基于电位滴定原理的超微液体体积测量系统

Jintao Wang, Xiang Liu, Jingyue Zhang, Lin Tong, Long Zhang
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引用次数: 1

摘要

为了克服蒸发量对重量法影响较大的缺点,满足在线测量的要求,提出了一种非重量法测量微液体体积的方法。根据法拉第定律和卡尔费歇尔电化学原理,研究了卡尔费歇尔电位滴定法(KFCT法)的微液体积测量方法,该方法通过测量电解过程中消耗的电量来计算微水的含量,结合液体密度得到微液体积。由于压力变化,修正量用于微液体体积的计算。与重力法相比,设计了非重力法的实验系统。实验表明,KFCT法测得的结果与重量法测得的结果吻合较好,符合ISO 8655的技术要求,但KFCT法测得的结果略高。与重量法相比,非重量法为微液体体积测量提供了更好的解决方案,对测量环境的要求较低,更容易实现在线校准,有效降低了液体蒸发的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultra micro liquid volume measurement system based on potentiometrie titration principle
In order to overcome the shortcoming that influences of evaporation capacity on the gravimetric method, and meet the requirement of online measurement, a non-gravimetric method is introduced for measuring micro liquid volume. According to Faraday's law and Karl Fischer electrochemical principle, the Karl Fischer potentiometric titration method (KFCT method) is also investigated for micro liquid volume measurement, which calculates micro water content by measuring consumed electric quantity in electrolytic process, and obtains the micro liquid volume by combining liquid density. Due to pressure variation the correction is used for micro liquid volume calculation. Comparing with gravimetric method, experimental systems for non-gravimetric method is designed. The experiment indicated that the test result obtained by using KFCT method is in good agreement with that the test result obtained by using gravimetric method, and meets the technical requirements of ISO 8655, but the measured result of KFCT method is slightly higher. Comparing with gravimetric method, the non-gravimetric method provides a better solution for micro liquid volume measurement, which has lower requirements on the measurement environment, is easier to implement on-line calibration, and effectively reduce the impact of the liquid evaporation.
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