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首页> 外文期刊>Journal of Environmental Quality >Dissolved Oxygen Measurements in Aquatic Environments: The Effects of Changing Temperature and Pressure on Three Sensor Technologies
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Dissolved Oxygen Measurements in Aquatic Environments: The Effects of Changing Temperature and Pressure on Three Sensor Technologies

机译:水生环境中的溶解氧测量:温度和压力变化对三种传感器技术的影响

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摘要

Dissolved oxygen (DO) is probably the most important parameter related to water quality and biological habitat in aquatic environments. In situ DO sensors are some of the most valuable tools used by scientists and engineers for the evaluation of water quality in aquatic ecosystems. Presently, we cannot accurately measure DO concentrations under variable temperature and pressure conditions. Pressure and temperature influence polarographic and optical type DO sensors compared to the standard Winkler titration method. This study combines laboratory and field experiments to compare and quantify the accuracy and performance of commercially available macro and micro Clark-type oxygen sensors as well as optical sensing technology to the Winkler method under changing pressure and temperature conditions. Field measurements at various lake depths revealed sensor response time up to 11 min due to changes in water temperature, pressure, and DO concentration. Investigators should account for transient response in DO sensors before measurements are collected at a given location. We have developed an effective model to predict the transient response time for Clark-type oxygen sensors. The proposed procedure increases the accuracy of DO data collected in situ for profiling applications.
机译:溶解氧(DO)可能是与水生环境中水质和生物栖息地有关的最重要参数。 原位DO传感器是一些使用的最有价值的工具。 > 由科学家和工程师评估水生生态系统中的水质 。当前,我们无法在可变的温度和压力条件下准确测量 DO浓度。与标准相比,压力和温度影响极谱和光学 型DO传感器。 Winkler滴定法。 该研究结合了实验室和现场实验,比较了 并量化了市售 宏和微型Clark型氧气的准确性和性能。传感器和光学 技术在变化的压力 和温度条件下应用于Winkler方法。在不同的湖泊 深度处进行的现场测量表明,由于水温,压力和DO浓度的变化,传感器响应时间长达11分钟。研究人员 应该在溶解氧(DO)传感器在给定位置收集测量值 之前考虑瞬态响应。我们已经开发了有效的 模型来预测Clark型 氧气传感器的瞬态响应时间。拟议的程序提高了为剖析应用程序现场采集的DO数据的准确性

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  • 来源
    《Journal of Environmental Quality》 |2009年第4期|1766-1774|共9页
  • 作者

    Corey D. Markfort; Miki Hondzo;

  • 作者单位

    St. Anthony Falls Lab., Dep. of Civil Engineering, Univ. of Minnesota-Twin Cities, Minneapolis, MN;

    St. Anthony Falls Lab., Dep. of Civil Engineering, Univ. of Minnesota-Twin Cities, Minneapolis, MN;

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