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首页> 外文期刊>ACS applied materials & interfaces >Bio-based Micro-/Meso-/Macroporous Hybrid Foams with Ultrahigh Zeolite Loadings for Selective Capture of Carbon Dioxide
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Bio-based Micro-/Meso-/Macroporous Hybrid Foams with Ultrahigh Zeolite Loadings for Selective Capture of Carbon Dioxide

机译:基于生物的微/中/中/大型杂交泡沫,具有超高沸石载体,用于选择性捕获二氧化碳

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摘要

Microporous (<2 nm) crystalline aluminosilicates in the form of zeolites offer a great potential as efficient adsorbents for atmospheric CO_(2) in the eminent battle against global warming and climate change. The processability of conventional zeolite powders is, however, poor, which limits their implementation in many applications, such as in gas filtration industrial systems. In this work, we overcome this issue through the preparation of hybrid foams using mesoporous/macroporous supporting materials based on the strong network properties of gelatin/nanocellulose, which can support ultrahigh loadings of silicalite-1, used as a model sorbent nanomaterial. We achieved up to 90 wt % of zeolite content and a microporous/mesoporous/macroporous hybrid material. The application of hybrid foams for selective CO_(2) sorption exhibits a linear relationship between the zeolite content and CO_(2) adsorption capacity and high selectivity over N_(2), where the gelatin/nanocellulose foam efficiently supports the zeolite crystals without apparently blocking their pores.
机译:微孔(<2nm)沸石形式的结晶硅酸盐提供了卓越的潜力,在杰出的氛围中为全球变暖和气候变化中的卓越斗争提供了高效的吸附剂。然而,常规沸石粉末的加工性差,这限制了它们在许多应用中的实施,例如在气体过滤工业系统中。在这项工作中,我们通过基于明胶/纳米纤维素的强网络性质的介孔/大孔配套材料制备杂交泡沫来克服杂交泡沫,这可以支持硅沸石-1的超高载荷,用作模型吸附剂纳米材料。我们达到了高达90%(重量)的沸石含量和微孔/介孔/大孔混合材料。用于选择性CO_(2)吸附的杂交泡沫的施用表现出沸石含量和CO_(2)吸附容量与N_(2)的高选择性之间的线性关系,其中明胶/纳米纤维素泡沫有效地支持沸石晶体而不明显阻挡他们的毛孔。

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