Jinxue Cheng, Xiongfei Du, Qiang Guo, Yan Huang*, Qinglin Huang*, Amphiphobic electrospun PTFE nanofibrous membranes for robust membrane distillation process, Journal of Membrane Science, 2022, 641:119876 (IF2021=10.53, 1区) WOS:000706894200005
发明专利:
[1] 一种导电聚四氟乙烯多孔膜的制备方法,中国发明专利,专利号ZL202110526331.9
[2] 一种静电直写规整孔结构全氟聚合物多孔膜的制备方法,中国专利,专利号ZL202010444033.0
[3] 一种膜乳化系统,中国专利, 专利号:ZL201911001200.8
[4] 一种连续油水分离中空纤维膜的制备方法,中国专利, 专利号:ZL201810713774.7
[5] 一种全氟聚合物中空纤维复合膜的制备方法中国专利, 专利号:ZL201710727982.8
[6] 一种静电纺丝中空纤维膜的制备方法,中国发明专利,专利号:ZL 201710727985.1.
[7] 一种纳米纤维光致热膜的制备方法,中国发明专利,专利号:ZL 201810713771.3.
[8] 一种持续超疏水中空纤维膜及其制备方法. 中国发明专利,专利号:ZL201410029856.1.
[9] 聚四氟乙烯电催化多孔膜及其制备方法,中国发明专利,专利号:ZL201610141239.X
科研项目:
[1] 医用可吸收片技术开发,企业横向项目,主持;
[2] 特种薄膜材料技术开发,横向项目,主持;
[3] 气凝胶应用技术开发,横向项目,主持;
[4] PTFE覆膜材料技术开发,横向项目,主持;
[5] 医用PVDF多孔膜开发,横向项目,主持;
[6] 医用纳米纤维膜材料技术开发,横向项目,主持;
[7] 新型纳米纤维电池隔膜技术开发,横向项目,主持;
[8] 静电纺防水透气膜研发,横向项目,主持;
[9] PVDF转印膜技术开发,横向项目,主持;
[10] PVDF多孔膜材料开发,横向项目,主持;
[11] 纳米纤维声学膜研究,横向项目,主持;
[12] PTFE纳米纤维膜研究,横向项目,主持;
[13] 一种多孔膜研究,横向项目,主持;
[14] 一种纳米纤维膜研究,横向项目,主持;

项目合作

合作意向:
技术咨询
在线客服 在线留言 小程序 公众号 4001789689 <<显示