氧化铁溶胶的稳定性

F. Dumont, A. Watillon
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引用次数: 60

摘要

氧化铁水溶胶由赤铁矿核心和水合氧化物外壳组成。在p.p.p.c.c两侧,研究了氧化铁表面与一系列具有结构促进剂和结构破坏剂特征的阴离子和阳离子之间的相互作用。虽然氧化铁具有适中的晶体场,但观察到的吸附序列表明,界面作为水分子的结构促进剂。测定的吸附序列分布广泛,特别是在极端pH值下,证明了混凝技术是研究离子表面相互作用的良好工具。一种新的行为已经被观察到;在低表面电位下,离子表现为漠不关心,但在高表面电位下,它们被特异性吸附。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability of ferric oxide hydrosols
Ferric oxide hydrosols are composed of a haematite core surrounded by an hydrated oxide shell. Interactions have been studied, on both sides of the p.z.c., between ferric oxide surface and a series of anions and cations having characteristics ranging from structure promoters to structure breakers. Although ferric oxide has a moderate crystalline field, the observed adsorption sequences show that the interface acts as a structure promoter for water molecules. The large spreading of the measured adsorption sequences, especially at extreme pH values, proved the coagulation technique to be a good tool for the study of ion-surface interactions. A new type of behaviour has been observed; at low surface potentials the ions behave as indifferent but at higher surface potentials they are specifically adsorbed.
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