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通过化学反应和物理涂层对聚丙烯腈膜进行表面改性:静态和孔内流动程序的比较

Surface Modification of Polyacrylonitrile Membrane by Chemical Reaction and Physical Coating: Comparison between Static and Pore-Flowing Procedures.

作者信息

Qin Yang, Yang Hu, Xu Zhenliang, Li Feng

机构信息

Membrane Research Center, Chemical Engineering Research Institute, East China University of Science and Technology, Shanghai 200237, PR China.

出版信息

ACS Omega. 2018 Apr 16;3(4):4231-4241. doi: 10.1021/acsomega.7b02094. eCollection 2018 Apr 30.

Abstract

The influences of static and pore-flowing procedures on the surface modification of a polyacrylonitrile (PAN) ultrafiltration membrane through chemical reaction and physical coating were investigated in detail. For chemical modification by ethanolamine, a membrane modified by the pore-flowing procedure showed a higher flux and different morphology. The reasons were explained by two effects: the pore-flowing resistance to the random thermal motion of PAN at high temperatures and different reaction kinetics related to the reactant concentration profile on the interface between the membrane and reaction solution and the kinetic property of the fluid (driving force and miscibility) and reaction (time and rate). For physical coating modification, a dense and flat layer via a loose and random layer was formed during the pore-flowing process and static process, which changed the flux and antifouling property of the membrane. The membrane prepared by dead-end filtration showed the best trade-off between the flux and antifouling property. Overall, the procedure kinetics plays an important role in the optimization of membrane modification.

摘要

详细研究了静态和孔流过程对通过化学反应和物理涂覆对聚丙烯腈(PAN)超滤膜进行表面改性的影响。对于用乙醇胺进行化学改性,通过孔流过程改性的膜表现出更高的通量和不同的形态。原因通过两种效应来解释:高温下孔流对PAN无规热运动的阻力,以及与膜和反应溶液界面处反应物浓度分布相关的不同反应动力学,以及流体的动力学性质(驱动力和混溶性)和反应(时间和速率)。对于物理涂覆改性,在孔流过程和静态过程中,通过松散且无规的层形成了致密且平整的层,这改变了膜的通量和抗污染性能。通过死端过滤制备的膜在通量和抗污染性能之间表现出最佳的平衡。总体而言,过程动力学在膜改性的优化中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a1c/6641343/2a289d027fff/ao-2017-02094c_0001.jpg

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