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溶解氧仪的工作原理!
2012-12-11 阅读次数 1681

含量可充分显示水自净的程度。对于使用活化污泥的生物处理厂来说,了解曝气池和氧化沟的氧含量非常重要,污水中溶氧增加,会促进除厌氧微生物以外的生物活动,因而能去除挥发性物质和易于自然氧化的离子,使污水得到净化。

溶解氧值是研究水自净能力的一种依据。水里的溶解氧被消耗,要恢复到初始状态,所需时间短,说明该水体的自净能力强,或者说水体污染不严重。否则说明水体污染严重,自净能力弱,甚至失去自净能力。

测定氧含量主要有三种方法:自动比色分析和化学分析测量,顺磁法测量,电化学法测量。水中溶氧量一般采用电化学法测量。麦该厂采用了COS 4型溶氧传感器和COM252型溶氧变送器。 

氧能溶于水,溶解度取决于温度、水表面的总压、分压和水中溶解的盐类。大气压力越高,水溶解氧的能力就越大,其关系由亨利(Henry)定律和道尔顿(Dalton)定律确定,亨利定律认为气体的溶解度与其分压成正比。

以COS 4氧量测量传感器为例。其中的电极由阴极(常用金和铂制成)和带电流的反电极(银)、无电流的参比电极(银)组成,电极浸没在电解质如KCl、KOH中,传感器有隔膜覆盖,隔膜将电极和电解质与被测量的液体分开,因此保护了传感器,既能防止电解质逸出,又可防止外来物质的侵入而导致污染和毒化。

向反电极和阴极之间施加极化电压,假如测量元件浸入在有溶解氧的水中,氧会通过隔膜扩散,出现在阴极上(电子过剩)的氧分子就会被还原成氢氧根离子:

电化学当量的氯化银沉淀在反电极上(电子不足):4Ag+4Cl-? 4AgCl+4e-。

对于每个氧分子,阴极放出4个电子,反电极接受电子,形成电流,电流的大小与被测污水的氧分压成正比,该信号连同传感器上热电阻测出的温度信号被送入变送器,利用传感器中存储的含氧量和氧分压、温度之间的关系曲线计算出水中的含氧量,然后转化成标准信号输出。参比电极的功能是确定阴极电位。

COS 4溶氧传感器的响应时间为:3分钟后达到最终测量值的90%,9分钟后达到最终测量值的99%;最低流速要求为0.5cm/s。

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