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CO_2 Adsorption Ability and Thermal Stability of Amines Supported on Mesoporous Silica SBA-15 and Fumed Silica

机译:介孔二氧化硅SBA-15和气相二氧化硅负载的胺对CO_2的吸附能力和热稳定性

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In this study, monoamine 3-aminopropyl silane (APS) grafted on silica supports were prepared either by post-modification of mesoporous template-free SBA-15 and nonporous fumed silica with 3-aminopropyl triethoxysilane (APTES) or by direct synthesis using a reaction mixture of APTES, TEOS and organic template P123. The CO_2 adsorption capacities and efficiencies of amine (defined as CO_2/N ratio) on APS grafted silica adsorbents as well as the thermal stability of grafted APS were analyzed and further compared with those of multiamine, tetraethylenepentamine (TEPA), loaded on mesoporous SBA-15 and nonporous fumed silica. The TEPA-loaded silica adsorbents exhibited higher CO_2 adsorption capacities but lower thermal stability than the APS-grafted silica adsorbents. The low cost and commercially available nonporous fumed silica was found to be an appropriate support for amine loading. The TEPA-loaded fumed silica possessed a CO_2 adsorption capacity of 3.97 mmole CO_2/(g of adsorbent) and a CO_2/N mole ratio of 0.37 under a 15% CO_2/N_2 mixed gas flow at 75 ℃ and 1 atm, which were higher than those of the TEPA-loaded SBA-15 due to the less CO_2 diffusion hindrance. Besides, a high stability of TEPA on fumed silica in cyclic adsorption-desorption of CO_2 over the TEPA loaded on SBA-15 was observed as well.
机译:在这项研究中,接枝到二氧化硅载体上的单胺3-氨基丙基硅烷(APS)可以通过无孔模板的SBA-15和无孔气相二氧化硅经3-氨基丙基三乙氧基硅烷(APTES)的后修饰或通过反应直接合成来制备APTES,TEOS和有机模板P123的混合物。分析了胺对APS接枝二氧化硅吸附剂的CO_2吸附能力和效率(定义为CO_2 / N比)以及接枝APS的热稳定性,并将其与负载在中孔SBA-上的多胺四亚乙基五胺(TEPA)进行了比较。 15和无孔气相二氧化硅。载有TEPA的二氧化硅吸附剂比APS接枝的二氧化硅吸附剂具有更高的CO_2吸附能力,但热稳定性较低。发现低成本和可商购的无孔热解法二氧化硅是负载胺的合适载体。负载TEPA的气相二氧化硅在75℃和1个大气压的15%CO_2 / N_2混合气流下具有3.97 mmole CO_2 /(g吸附剂)的CO_2吸附能力和0.37的CO_2 / N摩尔比。相比于TEPA装载的SBA-15,CO_2扩散障碍更少。此外,还观察到在负载于SBA-15的TEPA上,CO_2在CO_2循环吸附-解吸中,在气相法二氧化硅上具有很高的稳定性。

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