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Amino functionalised Silica-Aerogels for C02-adsorption at low partial pressure

机译:氨基官能化二氧化硅气凝胶,可在低分压下吸附二氧化碳

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Effective adsorption of CO2 at low partial pressures is required for many technical processes, such as gas purification or CO2 removal in closed loop environmental control systems. Since the concentration of CO2 in such applications is rather low, a high adsorption capacity is a required property for the adsorbent. Silica aerogels possessing an open pore structure, a high porosity and a high surface area, have a great potential for utilisation as CO2 adsorbents. Nonetheless in order to reach high adsorption capacities, silica aerogels should be functionalised, for instance by amino functionalisation. In this work, two different functionalisation methods were applied for the generation of amino functionalised aerogels: co-condensation during the sol-gel process and post-treatment of the gel. The co-condensation functionalisation allows the introduction of up to 1.44 wt.% nitrogen into the aerogel structure with minor reductions in surface area, leading however only to minor increases in the adsorption capacity at low partial pressures. The post functionalisation of the gel causes a greater loss in surface area, but the CO2 adsorption capacity increases, due to the introduction of higher amounts of amino groups into the aerogel structure (up to 5.2 wt.% nitrogen). Respectively, 0.523 mmol CO2/g aerogel could be adsorbed at 250 Pa. This value is comparable with the adsorption capacity at this pressure of a standard commercially available adsorbent, Zeolite 13X.
机译:许多技术过程都要求在低分压下有效吸附CO2,例如气体净化或闭环环境控制系统中的CO2去除。由于在这样的应用中CO 2的浓度相当低,因此高吸附容量是吸附剂的必需性能。具有开孔结构,高孔隙率和高表面积的二氧化硅气凝胶具有用作CO 2吸附剂的巨大潜力。尽管如此,为了达到高吸附能力,二氧化硅气凝胶应该被官能化,例如通过氨基官能化。在这项工作中,两种不同的功能化方法被应用于氨基功能化气凝胶的生成:溶胶-凝胶过程中的共缩合和凝胶的后处理。共缩合官能化允许在气凝胶结构中引入高达1.44 wt。%的氮,而表面积却有较小的减少,但是在较低的分压下只会导致吸附容量的较小增加。凝胶的后官能化导致更大的表面积损失,但是由于将更多量的氨基引入气凝胶结构(高达5.2重量%的氮),所以CO 2吸附能力增加。在250 Pa下可以分别吸附0.523 mmol CO2 / g气凝胶。该值与标准商购吸附剂Zeolite 13X在此压力下的吸附容量相当。

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