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An evaluation of potentiometric pH sensors in coastal monitoring applications

机译:沿海监测应用中电位型pH传感器的评价

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A wealth of historical coastal water pH data has been collected using potentiometric glass electrodes, but the accuracy and stability of these sensors is poorly understood. Here we compared pH measurements from five potentiometric sensors incorporated into profiling Sea-Bird instrument packages and compared them to spectrophotometric measurements on discrete bottle samples collected at two to three depths associated with each cast. Differences ranged from 20.509 to 10.479 with a mean difference of 20.055 pH units. Ninety-two percent of the measurements were within60.2 pH units, but 1% of the measurements had differences greater than 0.322. Sensor performance was affected by depth, but most of the difference was associated with calibration shortcomings. Sensor drift within a day was negligible; moreover, differences between bottle samples and electrode measurements within a sampling day were smaller than differences across days. Bootstrap analysis indicated that conducting a daily in situ calibration would reduce the mean difference to 0.002 pH units and increase the number of samples within a 0.2 pH unit error to 98%.
机译:使用电位玻璃电极收集了丰富的历史沿海水pH数据,但这些传感器的准确性和稳定性明白很差。在这里,我们将pH测量与包含在分析海鸟盒包装中的五个电位传感器进行比较,并将它们与分光光度测量与与每个铸件相关的离散瓶样品进行分光光度测量。差异范围从20.509到10.479范围,平均差异为20.055个pH单位。 92%的测量在60.2的pH间单位内,但1%的测量有大于0.322的差异。传感器性能受到深度的影响,但大多数差异与校准缺点有关。在一天内传感器漂移可忽略不计;此外,瓶子样品和采样日内的电极测量之间的差异小于天数的差异。 Bootstrap分析表明,每日校准校准将使平均差异降低到0.002 pH单位,并将0.2 pH单位误差内的样品数量增加到98%。

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