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High Performance Microcoulometry

机译:高性能微型管径

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摘要

The purpose of this work is the development of microcoulometric cell for measurement of halogenide ions in the range of ng amounts. The main task in the innovation is to fulfil the need of sensitive halogene determination in the automated measurement of the so-called adsorbable organically bound halogens (AOX) in waters. The very low consumption of supporting electrolyte and the energy saving configuration is also important factors in designing of monitor operation. We developed a micro volume tube reactor, which can work continuously with peristaltic pumps feeding the supporting electrolyte and the sample. The tube cell allows the injection of liquid and gas samples without changing the cell construction. A three electrode type potentiostatic microcoulometer with a rotating Ag working electrode was built, which maintains a constant electrode potential of the working electrode to the reference electrode by the generation of silver ions through anodic dissolution. The halogenide ions in sample solution change the electrode potential of the working electrode. The potentiostatic controller circuit sets a current flowing between the Ag working (anode) and a counter electrode (cathode). This current generates silver ions from the working electrode, these ions precipitate the halogenide ions from the cell electrolyte and restore the potential of the working electrode. It was a further successful hydraulic development to achieve a microvolume cell, which accepts both gas and liquid samples in the same equipment. The developed microcoulometer system has high sensitivity and works reliable in a wide measuring range.
机译:本作作品的目的是在NG量范围内测量卤化物离子的微型管状细胞。创新中的主要任务是满足在水中所谓的可吸附有机结合卤素(AOX)的自动测量中的敏感卤代测定的需求。支撑电解质的低消耗量和节能配置也是在设计监视器操作方面的重要因素。我们开发了一种微量管反应器,可与饲喂支撑电解质和样品的蠕动泵连续工作。管电池允许在不改变电池结构的情况下注入液体和气体样品。构建了具有旋转Ag工作电极的三个电极型电位器微型仪,其通过阳极溶解通过产生银离子将工作电极的恒定电极电位保持在参考电极。样品溶液中的卤化物离子改变了工作电极的电极电位。电位控制器电路设定在Ag工作(阳极)和对电极(阴极)之间流动的电流。该电流从工作电极产生银离子,这些离子从电池电解质沉淀卤化物离子并恢复工作电极的电位。它是一种进一步成功的液压开发,以实现微血细胞,其在同一设备中接受气体和液体样品。发达的微锁温计系统具有高灵敏度,在宽测量范围内具有可靠的工作。

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