首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Effect of pH and conductivity on hindered diffusion of perchlorate ions during transport through negatively charged nanofiltration and ultrafiltration membranes
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Effect of pH and conductivity on hindered diffusion of perchlorate ions during transport through negatively charged nanofiltration and ultrafiltration membranes

机译:pH和电导率对高氯酸根离子通过带负电荷的纳滤和超滤膜运输过程中受阻扩散的影响

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摘要

Hindered (effective) diffusion of perchlorate anion (C1O_4) through negatively-charged porous nanofiltration and ultrafiltration membranes was determined by means of diffusion cell experiments.Three electrolytes,KC1,K_2SO_4,and CaCl_2,were employed to determine their effects on the effective diffusion of perchlorate through membrane pores under varying pH levels (4,6,8,and 10).In addition,the effect of electrolyte concentration on effective diffusion was investigated,given that conductivity can affect electrostatic repulsion associated with the membrane surface/pore charge.All diffusion cell measurements were performed by reusing the same membrane in order to minimize artifacts from membrane variation based on membrane pore geometry (size) and membrane surface charge.In general,the results indicate that target ion (in this case C1O_4) transport by diffusion through the negatively charged membrane pores can be significantly affected by the presence of co- and counter ions and pH conditions,which significantly influence partitioning of the perchlorate ion due to mainly electrostatic repulsion occurring between the perchlorate anion and the negatively charged membrane.
机译:通过扩散池实验确定了高氯酸根阴离子(C1O_4)通过带负电荷的多孔纳米过滤和超滤膜的受阻(有效)扩散。使用三种电解质KC1,K_2SO_4和CaCl_2来确定它们对氯离子的有效扩散的影响。高氯酸盐在不同pH值(4、6、8和10)下通过膜孔。此外,研究了电解质浓度对有效扩散的影响,因为电导率会影响与膜表面/孔电荷相关的静电排斥力。通过重复使用同一膜来进行扩散池测量,以最大程度地减少基于膜孔几何形状(尺寸)和膜表面电荷的膜变化造成的假象。通常,结果表明目标离子(在这种情况下为C1O_4)通过扩散而传输负离子和膜离子的存在会严重影响带负电荷的膜孔这主要是由于高氯酸根阴离子与带负电的膜之间发生静电排斥,从而显着影响高氯酸根离子的分配。

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