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The Effects of Hydrophobicity and Textural Properties on Hexamethyldisiloxane Adsorption in Reduced Graphene Oxide Aerogels

机译:疏水性和纹理性质对六甲基二硅氧烷吸附在氧化石渣气凝胶中的吸附

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摘要

To expand the applications of graphene-based materials to biogas purification, a series of reduced graphene oxide aerogels (rGOAs) were prepared from industrial grade graphene oxide using a simple hydrothermal method. The influences of the hydrothermal preparation temperature on the textural properties, hydrophobicity and physisorption behavior of the rGOAs were investigated using a range of physical and spectroscopic techniques. The results showed that the rGOAs had a macro-porous three-dimensional network structure. Raising the hydrothermal treatment temperature reduced the number of oxygen-containing groups, whereas the specific surface area (SBET), micropore volume (Vmicro) and water contact angle values of the rGOAs all increased. The dynamic adsorption properties of the rGOAs towards hexamethyldisiloxane (L2) increased with increasing hydrothermal treatment temperature and the breakthrough adsorption capacity showed a significant linear association with SBET, Vmicro and contact angle. There was a significant negative association between the breakthrough time and inlet concentration of L2, and the relationship could be reliably predicted with a simple empirical formula. L2 adsorption also increased with decreasing bed temperature. Saturated rGOAs were readily regenerated by a brief heat-treatment at 100 °C. This study has demonstrated the potential of novel rGOA for applications using adsorbents to remove siloxanes from biogas.
机译:为了将基于石墨烯的材料的应用扩展到沼气纯化,使用简单的水热法制备工业级石墨烯氧化物制备一系列还原的石墨烯氧化物气凝胶(RGOA)。使用一系列物理和光谱技术研究了水热量制备温度对RGOA的纹理性质,疏水性和物理吸附行为的影响。结果表明,RGOA有宏观多孔的三维网络结构。提高水热处理温度降低了含氧的含量,而比表面积(SBET),缩影体积(VMICRO)和RGOA的水接触角值均增加。随着水热处理温度的增加,RGGA朝向六甲基二硅氧烷(L2)的动态吸附性能增加,并且突破性吸附能力显示出与SBET,VMICRO和接触角的显着线性关联。在L2的突破时间和入口浓度之间存在显着的负关联,并且可以通过简单的经验公式可靠地预测该关系。 L2吸附也随着床温的降低而增加。通过在100℃的短暂热处理中容易再生饱和RGoAs。本研究表明,使用吸附剂除去来自沼气的硅氧烷的应用的新型RGOA的潜力。

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