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Solidification Mechanism Of Allophane By Hydrothermal Reaction

机译:水热反应中脲基甲烷的固化机理

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Solidified materials were prepared by subjecting powder compacts consisting of allophane and slaked lime to hydrothermal reaction at various temperatures. Hydrogarnet was formed after the hydrothermal reaction because of the reaction between allophane and slaked lime. The bending strength of the materials solidified by hydrothermal reaction at 80 ℃ was greater than 6 MPa. The improvement in the strength of materials by hydrothermal reaction at 80 ℃ was due to the formation of fine deposits at the surface of allophane aggregates; these deposits filled the spaces between particles of the starting materials. Hydrothermal reaction at temperatures greater than 120 ℃ resulted in the collapse of the allophane structure, leading to a decrease in the strength of the materials.
机译:固化材料是通过在不同温度下使由玻璃纸和熟石灰组成的粉末压块进行水热反应来制备的。水热石榴石与熟石灰之间的反应在水热反应后形成了氢石榴石。 80℃水热反应固化的材料的弯曲强度大于6 MPa。通过在80℃下进行水热反应,材料强度的提高是由于在脲基甲酸酯聚集体的表面形成了细小的沉积物。这些沉积物填充了原料颗粒之间的空间。在高于120℃的温度下进行水热反应导致脲基甲烷结构崩溃,导致材料强度降低。

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