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Migration and precipitation of soluble species during drying of colloidal films

机译:胶体膜干燥过程中可溶性物质的迁移和沉淀

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The evaporation-induced convection resulted in a transport of dissolved species, a water-soluble polymer (carboxymethylcellulose) and dissolved CaCO3, to the drying front of silica and CaCO3 dispersions where the material eventually precipitates. Scanning electron microscopy and chemical analysis showed that the concentration of carboxymethylcellulose, CMC, is highest in the centre of the dried silica film and decreases towards the perifery. The colloidal films of the monodisperse silica particles displayed a high degree of structural order even at high concentrations of the non-adsorbed polymer CMC, which suggests that any depletion induced interparticle attraction is insufficient to affect the assembly of the colloidal crystal. The CaCO3 particles are slightly Soluble and we found that rod-like crystals reprecipitated in the centre of the particle films on top of the polyacrylate-coated particles. Addition of CMC disturbs the formation of distinct crystal shapes which was attributed to a complexation of Ca2+ in solution. (C) 2004 Elsevier Inc. All rights reserved.
机译:蒸发引起的对流导致将溶解的物质,水溶性聚合物(羧甲基纤维素)和溶解的CaCO3输送到二氧化硅和CaCO3分散体的干燥前沿,最终使材料沉淀。扫描电子显微镜和化学分析表明,羧甲基纤维素(CMC)的浓度在干燥的二氧化硅膜的中心最高,而向着珍珠岩的方向降低。即使在高浓度的未吸附聚合物CMC下,单分散二氧化硅颗粒的胶体膜也显示出高度的结构有序性,这表明任何耗尽诱导的颗粒间吸引力不足以影响胶体晶体的组装。 CaCO3颗粒微溶,我们发现棒状晶体在聚丙烯酸酯涂层的颗粒顶部的颗粒膜中心重新沉淀。 CMC的添加扰乱了独特的晶体形状的形成,这归因于溶液中Ca2 +的络合。 (C)2004 Elsevier Inc.保留所有权利。

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