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多孔炭黑-聚合物复合材料用于挥发性有机化合物的吸附和高效微波辅助解吸。

Porous carbon black-polymer composites for volatile organic compound adsorption and efficient microwave-assisted desorption.

机构信息

University of Alberta, Department of Civil and Environmental Engineering, Edmonton, AB T6G 1H9, Canada.

University of Alberta, Department of Civil and Environmental Engineering, Edmonton, AB T6G 1H9, Canada.

出版信息

J Colloid Interface Sci. 2022 Apr 15;612:181-193. doi: 10.1016/j.jcis.2021.12.097. Epub 2021 Dec 18.

DOI:10.1016/j.jcis.2021.12.097
PMID:34992018
Abstract

Adsorbents with high surface area, thermal stability and microwave absorption ability are highly desired for cyclic adsorption and microwave regeneration processes. However, most polymeric adsorbents are transparent to microwaves. Herein, porous hyper-crosslinked polymers (HCP) of (4,4'-bis((chloromethyl)-1,1'-biphenyl-benzyl chloride)) with different carbon black (CB) contents were synthesized via the Friedel-Crafts reaction. CB was selected as the filler due to its low cost and high dielectric loss and was embedded inside the polymer structure during polymerization. CB-containing composites showed enhanced thermal stability at elevated temperatures, and more than a 90-times increase in the dielectric loss factor, which is favorable for microwave regeneration. Nitrogen physisorption analysis by the Bruner-Emmett-Teller isotherms demonstrated that CB presence in the polymer structure nonlinearly decreases the surface area and total pore volume (by 38% and 26%, respectively at the highest CB load). Based on the characterization testing, 4 wt% of CB was found to be an optimum filler content, having the highest MW absorption and minimal effect on the adsorbent porosity. HCP with 4 wt% CB allowed a substantial increase in the desorption temperature and yielded more than a 450% enhancement in the desorption efficiency compared to HCP without CB.

摘要

具有高比表面积、热稳定性和微波吸收能力的吸附剂对于循环吸附和微波再生过程非常理想。然而,大多数聚合物吸附剂对微波是透明的。本文通过傅克反应合成了具有不同炭黑(CB)含量的(4,4'-双((氯甲基)-1,1'-联苯-苄基氯))多孔超交联聚合物(HCP)。选择 CB 作为填充剂,因为其成本低且介电损耗高,并在聚合过程中嵌入聚合物结构中。含 CB 的复合材料在高温下表现出增强的热稳定性,介电损耗因子增加了 90 多倍,有利于微波再生。通过 Bruner-Emmett-Teller 等温线进行的氮气物理吸附分析表明,CB 在聚合物结构中的存在会使表面积和总孔体积呈非线性降低(在最高 CB 负载下分别降低 38%和 26%)。基于表征测试,发现 4wt%的 CB 是最佳的填充剂含量,具有最高的 MW 吸收能力,对吸附剂孔隙率的影响最小。与不含 CB 的 HCP 相比,添加 4wt%CB 的 HCP 允许解吸温度显著提高,并使解吸效率提高了 450%以上。

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