聚乙烯亚胺改性介孔硅质泡沫对CO2吸附的影响

IF 4.7 3区 材料科学 Q1 CHEMISTRY, APPLIED
R.R. Dirgarini Julia Nurlianti Subagyono , Alan L. Chaffee
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引用次数: 0

摘要

本研究探讨了甘油和碳酸甘油作为佐剂对聚乙烯亚胺(PEI)功能化介孔硅质泡沫(MCF)吸附CO2的影响,重点研究了燃烧后碳捕获的应用。材料表征表明,pei -佐剂共混物成功地掺入了MCF,通过氮吸附分析发现了明显的孔隙填充,并通过红外光谱揭示了化学相互作用的迹象。在75 - 115°C的干燥和潮湿条件下对材料的CO2吸附进行了评估。支链pei -甘油复合材料在75°C的潮湿CO2环境下,CO2吸收量增加了49%,表明甘油和水之间存在协同作用。佐剂在低CO2浓度和温度下适度增强吸附和解吸动力学,特别是在支链PEI体系中。然而,佐剂的加入通常会降低二氧化碳的吸收和胺的效率。循环实验表明,性能下降,质量逐渐损失,特别是在115°C时,可能是由于PEI迁移到颗粒表面,然后热分解。佐剂具有动力学优势;然而,它们对稳定性的影响需要额外的优化,以在实际应用中实现性能和耐用性之间的平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

CO2 adsorption on polyethyleneimine -modified mesocellular siliceous foam: Influence of glycerol-based additives

CO2 adsorption on polyethyleneimine -modified mesocellular siliceous foam: Influence of glycerol-based additives
This study investigates the effects of glycerol and glycerol carbonate as adjuvants on the CO2 adsorption of polyethyleneimine (PEI)-functionalized mesocellular siliceous foam (MCF), with a focus on post-combustion carbon capture applications. Material characterisation demonstrated the successful incorporation of PEI-adjuvant blends into MCF, with notable pore filling identified via nitrogen sorption analysis and indications of chemical interactions revealed through infrared spectroscopy. The evaluation of CO2 adsorption for the materials was conducted under both dry and humid conditions at temperatures ranging from 75 to 115 °C. The branched PEI-glycerol composites showed a 49 % enhancement in CO2 uptake at 75 °C in humid CO2, indicating a synergistic interaction between glycerol and water. Adjuvants modestly enhanced the adsorption and desorption kinetics at low CO2 concentrations and temperatures, especially within branched PEI systems. Yet the inclusion of adjuvants typically reduced CO2 uptake and amine efficiency. Cycling experiments demonstrated a decline in performance and a gradual loss of mass, particularly at 115 °C, presumably resulting from the migration of PEI to the particle surface followed by thermal decomposition. Adjuvants provide kinetic advantages; however, their effects on stability necessitate additional optimisation to achieve a balance between performance and durability in practical applications.
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来源期刊
Microporous and Mesoporous Materials
Microporous and Mesoporous Materials 化学-材料科学:综合
CiteScore
10.70
自引率
5.80%
发文量
649
审稿时长
26 days
期刊介绍: Microporous and Mesoporous Materials covers novel and significant aspects of porous solids classified as either microporous (pore size up to 2 nm) or mesoporous (pore size 2 to 50 nm). The porosity should have a specific impact on the material properties or application. Typical examples are zeolites and zeolite-like materials, pillared materials, clathrasils and clathrates, carbon molecular sieves, ordered mesoporous materials, organic/inorganic porous hybrid materials, or porous metal oxides. Both natural and synthetic porous materials are within the scope of the journal. Topics which are particularly of interest include: All aspects of natural microporous and mesoporous solids The synthesis of crystalline or amorphous porous materials The physico-chemical characterization of microporous and mesoporous solids, especially spectroscopic and microscopic The modification of microporous and mesoporous solids, for example by ion exchange or solid-state reactions All topics related to diffusion of mobile species in the pores of microporous and mesoporous materials Adsorption (and other separation techniques) using microporous or mesoporous adsorbents Catalysis by microporous and mesoporous materials Host/guest interactions Theoretical chemistry and modelling of host/guest interactions All topics related to the application of microporous and mesoporous materials in industrial catalysis, separation technology, environmental protection, electrochemistry, membranes, sensors, optical devices, etc.
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