Distribution of Impregnated Component and Nonuniformity of Colloidal Silica in Porous Glass

Hiroshi Tanaka, T. Yazawa, H. Wakabayashi, H. Nakamichi, K. Eguchi
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Abstract

Porous glass prepared by acid leaching of phase separated glass contains colloidal silica, resulting in the nonunif ormity in the porous glass. Porous glass rods were impregnated with aluminum nitrate solutions, and some of them were treated subsequently with ammonia to precipitate aluminum hydroxide. Then the porous glasses were sintered to form nonporous glasses. The concentration profile of aluminum in the sintered glasses was studied with reference to the nonunif ormity. The aluminum concentration in the impregnated and ammonia-treated specimens was high at the surface region and decreased toward the center. This fact coincides with the distribution of porosity which is high at the surface region. The concentration difference between the as-impregnated and impregnated and ammonia-treated specimens was large at the center and decreased toward the surface, in good correlation with the distribution of the surface area which is high at the center. A narrow gap with a low aluminum concentration was observed at the center of the impregnated specimen and was ascribed to the very densely deposited colloidal silica.
多孔玻璃中浸渍组分的分布及胶体二氧化硅的不均匀性
通过酸浸法制备的多孔玻璃中含有胶体二氧化硅,导致多孔玻璃内部存在不均匀性。用硝酸铝溶液浸渍多孔玻璃棒,部分玻璃棒再用氨水处理,沉淀出氢氧化铝。然后将多孔玻璃烧结成无孔玻璃。针对铝在烧结玻璃中的不均匀性,研究了铝在烧结玻璃中的浓度分布。浸渍和氨处理试样的铝浓度在表面较高,向中心逐渐降低。这与地表孔隙率高的分布是一致的。浸渍态、浸渍态和氨态试样的浓度差在中心处较大,向表面减小,与中心处较大的表面积分布有较好的相关性。在浸渍试样的中心观察到一个低铝浓度的窄间隙,这归因于非常密集沉积的胶体硅。
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