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Aminated poly(vinyl chloride) solid state adsorbents with hydrophobic function for post-combustion CO2 capture

机译:具有疏水功能的胺化聚(氯乙烯)固态吸附剂,用于燃烧后CO2捕获

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摘要

In this paper, we show a novel sustainable route for the production of sorption materials for carbon capture technologies by utilizing a general plastic waste. By supporting aminated poly(vinyl chloride) on mesoporous silicas, a family of polymer / silica composites was synthesized, characterised and tested gravimetrically for adsorption of CO2 from the 1:1 v/v CO2 -N2 mixture. The composites show good adsorption capacity for CO2 peaking at 12 cm2 g-1 for ethylenediamine-treated PVC products on SBA-15 support. The adsorption efficiency (CO2 :N ratio) is comparable to those observed for other nanoporous materials, such as amine-grafted mesoporous silicas. Ethylenediamine was found to be the best aminating reagent for PVC as the composite prepared from EDA-PVC gave the highest CO2 adsorption efficiency. Moreover, contact angle measurements suggested a significant improvement in hydrophobicity of the selected composites when they were compared with the unfuctionalized silica supports. This very useful development could make the composites suitable for applications in elevated moisture content environments found in flue vapours of gas-fired power plants.
机译:在本文中,我们展示了一种利用普通塑料废料生产用于碳捕集技术的吸附材料的新型可持续途径。通过在中孔二氧化硅上负载胺化聚氯乙烯,合成了一系列聚合物/二氧化硅复合材料,进行了表征和重量分析,测试了1:1 v / v CO2 -N2混合物对CO2的吸附。对于SBA-15载体上的乙二胺处理的PVC产品,该复合材料表现出良好的CO2吸附能力(峰值为12 cm2 g-1)。吸附效率(CO2:N比)与其他纳米多孔材料(如胺接枝的介孔二氧化硅)所观察到的相当。乙二胺是用于PVC的最佳胺化试剂,因为用EDA-PVC制备的复合材料具有最高的CO2吸附效率。此外,接触角测量表明,与未功能化的二氧化硅载体相比,所选复合材料的疏水性有了显着改善。这一非常有用的发展可能使复合材料适用于燃气发电厂烟道气中水分含量较高的环境中的应用。

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