首页> 外文会议>Trondheim Conference on CO2 Capture, Transport and Storage >Effect of the presence of water-soluble amines on the carbon dioxide (CO2) adsorption capacity of amine-grafted poly- succinimide (PSI) adsorbent during CO2 capture
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Effect of the presence of water-soluble amines on the carbon dioxide (CO2) adsorption capacity of amine-grafted poly- succinimide (PSI) adsorbent during CO2 capture

机译:水溶性胺对二氧化碳捕获期间胺接枝多琥珀酰亚胺(PSI)吸附剂的二氧化碳(CO2)吸附能力的影响

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Global climate change is among the major challenges the world is facing today, and can be attributed to enhanced concentrations of Greenhouse Gases (GHG), such as carbon dioxide (CO2), in the atmosphere. Therefore, there is an urgent need to mitigate CO2 emissions, and carbon capture and storage (CCS) is amongst the possible options to reduce CO2 emission. Against this background, this work investigated the synthesis and performance evaluation of a new material for CO2 capture. In particular, the effect of the presence of water-soluble amines in the amine-grafted poly-succinimide (PSI) (referred to as Polyaspartamide (PAA) adsorbent), was investigated. Methyl Amine (MA) and Mono-Ethanol Amine (MEA) were employed as water-soluble amines and the effect of changes in their concentration on CO2 adsorption capacity was investigated as well. Water-soluble amines were incorporated to allow water solubility of the adsorbent paving way for freeze-drying to improve the geometric structure (surface area, pore volume and pore size) of the adsorbent. The water-soluble amines were grafted to an already Ethylenediamine (EDA) grafted PSI (PSI-EDA), with the EDA added to improve the chemical surface of the adsorbent for CO2 capture. The NMR analysis confirmed the presence of MA and MEA amine groups in the PAA, thereby indicating the presence of the grafted amines on the backbone polymer. An increase in adsorption capacity with an increase in MA and MEA concentrations in MA-PAA and MEA-PAA samples was observed. At low amine concentrations (20% amine and 80% EDA grafted), MEA-PAA was observed to exhibit higher adsorption capacity compared to the MA-PAA samples. At high amine (100% amine grafted) concentrations, MA-PAA samples displayed higher adsorption capacity. Three runs were performed on each sample and the results obtained were reproducible. The best adsorption capacity obtained was 44.2 g CO2/kg Ads. However, the operating conditions during the CO2 adsorption should be optimized for enhanced CO2 adsorption capacity.
机译:全球气候变化是世界今天面临的主要挑战之一,可归因于在大气中加强温室气体(GHG)的浓度(如二氧化碳(CO2)。因此,迫切需要减轻二氧化碳排放,碳捕获和储存(CCS)是减少CO2排放的可能选择。在此背景下,这项工作研究了CO2捕获的新材料的合成和性能评价。特别地,研究了在胺接枝的聚琥珀酰亚胺(PSI)中存在水溶性胺的效果(称为聚己酰胺(PAA)吸附剂)。甲基胺(MA)和单乙醇胺(MEA)用作水溶性胺,还研究了它们对CO 2吸附能力浓度的变化的影响。掺入水溶性胺,以允许吸附剂铺路方法的水溶性进行冷冻干燥,以改善吸附剂的几何结构(表面积,孔隙体积和孔径)。将水溶性胺接枝到已经乙二胺(EDA)接枝的PSI(PSI-EDA)中,用EDA加入以改善吸附剂的化学表面进行CO 2捕获。 NMR分析证实了PAA中的MA和MEA胺基的存在,从而指示在骨架聚合物上存在接枝胺。观察到MA-PAA和MEA-PAA样品中MA和MEA浓度增加的吸附能力增加。在低胺浓度(20%胺和80%eda接枝)中,观察到与MA-PAA样品相比,MEA-PAA表现出较高的吸附能力。在高胺(100%胺接枝)浓度下,MA-PAA样品显示出较高的吸附能力。在每个样品上进行三次运行,得到的结果是可重复的。获得的最佳吸附能力为44.2g CO2 / kg ADS。然而,CO 2吸附过程中的操作条件应优化以提高CO 2吸附容量。

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