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用于自主海水测量的比色微流控 pH 传感器的研制。

Development of a colorimetric microfluidic pH sensor for autonomous seawater measurements.

机构信息

University of Southampton, National Oceanography Centre, Southampton, Southampton, UK.

出版信息

Anal Chim Acta. 2013 Jul 5;786:124-31. doi: 10.1016/j.aca.2013.05.008. Epub 2013 May 15.

Abstract

High quality carbonate chemistry measurements are required in order to fully understand the dynamics of the oceanic carbonate system. Seawater pH data with good spatial and temporal coverage are particularly critical to apprehend ocean acidification phenomena and their consequences. There is a growing need for autonomous in situ instruments that measure pH on remote platforms. Our aim is to develop an accurate and precise autonomous in situ pH sensor for long term deployment on remote platforms. The widely used spectrophotometric pH technique is capable of the required high-quality measurements. We report a key step towards the miniaturization of a colorimetric pH sensor with the successful implementation of a simple microfluidic design with low reagent consumption. The system is particularly adapted to shipboard deployment: high quality data was obtained over a period of more than a month during a shipboard deployment in northwest European shelf waters, and less than 30 mL of indicator was consumed. The system featured a short term precision of 0.001 pH (n=20) and an accuracy within the range of a certified Tris buffer (0.004 pH). The quality of the pH system measurements have been checked using various approaches: measurements of certified Tris buffer, measurement of certified seawater for DIC and TA, comparison of measured pH against calculated pH from pCO2, DIC and TA during the cruise in northwest European shelf waters. All showed that our measurements were of high quality. The measurements were made close to in situ temperature (+0.2°C) in a sampling chamber which had a continuous flow of the ship's underway seawater supply. The optical set up was robust and relatively small due to the use of an USB mini-spectrometer, a custom made polymeric flow cell and an LED light source. The use of a three wavelength LED with detection that integrated power across the whole of each LED output spectrum indicated that low wavelength resolution detectors can be used instead of the current USB mini spectrophotometer. Artefacts due to the polychromatic light source and inhomogeneity in the absorption cell are shown to have a negligible impact on the data quality. The next step in the miniaturization of the sensor will be the incorporation of a photodiode as detector to replace the spectrophotometer.

摘要

为了充分了解海洋碳酸盐系统的动力学,需要进行高质量的碳酸盐化学测量。具有良好时空覆盖范围的海水 pH 值数据对于理解海洋酸化现象及其后果尤为关键。人们越来越需要能够在远程平台上进行自主原位测量 pH 值的仪器。我们的目标是开发一种准确、精密的自主原位 pH 传感器,用于在远程平台上进行长期部署。广泛使用的分光光度 pH 技术能够进行所需的高质量测量。我们报告了朝着小型化比色 pH 传感器迈出的关键一步,成功实现了低试剂消耗的简单微流控设计。该系统特别适用于船载部署:在西北欧陆架水域的一次船载部署期间,高质量数据的获取时间超过了一个月,并且仅消耗了不到 30 毫升的指示剂。该系统具有 0.001 pH(n=20)的短期精度和在认证 Tris 缓冲液范围内的精度(0.004 pH)。使用各种方法检查了 pH 系统测量的质量:对认证 Tris 缓冲液的测量、对认证海水的 DIC 和 TA 测量、在西北欧陆架水域航行期间,对测量 pH 值与根据 pCO2、DIC 和 TA 计算得出的 pH 值的比较。所有这些都表明,我们的测量结果质量很高。测量是在接近原位温度(+0.2°C)的采样室中进行的,该采样室中具有船舶正在进行的海水供应的连续流动。由于使用了 USB 迷你光谱仪、定制的聚合物流动池和 LED 光源,因此光学设置坚固且相对较小。使用具有检测功能的三波长 LED,该检测功能集成了每个 LED 输出光谱的整个功率,表明可以使用低波长分辨率检测器代替当前的 USB 迷你分光光度计。由于多色光源和吸收池中的不均匀性而产生的伪影被证明对数据质量的影响可以忽略不计。传感器小型化的下一步将是将光电二极管作为检测器并入其中,以取代分光光度计。

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