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A novel electrochemical calibration setup for oxygen sensors and its use for the stability assessment of Aanderaa optodes

机译:氧传感器的新型电化学校准装置及其在Aanderaa光电二极管稳定性评估中的应用

摘要

We present a laboratory calibration setup for the individual multi-point calibration of oxygen sensors. It is based on the electrochemical generation of oxygen in an electrolytic carrier solution. Under thorough control of the conditions, i.e., temperature, carrier solution flow rate, and electrolytic current, the amount of oxygen is strictly given by Faraday's laws and can be controlled to within ± 0.5 μmol L–1 (2 SD). Whereas Winkler samples can be taken for referencing with a reproducibility between triplicates of 0.8 μmol L–1 (2 SD), the calibration setup can provide a Winkler-free way of referencing with an accuracy of ± 1.2 μmol L–1 (2 SD). Thus calibrated oxygen optodes have been deployed in the Southern Ocean and the Eastern Tropical Atlantic both in profiling and underway mode and confirm the validity of the laboratory calibrations to within few μmol L–1. In two cases, the optodes drifted between deployments, which was easily identified using the calibration setup. The electrochemical calibration setup may thus facilitate accurate oxygen measurements on a large scale, and its small size makes it possible to configure as a mobile, sea-going, Winkler-free system for oxygen sensor calibrations.
机译:我们为氧气传感器的单个多点校准提供了一个实验室校准设置。它基于电解载体溶液中氧气的电化学生成。在温度,载流子溶液流速和电解电流等条件的严格控制下,氧的含量严格按照法拉第定律给出,可以控制在±0.5μmolL-1(2 SD)范围内。可以采集Winkler样品进行参考,重复性为0.8μmolL–1(2 SD)一式三份,而校准设置可以提供无Winkler的参考方法,精度为±1.2μmolL–1(2 SD)。 。因此,已校准的氧光电二极管已在分析和进行模式下部署在南部海洋和东部热带大西洋,并确认了实验室校准在几微摩尔L-1以内的有效性。在两种情况下,光二极管在部署之间漂移,这可以使用校准设置轻松识别。电化学校准装置因此可以促进大规模的精确的氧气测量,并且其小尺寸使得可以配置为用于氧传感器校准的移动的,无海上航行的,没有Winkler的系统。

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