首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Infrared Study of CO2 Sorption over 'Molecular Basket' Sorbent Consisting of Polyethylenimine-Modified Mesoporous Molecular Sieve
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Infrared Study of CO2 Sorption over 'Molecular Basket' Sorbent Consisting of Polyethylenimine-Modified Mesoporous Molecular Sieve

机译:聚乙烯亚胺改性介孔分子筛组成的“分子篮”吸附剂对CO2的红外吸收研究

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An infrared study has been conducted on CO2 sorption into nanoporous CO2 "molecular basket" sorbents prepared by loading polyethylenimine (PEI) into mesoporous molecular sieve SBA-15. IR results from DRIFTS showed that a part of loaded PEI is anchored on the surface of SBA-15 through the interaction between amine groups and isolated surface silanol groups. Raising the temperature from 25 to 75 °C increased the molecular flexibility of PEI loaded in the mesopore channels, which may partly contribute to the increase of CO2 sorption capacity at higher temperatures. CO2 sorption/desorption behavior studied by in situ transmission FTIR showed that CO2 is sorbed on amine sites through the formation of alkylammonium carbamates and absorbed into the multiple layers of PEI located in mesopores of SBA-15. A new observation by in situ IR is that two broad IR bands emerged at 2450 and 2160 cm~(-1) with CO2 flowing over PEI(50)/SBA-15, which could be attributed to chemically sorbed CO2 species on PEI molecules inside the mesopores of SBA-15. The intensities of these two bands also increased with increasing CO2 exposure time and with raising CO2 sorption temperature. By comparison of the CO2 sorption rate at 25 and 75 °C in terms of differential IR intensities, it was found that CO2 sorption over molecular basket sorbent includes two rate regimes which suggest two distinct steps: rapid sorption on exposed outer surface layers of PEI (controlled by sorption affinity or thermodynamics) and the diffusion and sorption inside the bulk of multiple layers of PEI (controlled by diffusion). The sorption of CO2 is reversible at 75 °C. Comparative IR examination of the CO2 sorption/ desorption spectra on dry and prewetted PEI/SBA-15 sorbent revealed that presorbed water does not significantly affect the CO2-amine interaction patterns.
机译:通过将聚乙烯亚胺(PEI)加载到中孔分子筛SBA-15中制备的纳米多孔CO2“分子篮”吸附剂中进行了CO2吸附的红外研究。 DRIFTS的IR结果表明,一部分负载的PEI通过胺基与孤立的表面硅烷醇基之间的相互作用锚固在SBA-15的表面。将温度从25°C升高到75°C可以增加中孔通道中PEI的分子柔性,这可能部分有助于提高高温下CO2的吸附能力。通过原位透射FTIR研究的CO2吸附/解吸行为表明,CO2通过氨基甲酸烷基铵的形成被吸附在胺位上,并被吸收到位于SBA-15中孔的PEI的多个层中。原位红外光谱的一个新观察结果是,在2450和2160 cm〜(-1)处出现了两个宽红外谱带,二氧化碳流过PEI(50)/ SBA-15,这可能归因于化学吸附在PEI分子内部的CO2种类。 SBA-15的中孔。随着CO 2暴露时间的增加和CO 2吸附温度的升高,这两个谱带的强度也增加。通过比较25和75°C下不同的IR强度下的CO2吸附速率,发现分子篮式吸附剂上的CO2吸附包括两个速率机制,这提示了两个不同的步骤:在PEI暴露的外表面层上快速吸附(通过吸附亲和力或热力学来控制)以及PEI的多层PEI内部的扩散和吸附(通过扩散来控制)。在75°C下,CO2的吸附是可逆的。在干燥的和湿润的PEI / SBA-15吸附剂上进行的CO2吸附/解吸光谱的比较IR检查表明,预吸附的水不会显着影响CO2-胺的相互作用方式。

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