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首页> 外文期刊>International Journal of Greenhouse Gas Control >Hydrate-based pre-combustion capture of carbon dioxide in the presence of a thermodynamic promoter and porous silica gels
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Hydrate-based pre-combustion capture of carbon dioxide in the presence of a thermodynamic promoter and porous silica gels

机译:在热力学促进剂和多孔硅胶存在下基于水合物的燃烧前二氧化碳捕集

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摘要

In this study, the feasibility of the hydrate-based pre-combustion capture of carbon dioxide in the presence of a thermodynamic promoter and porous silica gels was examined through stability condition measurements, gas uptake measurements, and microscopic analyses. When a fuel gas mixture of H-2 (60%) and CO2 (40%) was used for gas hydrate formation, the addition of tetrahydrofuran (THF) yielded significantly enhanced hydrate stability conditions. Silica gels with a nominal diameter of 100.0 nm demonstrated increased gas consumption during gas hydrate formation, indicating higher conversion of water into gas hydrate. With only one step of hydrate formation, CO2 concentrations of higher than 90% were achieved in the hydrate phase for all cases. It can be concluded that the hydrate phase composition is affected primarily by the cage occupancies of guest gases in the hydrate lattices whereas the vapor phase composition is strongly influenced by the conversion of water to gas hydrate and also partially by the cage occupancy of CO2 in the hydrate phase. From powder X-ray diffraction (PXRD) patterns and Raman spectra, it was confirmed that the H-2 (60%) + CO2 (40%) gas mixture forms structure I hydrate and the inclusion of THF induces the formation of structure II hydrate
机译:在这项研究中,通过稳定性条件测量,气体吸收测量和微观分析,研究了在热力学促进剂和多孔硅胶存在下基于水合物的燃烧前捕集二氧化碳的可行性。当使用H-2(60%)和CO2(40%)的混合气体进行气体水合物形成时,添加四氢呋喃(THF)会显着提高水合物的稳定性。标称直径为100.0 nm的硅胶证明了在天然气水合物形成过程中气体消耗的增加,表明水转化为天然气水合物的转化率更高。仅需一步形成水合物,在所有情况下,水合物相中的CO2浓度均达到90%以上。可以得出结论,水合物相的组成主要受水合物晶格中客气的笼形占有率的影响,而气相的组成则受到水向气体水合物转化的强烈影响,并且还部分受CO2在水合物中的笼形占有率的影响。水合相。根据粉末X射线衍射(PXRD)图谱和拉曼光谱,可以确定H-2(60%)+ CO2(40%)气体混合物形成结构I水合物,而THF的引入则诱导结构II水合物的形成。

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