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Heterocoagulation of alumina and quartz studied by zeta potential distribution and particle size distribution measurements

机译:通过zeta电位分布和粒度分布测量研究氧化铝和石英的异质混凝

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摘要

This paper presents a new approach to characterizing heterocoagulation (i.e. coagulation of mixtures of dissimilar particles) by measuring the zeta potential distribution and the particle size distribution of individual and combined alumina and quartz at pHs 5, 7, and 10. The results show that the heterocoagulation of alumina and quartz would occur at pHs 5 and 7 but not at pH 10. For the alumina and quartz particles under study, the aggregate size was mainly between 1.3 and 8.7 μm and the quartz would act as the core particle and the alumina as the surrounding particles in the heterocoagulation process. The heterocoagulation and dispersion at different pHs and the aggregate structure at pHs 5 and 7 were verified by the scanning electron microscope analysis. The heterocoagulation and dispersion of alumina and quartz at different pHs can be accounted for by the interparticle force revealed by force analysis in the framework of the Deyaguin-Landau-Verwey-Overbeek theory.
机译:本文提出了一种通过测量pH,5、7和10下单个和混合的氧化铝和石英的zeta电位分布和粒度分布来表征杂凝(即,异种颗粒混合物的凝结)的新方法。结果表明,在pH值为5和7时会发生氧化铝和石英的杂凝,而在pH值为10时不会发生混凝。对于所研究的氧化铝和石英颗粒,聚集体的尺寸主要在1.3至8.7μm之间,石英将作为核心颗粒,氧化铝作为杂凝过程中周围的颗粒。通过扫描电子显微镜分析来验证在不同pH下的杂凝和分散以及在pH 5和7下的聚集体结构。在Deyaguin-Landau-Verwey-Overbeek理论的框架内,通过力分析揭示的颗粒间力可以解释氧化铝和石英在不同pH值下的杂凝和分散。

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