Hebei Key Laboratory of Inorganic Nano-Materilas, College of Chemistry and Material Science, Hebei Normal University, Shijiazhuang 050024, Hebei, China.
Shijiazhuang Vocational College of Finance & Economics, Shijiazhuang 050061, Hebei, China.
Molecules. 2021 Feb 20;26(4):1130. doi: 10.3390/molecules26041130.
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 (), micropore volume () 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 , 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.
为了拓展基于石墨烯的材料在沼气净化中的应用,我们采用一种简单的水热法,以工业级氧化石墨烯为原料制备了一系列还原氧化石墨烯气凝胶(rGOA)。我们采用多种物理和光谱技术考察了水热制备温度对 rGOA 的结构特性、疏水性和物理吸附性能的影响。结果表明,rGOA 具有宏观多孔的三维网络结构。升高水热处理温度会减少含氧基团的数量,而 rGOA 的比表面积()、微孔体积()和水接触角值均会增大。rGOA 对六甲基二硅氧烷(L2)的动态吸附性能随水热处理温度的升高而增加,且穿透吸附容量与、和接触角呈显著线性关系。穿透时间与 L2 的入口浓度之间存在显著的负相关关系,且该关系可用一个简单的经验公式可靠地预测。L2 吸附也随床层温度的降低而增加。在 100°C 下进行短暂的热处理即可使饱和 rGOA 再生。本研究表明,新型 rGOA 有望作为吸附剂应用于从沼气中去除硅氧烷。