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用于碳捕获应用的精氨酸/纳米纤维素膜

Arginine/Nanocellulose Membranes for Carbon Capture Applications.

作者信息

Venturi Davide, Chrysanthou Alexander, Dhuiège Benjamin, Missoum Karim, Giacinti Baschetti Marco

机构信息

Department of Civil, Chemical, Environmental and Material Engineering (DICAM), Alma Mater Studiorum, University of Bologna, Via Terracini, 28, 40131 Bologna, Italy.

INOFIB, Rue de la papeterie, 461, 38402 St-Martin-d'Hères CEDEX, France.

出版信息

Nanomaterials (Basel). 2019 Jun 10;9(6):877. doi: 10.3390/nano9060877.

Abstract

The present study investigates the influence of the addition of l-arginine to a matrix of carboxymethylated nanofibrillated cellulose (CMC-NFC), with the aim of fabricating a mobile carrier facilitated transport membrane for the separation of CO. Self-standing films were prepared by casting an aqueous suspension containing different amounts of amino acid (15-30-45 wt.%) and CMC-NFC. The permeation properties were assessed in humid conditions (70-98% relative humidity (RH)) at 35 °C for CO and N separately and compared with that of the non-loaded nanocellulose films. Both permeability and ideal selectivity appeared to be improved by the addition of l-arginine, especially when high amino-acid loadings were considered. A seven-fold increment in carbon dioxide permeability was observed between pure CMC-NFC and the 45 wt.% blend (from 29 to 220 Barrer at 94% RH), also paired to a significant increase of ideal selectivity (from 56 to 185). Interestingly, while improving the separation performance, water sorption was not substantially affected by the addition of amino acid, thus confirming that the increased permeability was not related simply to membrane swelling. Overall, the addition of aminated mobile carriers appeared to provide enhanced performances, advancing the state of the art for nanocellulose-based gas separation membranes.

摘要

本研究考察了在羧甲基化纳米原纤化纤维素(CMC-NFC)基质中添加L-精氨酸的影响,目的是制备一种用于分离一氧化碳的移动载体促进传输膜。通过浇铸含有不同量氨基酸(15%-30%-45%重量)和CMC-NFC的水悬浮液来制备自立膜。在35℃的潮湿条件下(相对湿度70%-98%(RH))分别评估了CO和N2的渗透性能,并与未负载的纳米纤维素膜进行了比较。添加L-精氨酸似乎提高了渗透率和理想选择性,尤其是在考虑高氨基酸负载量时。在纯CMC-NFC和45%重量的混合物之间观察到二氧化碳渗透率增加了七倍(在94%RH下从29增加到220巴耳),同时理想选择性也显著增加(从56增加到185)。有趣的是,在提高分离性能的同时,添加氨基酸对水吸附没有实质性影响,因此证实渗透率的增加不仅仅与膜膨胀有关。总体而言,添加胺化移动载体似乎提供了增强的性能,推动了基于纳米纤维素的气体分离膜的技术发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f221/6630413/6d4f6378cb6e/nanomaterials-09-00877-g001.jpg

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