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Steam Induced Structural Changes of a Poly(ethylenimine) Impregnated γ-Alumina Sorbent for CO2 Extraction from Ambient Air

机译:蒸汽诱导的用于环境空气中二氧化碳萃取的聚乙烯亚胺浸渍的γ-氧化铝吸附剂的结构变化

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Poly(ethylenimine) (PEI) impregnated meso- porous γ-alumina sorbents are utilized for CO2 adsorption from dry and humid simulated ambient air, and the sorbents are regenerated under an environment of flowing steam for times ranging from 5 min to 24 h of continuous exposure. The sorbents are compared on the basis of equilibrium CO2 capacities from simulated air at 400 ppm of CO2, 50% relative humidity, and 30 °C as well as their physiochemical characterization by means of X-ray diffraction (XRD), ~(27)Al NMR spectroscopy, IR spectroscopy, Raman spectroscopy, N2 physisorption, and elemental analysis. The sorbents retain better than 90% of the initial equilibrium capacity of ~1.7 mmol/g at steam exposure times up to 12 h; however, PEI leaching reduced the capacity of the sorbent to 0.66 mmol/g after 24 h of continuous treatment. It is demonstrated that the γ-alumina support partially hydrates to form a boehmite crystal phase at steam times of 90 min and longer but that this phase transition occurs predominately between 90 min and 12 h of steam treatment, slowing at longer times of 12 and 24 h of treatment. Evidence is presented to suggest that the presence of boehmite on the sorbent surface does not significantly alter the amine efficiency of impregnated PEI. The collected results suggest that /-alumina/ PEI composite materials are promising sorbents for CO2 capture from ambient air with regeneration in flowing steam.
机译:浸渍了聚乙烯亚胺(PEI)的中孔γ-氧化铝吸附剂可从干燥和潮湿的模拟环境空气中吸附CO2,并在流动蒸汽的环境下连续5分钟至24小时连续吸收吸附剂接触。根据模拟空气在400 ppm CO2、50%相对湿度和30°C下模拟空气的平衡CO2容量以及通过X射线衍射(XRD)对它们的理化特性进行比较,〜(27) Al NMR光谱,IR光谱,拉曼光谱,N2物理吸附和元素分析。在长达12小时的蒸汽暴露时间下,吸附剂的初始平衡容量约1.7 mmol / g保持在90%以上。但是,PEI浸提法在连续处理24小时后将吸附剂的容量降低至0.66 mmol / g。事实证明,γ-氧化铝载体在90分钟及以上的蒸汽时间会部分水合形成勃姆石晶体相,但这种相变主要发生在90分钟至12 h的蒸汽处理之间,在12和24的较长时间会减慢h的治疗。证据表明吸附剂表面存在勃姆石不会显着改变浸渍PEI的胺效率。收集的结果表明,α-氧化铝/ PEI复合材料是有前景的吸附剂,可从周围空气中捕获CO2,并在流动的蒸汽中进行再生。

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