首页> 外文期刊>ACS applied materials & interfaces >Role of Additives in Composite PEI/Oxide CO2 Adsorbents: Enhancement in the Amine Efficiency of Supported PEI by PEG in CO2 Capture from Simulated Ambient Air
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Role of Additives in Composite PEI/Oxide CO2 Adsorbents: Enhancement in the Amine Efficiency of Supported PEI by PEG in CO2 Capture from Simulated Ambient Air

机译:添加剂在PEI /氧化物CO2复合吸附剂中的作用:增强PEG在模拟环境空气中捕集CO2所支持的PEI的胺效率

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Supported amines are promising candidate adsorbents for the removal of CO2 from flue gases and directly from ambient air. The incorporation of additives into polymeric amines such as poly(ethylenimine) (PEI) supported on mesoporous oxides is an effective strategy to improve the performance of the materials. Here, several practical aspects of this strategy are addressed with regards to direct air capture. The influence of three additives (CTAB, PEG200, PEG1000) was systematically explored under dry simulated air capture conditions (400 ppm of CO2, 30 degrees C). With SBA-15 as a model support for poly(ethylenimine) (PEI), the nature of the additive induced heterogeneities in the deposition of organic on the interior and exterior of the particles, an important consideration for future scale up to practical systems. The PEG200 additive increased the observed thermodynamic performance (similar to 60% increase in amine efficiency) of the adsorbents regardless of the PEI content, while the other molecules had less positive effects. A threshold PEG200/PEI value was identified at which the diffusional limitations of CO2 within the materials were nearly eliminated. The threshold PEG/PEI ratio may have physical origin in the interactions between PEI and PEG, as the optimal ratio corresponded to nearly equimolar OH/reactive (1 degrees, 2 degrees) amine ratios. The strategy is shown to be robust to the characteristics of the host support, as PEG200 improved the amine efficiency of PEI when supported on two varieties of mesoporous gamma-alumina with PEI.
机译:负载的胺是有望从烟道气和直接从环境空气中去除CO2的候选吸附剂。将添加剂掺入负载在介孔氧化物上的聚合胺(如聚(乙烯亚胺)(PEI))中是提高材料性能的有效策略。在此,针对直接空气捕获,讨论了该策略的几个实际方面。在干燥的模拟空气捕获条件(400 ppm的二氧化碳,30摄氏度)下系统地研究了三种添加剂(CTAB,PEG200,PEG1000)的影响。使用SBA-15作为聚(乙烯亚胺)(PEI)的模型支持,添加剂的性质会导致有机物在颗粒内部和外部的沉积中引起异质性,这是将来扩展到实际系统的重要考虑因素。不论PEI含量如何,PEG200添加剂均可提高所观察到的吸附剂的热力学性能(类似于胺效率提高60%),而其他分子的积极作用则较小。确定了阈值PEG200 / PEI值,在该阈值处几乎消除了材料中CO2的扩散限制。阈值PEG / PEI比可能是PEI和PEG之间相互作用的物理原因,因为最佳比例对应于几乎等摩尔的OH /反应性(1度,2度)胺比。该策略显示出对宿主载体特征的鲁棒性,因为当在两种带有PEI的介孔γ-氧化铝上负载时,PEG200改善了PEI的胺效率。

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