Methodological aspects of pH and EC measurements in geothermal water

Pub Date : 2019-12-01 DOI:10.2478/bgeo-2019-0013
E. Kmiecik, Katarzyna Wątor, B. Tomaszewska, Klaudia Sekuła, Anna M. Mika
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引用次数: 5

Abstract

Abstract A proper methodology for collecting samples of geothermal water makes it possible not only to determine the hydrochemical characteristics of the water, but also to assess its temporal and spatial variability. The knowledge about the concentration of selected elements as well as the values of field measurements can help to indicate their impact on other environments and the processes that occur in a geothermal system. An important issue is the quality of the results obtained from in-situ measurements of unstable parameters, i.a. pH and electrical conductivity (EC). The results of measurements presented in the paper were completed with the use of three different devices in hot and cooled raw geothermal water (field test). The research was performed during two seasons of increased (winter) and lower (summer) exploitation of geothermal water. The percentage difference between EC at temperatures of 22°C and 75°C was 3.27%; however, for the pH the observed percentage difference was only 0.26%. An additional experiment was carried out on a laboratory scale to indicate the influence of temperature changes on pH and EC measurements.
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地热水中pH和EC测量的方法学方面
采用合适的地热水采集方法,不仅可以确定地热水的水化学特征,而且可以评估地热水的时空变异。有关选定元素浓度的知识以及实地测量值可以帮助表明它们对其他环境的影响以及地热系统中发生的过程。一个重要的问题是不稳定参数(如pH和电导率)的原位测量结果的质量。本文给出的测量结果是用三种不同的装置在热的和冷的原地热水(现场试验)中完成的。研究是在地热水开采量增加(冬季)和减少(夏季)两个季节进行的。温度为22℃和75℃时EC的百分比差为3.27%;然而,对于pH,观察到的百分比差异仅为0.26%。在实验室规模上进行了另一项实验,以表明温度变化对pH和EC测量的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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