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Porous Materials from Thermally Activated Kaolinite: Preparation Characterization and Application

机译:热活化高岭石中的多孔材料:制备表征和应用

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摘要

In the present study, porous alumina/silica materials were prepared by selective leaching of silicon/aluminum constituents from thermal-activated kaolinite in inorganic acid or alkali liquor. The correlations between the characteristics of the prepared porous materials and the dissolution properties of activated kaolinite were also investigated. The results show that the specific surface area (SSA) of porous alumina/silica increases with silica/alumina dissolution, but without marked change of the BJH pore size. Furthermore, change in pore volume is more dependent on activation temperature. The porous alumina and silica obtained from alkali leaching of kaolinite activated at 1150 °C for 15 min and acid leaching of kaolinite activated at 850 °C for 15 min are mesoporous, with SSAs, BJH pore sizes and pore volumes of 55.8 m2/g and 280.3 m2/g, 6.06 nm and 3.06 nm, 0.1455 mL/g and 0.1945 mL/g, respectively. According to the adsorption tests, porous alumina has superior adsorption capacities for Cu2+, Pb2+ and Cd2+ compared with porous silica and activated carbon. The maximum capacities of porous alumina for Cu2+, Pb2+ and Cd2+ are 134 mg/g, 183 mg/g and 195 mg/g, respectively, at 30 °C.
机译:在本研究中,多孔氧化铝/二氧化硅材料是通过在无机酸或碱液中从热活化高岭石中选择性浸出硅/铝成分而制备的。还研究了所制备的多孔材料的特性与活性高岭石的溶解性能之间的相关性。结果表明,多孔氧化铝/二氧化硅的比表面积(SSA)随着二氧化硅/氧化铝溶解而增加,但BJH孔径没有明显变化。此外,孔体积的变化更多地取决于活化温度。通过在1150°C下活化的高岭石进行碱浸15分钟和在850°C下活化的高岭石进行酸浸而获得的多孔氧化铝和二氧化硅是介孔的,SSA,BJH孔径和孔体积为55.8 m 2 / g和280.3 m 2 / g,分别为6.06 nm和3.06 nm,0.1455 mL / g和0.1945 mL / g。根据吸附试验,多孔氧化铝对Cu 2 + ,Pb 2 + 和Cd 2 + 的吸附能力优于多孔二氧化硅和活性炭。多孔氧化铝对Cu 2 + ,Pb 2 + 和Cd 2 + 的最大容量为134 mg / g,183 mg / g和在30°C下分别为195 mg / g。

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