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电位滴定法测量Zeta电位和PH的关系

发布时间: 2020-12-22 10:58 来源: 上海胤煌科技有限公司
领域: 环境水/废水/饮用水,原料药/中间体,化学药,生物制药/仿制药,药品包装材料/辅料,化妆品,原油,橡胶,塑料,纤维,涂料,日用化学品,机械设备,纳米材料
样品:电位项目:电位
参考:胤煌科技

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电位滴定法测量Zeta电位和PH的关系

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电位滴定法测量Zeta电位和PH的关系

Potentiometric Titrations are useful for determining a sample's IEP. As mentioned above, the IEP may be desirable or otherwise. Potentiometric Titration plots may display plateau regions for Zeta potential vs. pH. Such measurements enable manufacturers to optimize use of acids or bases for transportation and storage. Figure 2 shows a potentiometric titration on a Ludox-TM silica sample by automatic addition of 1N HCl. This titration was performed automatically by a Zeta-APS, Zeta Acoustic Particle Sizer, instrument from Matec Applied Sciences, Northborough, MA USA 3. Figure 2 shows that below pH 4, the Zeta curve approaches a plateau region while Conductivity increases more rapidly. This suggests that the silica particles are becoming saturated with H+ ions as the pH is lowered. Conductivity increases more rapidly as more of these H+ ions stay in the continuous water solvent as opposed to diffusing through the slipping plane toward the particle surface.

电位滴定法可用于测定样品的等电点。如上所述,IEP可能是可取的或者相反。电位滴定图可以显示Zeta电位与pH值之间的关系变化。这样的测量使制造商通过酸或碱的使用,优化产品的运输和储存。图2显示在Ludox TM二氧化硅样品上自动添加1N HCl时,Zeta电位及电导率的变化。该过程是由美国MAS公司生产的超声电声法粒度及Zeta电位分析仪Zeta-APS设备完成的。图2显示,在pH<4时,Zeta曲线接近一个稳定区域,而电导率增加得更快。这表明,随着pH值的降低,二氧化硅颗粒逐渐被H+离子饱和。当更多的H+离子停留在连续的水溶剂中时,电导率增加得更快,而不是通过滑面向颗粒表面扩散。

图2通过自动电位滴定法将1N HCl加入到10%体积的Ludox TM二氧化硅溶液中

Figure 2. Automatic potentiometric titration of 10%-vol Ludox-TM by 1N HCl addition.


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