Suppr超能文献

基于生物的纳米复合 TFC 中空纤维膜的制备和评估用于增强 CO2 捕获。

Fabrication and Evaluation of Bio-Based Nanocomposite TFC Hollow Fiber Membranes for Enhanced CO Capture.

机构信息

Department of Chemical Engineering , Norwegian University of Science and Technology , Trondheim 7491 , Norway.

出版信息

ACS Appl Mater Interfaces. 2019 Mar 20;11(11):10874-10882. doi: 10.1021/acsami.8b19651. Epub 2019 Mar 6.

Abstract

Nanocellulose is a promising and sustainable biobased nanomaterial because of its excellent mechanical properties, biocompatibility, natural abundance, and especially its high aspect ratio. Interest in applying nanocellulose as nanofillers in membrane fabrication has been growing rapidly in recent years. In the present work, nanocellulose crystals (CNCs) and nanocellulose fibers (CNFs) were incorporated into polyvinyl alcohol (PVA) to prepare evenly dispersed nanocomposites. The resultant nanocomposite materials containing up to 80 wt % of nanocellulose were coated as defect-free, thin-film-composite selective layers onto hollow fiber membrane substrates via dip-coating for efficient CO capture. Thermogravimetric analysis, Fourier-transform infrared, X-ray diffraction, scanning transmission electron microscopy, scanning electron microscopy, and humid mixed gas permeation test were used to evaluate the nanocomposite materials and the membranes. The resultant PVA/CNC nanocomposite membranes exhibit both higher CO permeance and CO/N selectivity compared to the PVA/CNF membranes and neat PVA membranes. The addition of CNCs showed more positive effects on the CO permeation compared to CNFs. Under optimized conditions, CO permeance of 672 GPU with a CO/N selectivity of 43.6 was obtained with a PVA/CNC membrane. Excellent long-term stability of the membrane was also documented within a period of up to 1 year. The interface between the polymer phase and charged CNFs is believed to form fast gas transport channels at the humid state and thus enhances CO permeation.

摘要

纳米纤维素是一种很有前途的可持续生物基纳米材料,因为它具有优异的机械性能、生物相容性、丰富的天然资源,尤其是其高纵横比。近年来,人们对将纳米纤维素作为纳米填料应用于膜制备越来越感兴趣。在本工作中,纳米纤维素晶体(CNC)和纳米纤维素纤维(CNF)被掺入到聚乙烯醇(PVA)中,以制备均匀分散的纳米复合材料。将高达 80wt%的纳米纤维素的所得纳米复合材料通过浸涂涂覆到中空纤维膜基底上,形成无缺陷的、薄膜复合选择性层,用于高效 CO 捕集。热重分析、傅里叶变换红外光谱、X 射线衍射、扫描透射电子显微镜、扫描电子显微镜和湿混合气体渗透测试用于评估纳米复合材料和膜。与 PVA/CNF 膜和纯 PVA 膜相比,所得的 PVA/CNC 纳米复合材料膜表现出更高的 CO 渗透性和 CO/N 选择性。与 CNF 相比,CNC 的添加对 CO 渗透具有更积极的影响。在优化条件下,PVA/CNC 膜的 CO 渗透速率为 672GPU,CO/N 选择性为 43.6。该膜还具有长达 1 年的优异长期稳定性。聚合物相与带电 CNF 之间的界面在潮湿状态下形成快速气体传输通道,从而提高了 CO 的渗透性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验