氧传感器
氧气
饱和(图论)
分析化学(期刊)
阴极
检出限
安培法
氧饱和度
氧气最小区
化学
极限氧浓度
电化学
环境化学
电极
色谱法
组合数学
物理化学
有机化学
数学
作者
Niels Peter Revsbech,Lars Hauer Larsen,Jens K. Gundersen,Tage Dalsgaard,Osvaldo Ulloa,Bo Thamdrup
标识
DOI:10.4319/lom.2009.7.371
摘要
The methods used until now have not been able to reliably resolve O 2 concentrations in oceanic oxygen minimum zones below 1–2 µmol L −1 . We present a new amperometric sensor for the determination of ultra‐low O 2 concentrations under in situ conditions. The electrochemical STOX O 2 sensor contains a primary sensing cathode and a secondary cathode that, when polarized, prevents entry of O 2 into the sensor. This arrangement enables frequent in situ zero calibration and confers the sensor with a detection limit of 1‐10 nmol L −1 O 2 , even during application on a Conductivity‐Temperature‐Depth (CTD) profiler at great water depths. The sensor was used during the Galathea 3 Expedition to demonstrate that the core of the oxygen minimum zone (OMZ) off Peru contained < 2 nM O 2 . Application in a reactor on board demonstrated that changes in O 2 concentrations in OMZ water containing < 200 nmol L −1 O 2 could be monitored over periods of hours to days. The linear decrease in O 2 concentration in the reactor indicated very low (< 20 nmol L −1 ) half saturation constants for the O 2 respiring microbial community.
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