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首页> 外文期刊>Journal of Colloid and Interface Science >Synthesis of porous polymer based solid amine adsorbent: Effect of pore size and amine loading on CO2 adsorption
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Synthesis of porous polymer based solid amine adsorbent: Effect of pore size and amine loading on CO2 adsorption

机译:基于多孔聚合物的固体胺吸附剂的合成:孔径和胺负载对CO 2 吸附

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摘要

Graphical abstract Display Omitted Abstract A series of porous polymers was synthesized by a suspension polymerization of divinylbenzene (DVB) and ethylene glycol dimethyl acrylate (EGDMA), which was further functionalized with polyethyleneimine (PEI) for CO2 capture. The results showed that the synthesized DVB and EGDMA (DE) copolymers were an effective support for loading PEI because of its larger pore size and specific surfaces area. It was found that DE (30, 10) loaded with 30wt% PEI exhibited a higher CO2 adsorption amount of 3.28mmol/g at 25°C under dry condition. The CO2 adsorption capacity would decline gradually as the temperature continuously raised, for the reaction between CO2 and amine groups was an exothermic reaction. The kinetics study showed that Avrami kinetic model could accurately describe the whole CO2 adsorption process, suggesting that both physical adsorption and chemical adsorption were involved with the CO2 adsorption process. The intraparticle diffusion and Boyd’s film diffusion models were applied to investigate the CO2 diffusion mechanism, the intraparticle diffusion model could well distinguish the rate-limiting step during CO2 adsorption process. This solid amine adsorbent could be regenerated with nitrogen stream at 75°C, and it kept stable CO2 adsorption capacity after eight adsorption-desorption cycles. All these features indicated that this porous polymer based adsorbent has a high potential for CO2 capture and separation from flue gas. ]]>
机译:<![cdata [ 图形摘要 显示省略 抽象 通过二乙烯基苯(DVB)和乙烯的悬浮聚合合成一系列多孔聚合物丙二醇二甲酯(EGDMA),其用聚乙烯亚胺(PEI)用于CO 2 捕获。结果表明,由于其孔径较大和特异性表面区域,合成的DVB和EGDMA(DE)共聚物是对装载PEI的有效载体。发现DE(30,10)加载30 WT%PEI表现出更高的CO 2 吸附量3.28 Mmol / g在25 在干燥条件下。 CO 2 吸附容量随着温度连续提高的温度逐渐下降,对于CO 2 和胺基是一种放热反应。动力学研究表明,AVRAMI动力学模型可以准确地描述整个CO 2 吸附过程,表明物理吸附和化学吸附均涉及CO 2 吸附过程。应用粒地区扩散和Boyd的薄膜扩散模型研究CO 2 扩散机构,粒前扩散模型可以很好地区分CO 2 吸附过程。该固体胺吸附剂可以在75 ℃下用氮气进行再生,并且它保持稳定的CO 2 吸附容量在八个吸附 - 解吸周期之后。所有这些特征表明,该多孔聚合物基吸附剂具有CO 2> 2的高潜力,从烟气中捕获和分离。 ]]>

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