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首页> 外文期刊>Waste and biomass valorization >Carbon Dioxide Capture Using Amine Functionalized Hydrothermal Carbons from Technical Lignin
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Carbon Dioxide Capture Using Amine Functionalized Hydrothermal Carbons from Technical Lignin

机译:使用来自木质素的胺官能化热碳来捕获二氧化碳

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Amine scrubbing is the most optimized and widely researched post combustion carbon dioxide capture technology till date. However, amine scrubbing remains costly because of high energy inputs during the regeneration stage. Although less researched, "solid sorbents" such as zeolite, active carbon, carbon coke, metal-organic frameworks and mesoporous silica are currently under development for CO2 capture as potential alternatives to amine scrubbers. In this study, sorbents were synthesized from carbonaceous materials (CMs) obtained from hydrothermally treated (350 degrees C) lignin, a waste material from forest biorefineries. CMs were activated with potassium hydroxide (KOH) at 800 degrees C to improve their textural properties and finally functionalized with polyethyleneimine (PEI) to also improve its CO2 capture properties. This study evaluated synergistic effect of these two treatments on adsorption capacity of CO2. Activation increased surface area of CMs from 2.8 to 1341 m(2) g(-1). CO2 capacities of 2 mmol g(-1) (L350 PEI 5%) and 1.53 mmol g(-1) (L350) could be reached at 30 degrees C, due to improved textural and chemical properties of the samples. Optimal PEI loading was determined to be 5%, after which CO2 sorption decreased with further additions of PEI. This was ascribed to blockage of the micro-pores in the activated samples at high PEI impregnation. Also, activated samples showed faster adsorption kinetics compared to PEI functionalized activated samples. The feasibility of using waste lignin with improved surface area and surface functionalities as alternative materials for CO2 adsorption was demonstrated.
机译:迄今为止,胺洗涤是最优化和研究最广泛的燃烧后二氧化碳捕获技术。然而,由于再生阶段期间的高能量输入,胺洗涤仍然是昂贵的。尽管研究较少,但是诸如沸石,活性炭,碳焦炭,金属有机骨架和中孔二氧化硅之类的“固体吸附剂”目前正在开发中,以捕集二氧化碳作为胺洗涤塔的潜在替代品。在这项研究中,吸附剂是由碳素材料(CMs)合成的,碳素材料是从水热处理(350摄氏度)木质素获得的,木质素是森林生物精炼厂的废料。 CM在800摄氏度下用氢氧化钾(KOH)活化以改善其质地,最后用聚乙烯亚胺(PEI)官能化以提高其CO2捕获性能。这项研究评估了这两种处理对CO2吸附容量的协同效应。激活使CM的表面积从2.8增加到1341 m(2)g(-1)。由于改善了样品的组织和化学性能,在30摄氏度下可以达到2 mmol g(-1)(L350 PEI 5%)和1.53 mmol g(-1)(L350)的CO2容量。确定PEI的最佳负载为5%,此后,随着PEI的进一步添加,CO2吸附量降低。这归因于在高PEI浸渍下活化样品中的微孔堵塞。而且,与PEI官能化的活化样品相比,活化的样品显示出更快的吸附动力学。证明了使用具有改善的表面积和表面功能的废木质素作为CO 2吸附的替代材料的可行性。

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