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Non-obvious Problems in Clark Electrode Application at Elevated Temperature and Ways of Their Elimination

机译:高温Clark电极应用中的非显而易见问题及其消除方法

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摘要

Well-known cause of frequent failures of closed oxygen sensors is the appearance of gas bubbles in the electrolyte. The problem is traditionally associated with insufficient sealing of the sensor that is not always true. Study of a typical temperature regime of measurement system based on Clark sensor showed that spontaneous release of the gas phase is a natural effect caused by periodic warming of the sensor to a temperature of the test liquid. The warming of the sensor together with the incubation medium causes oversaturation of electrolyte by dissolved gases and the allocation of gas bubbles. The lower rate of sensor heating in comparison with the medium reduces but does not eliminate the manifestation of this effect. It is experimentally established, that with each cycle of heating of measuring system up to 37°C followed by cooling the volume of gas phase in the electrolyte (KCl; 60 g/L; 400 μL) increased by 0.6 μL approximately. Thus, during just several cycles it can dramatically degrade the characteristics of the sensor. A method was developed in which the oxygen sensor is heated in contact with the liquid, (depleted of dissolved gases), allowing complete exclusion of the above-mentioned effect.
机译:封闭式氧气传感器频繁故障的众所周知原因是电解液中出现气泡。传统上,该问题与传感器的密封不足有关,这种情况并不总是如此。对基于Clark传感器的典型温度测量系统的研究表明,气相的自发释放是传感器周期性升温至测试液体温度所引起的自然效应。传感器与保温介质一起加热会导致电解质因溶解的气体而过饱和,并导致气泡分布。与介质相比,较低的传感器加热速率会降低但不会消除这种影响的表现。实验确定,在加热测量系统至37°C的每个循环中,接着冷却电解液中的气相体积(KCl;60μg/ L;400μL),大约增加0.6μμL。因此,在短短几个周期内,它会大大降低传感器的性能。开发了一种方法,其中将氧传感器与液体(贫化了的溶解气体)接触加热,从而完全排除了上述影响。

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