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The preparation and characterization of alumina membranes with ultrafine pores 2. The formation of supported membranes

机译:具有超细孔的氧化铝膜的制备和表征2.支撑膜的形成

摘要

Supported γ-A12O3 membranes are prepared by a dipping procedure. According to this method, a capillary pressure drop is created by bringing a microporous ceramic support into contact with a boehmite (γ-A1OOH) sol. This pressure drop forces the dispersion medium of the sol to flow into the dry part of the support. The sol particles are concentrated at the entrance of the pores and a gel is formed. This gel can be dried and calcined to form a crack-free alumina membrane with pores measuring only a few nanometers, if the membrane thickness after calcination is about 5 μm or less. The gel formation process can be quantitatively well described with the slibcasting model. The observations that the membrane thickness increases linearly with the square root of the dipping time and that the casting rate increases if the sol concentration increases, the pore size of the support decreases or the gelling concentration decreases, are all in accordance with this slibcasting model.
机译:支撑的γ-Al2O3膜是通过浸渍法制备的。根据该方法,通过使微孔陶瓷载体与勃姆石(γ-AlOOH)溶胶接触而产生毛细管压降。该压降迫使溶胶的分散介质流入载体的干燥部分。溶胶颗粒集中在孔的入口处并形成凝胶。如果煅烧后的膜厚度为约5μm或更小,则可以将该凝胶干燥并煅烧以形成具有仅几纳米的孔的无裂纹的氧化铝膜。凝胶形成过程可以用射流铸造模型定量地描述。观察到膜厚随浸入时间的平方根线性增加,并且如果溶胶浓度增加,载体的孔径减小或胶凝浓度降低,则浇铸速率增加,这一切都与这种分流模型一致。

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  • 作者单位
  • 年度 1985
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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