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Simultaneous monitoring of the transport of anions and cations across polypyrrole based composite membranes

机译:同时监测基于聚吡咯的复合膜中阴离子和阳离子的迁移

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A mechanism for the macroscopic charge balance during the transport of anions and cations across polypyrrole based composite membranes is proposed. For the mechanism to be studied, anions and cations were monitored simultaneously across PPy based composite membranes, which are known to have cation exchange (PPy(PSS)), anion exchange (PPy(ClO_4)) and mixed ion exchange properties (PPy(pTS)). Even though none of the membranes were found to be completely permselective, the flux of cations was higher than that of anions across the PPy(PSS) composite membrane, while the flux of anions was higher than that of cations across the PPy(ClO_4) composite membrane. Distinct changes in pH of the receiving solution were also observed. These were a decrease in pH when a predominantly anion exchanging polypyrrole composite membrane was used, and an increase in pH when a membrane that maintains charge balance principally by cation exchange was used. When membranes which display approximately equal permeability towards anions and cations were used the pH of the receiving solution was ca. 6-8. There was only a negligible flux of Ca~(2+) across the PPy(PSS) membrane in the transport experiments carried out with the source solution consisting of either Ca(NO_3)_2 or an equimolar mixture of KNO_3 and Ca(NO_3)_2. The PPy(PSS) composite membrane was impermeable towards (NO_3)~- ions when the source solution was Ca(NO_3)_2 but permeability towards (NO_3)~- was observed when the source solution was either KNO_3 or an equimolar mixture of KNO_3 and Ca(NO_3)_2.
机译:提出了在阴离子和阳离子跨聚吡咯基复合膜运输过程中宏观电荷平衡的机制。对于要研究的机理,在已知具有阳离子交换(PPy(PSS)),阴离子交换(PPy(ClO_4))和混合离子交换特性(PPy(pTS)的PPy基复合膜上,同时监测阴离子和阳离子))。即使没有发现膜具有完全的选择性渗透,但阳离子通量高于阴离子穿过PPy(PSS)复合膜的通量,而阴离子通量高于阳离子穿过PPy(ClO_4)复合膜的通量。膜。还观察到接收溶液pH的明显变化。当使用主要是阴离子交换的聚吡咯复合膜时,pH降低,而当使用主要通过阳离子交换保持电荷平衡的膜时,pH升高。当使用对阴离子和阳离子显示大致相等的渗透性的膜时,接收溶液的pH约为。 6-8。在由Ca(NO_3)_2或KNO_3和Ca(NO_3)_2等摩尔混合物组成的源溶液进行的传输实验中,穿过PPy(PSS)膜的Ca〜(2+)通量只有可忽略不计。当源溶液为Ca(NO_3)_2时,PPy(PSS)复合膜对(NO_3)〜-离子不渗透,但是当源溶液为KNO_3或KNO_3和KNO_3的等摩尔混合物时,则对(NO_3)〜-渗透。 Ca(NO_3)_2。

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