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首页> 外文期刊>Journal of Colloid and Interface Science >The significance of the solid-to-liquid ratio in the electrokinetic studies of the effect of ionic surfactants on mineral oxides
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The significance of the solid-to-liquid ratio in the electrokinetic studies of the effect of ionic surfactants on mineral oxides

机译:固液比在离子表面活性剂对矿物氧化物影响的电动研究中的意义

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摘要

The effect of SDS on the electrokinetic behavior of TiO_2 and Al_2O_3 was studied by electrophoresis at various solid-to-liquid ratios. Additionally, the effect of CTAB on electrokinetic curves of Al_2O_3 single crystal and of Al_2O_3 particles was studied by streaming potential. At a sufficiently low solid-to-liquid ratio, the electrokinetic potential was negative and almost pH-independent in the presence of SDS and positive and pH-independent in the presence of CTAB. Further decrease in the solid-to-liquid ratio had a limited effect on the course of the electrokinetic curves. At a sufficiently high solid-to-liquid ratio, the electrokinetic potential was not affected by the presence of the surfactant. At moderate solid-to-liquid ratios, the electrokinetic potential in the presence of SDS was negative and almost pH-independent at very high and at very low pH, and less negative or even positive electrokinetic potential (more positive at higher solid-to-liquid ratios) was observed at moderate pH with a peak 1 to 2 pH units below the pristine IEP. The inspection of the results (obtained at single solid-to-liquid ratio) from the literature confirmed the above trends, also for oxides other than TiO_2 or Al_2O_3. The range of solid-to-liquid ratios, which can be covered by electrophoresis is limited by insufficient signal, and by insufficient transparency at low and at high solid-to-liquid ratios, respectively. The available range of solid-to-liquid ratios can be extended by using the electroacoustic method. Apparently, the significance of the solid-to-liquid ratio in the electrokinetic studies of oxide-ionic surfactant systems is underrated. To our best knowledge, this is the first systematic study of such an effect ever published, and in many publications, the solid-to-liquid ratio was not reported and probably not even controlled.
机译:通过不同固液比的电泳研究了SDS对TiO_2和Al_2O_3电动行为的影响。另外,通过流动电势研究了CTAB对Al_2O_3单晶和Al_2O_3颗粒的电动曲线的影响。在足够低的固液比下,电动势为负,在SDS存在下几乎与pH无关,在CTAB存在下为正且与pH不相关。固液比的进一步降低对电动曲线的影响有限。在足够高的固液比下,表面活性剂的存在不会影响电动势。在适度的固液比下,在存在SDS的情况下,电动势为负,并且在非常高和非常低的pH下几乎与pH无关,而负电动势或什至为正的电动势(在较高的固液比下则更大)在中等pH值下观察到液体比率),其峰值比原始IEP低1-2个pH单位。从文献中检查结果(以单一的固液比获得)证实了上述趋势,对于TiO_2或Al_2O_3以外的氧化物也是如此。电泳可以覆盖的固液比范围受到信号不足的限制,并且分别在低固液比和高固液比时受到透明度不足的限制。固液比的可用范围可以通过使用电声方法来扩展。显然,在氧化物离子表面活性剂系统的电动研究中固液比的重要性被低估了。据我们所知,这是有史以来首次对这种效应进行系统的研究,在许多出版物中,固液比没有报道,甚至可能没有得到控制。

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