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Molded micro-and mesoporous carbon/silica composite from rice husk and beet sugar

机译:由稻壳和甜菜糖成型的微孔和中孔碳/二氧化硅复合材料

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A molded carbon/silica composite with high micro-and mesoporosity, as well as a high bulk density, was fabricated by activating a disk-molded precursor made from carbonized rice husk(RH) and beet sugar (BS) at 875 °C in CO2. The pore structure of the RH-and BS-based carbon/silica composite (RBC) was analysed in relation to the bulk density. An activation time of 2.0 h provided the largest BET specific surface area (1027 m2/g) and total pore volume (0.68 cm3/g) and a low bulk density (0.54 g/cm3). An RBC that was first activated for 1 h was immersed again in BS syrup and then activated in CO2 for 1 h. This two-step activation process provided both a high bulk density (0.69g/cm3) and a highly textured structure (BET specific surface area, 943 m2/g; total pore volume, 0.56 cm3/g). The immersion in BS syrup was useful for improving the texture without reducing the bulk density, in comparison to one-step activation for 1.0 h. The suspension of the RBCs was basic because of the residual inorganic compounds of potassium and calcium. However, the basicity of the suspension was alleviated by washing the RBCs with water.
机译:通过在875°C下在CO2中活化由碳化稻壳(RH)和甜菜糖(BS)制成的盘状成型前驱体,制备出具有高微孔和中孔率以及高堆积密度的模制碳/二氧化硅复合材料。 。相对于堆积密度,分析了基于RH和BS的碳/二氧化硅复合材料(RBC)的孔结构。活化时间为2.0小时,可提供最大的BET比表面积(1027 m2 / g)和总孔体积(0.68 cm3 / g),以及较低的堆积密度(0.54 g / cm3)。将首先激活1小时的RBC再浸入BS糖浆中,然后在CO2中激活1小时。此两步活化过程既提供了高堆积密度(0.69g / cm3),又提供了高度织构化的结构(BET比表面积943 m2 / g;总孔体积为0.56 cm3 / g)。与一步活化1.0小时相比,浸入BS糖浆中可用于改善质地而不降低堆积密度。由于残留的钾和钙等无机化合物,红细胞的悬浮是碱性的。然而,通过用水洗涤RBC降低了悬浮液的碱性。

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