Despite its huge ecological importance, microbial oxygen respiration in pelagic waters is little studied, primarily due to methodological difficulties. Respiration measurements are challenging because of the required high resolution of oxygen concentration measurements. Recent improvements in oxygen sensing techniques bear great potential to overcome these limitations. Here we compare 3 different methods to measure oxygen consumption rates at low oxygen concentrations, utilizing amperometric Clark type sensors (STOX), optical sensors (optodes), and mass spectrometry in combination with 18-18O2 labeling. Oxygen concentrations and consumption rates agreed well between the different methods when applied in the same experimental setting. Oxygen...
Elements involved in biogeochemical cycles undergo rapid turnover at the oxic-anoxic interface of st...
Recently, measurements of oxygen concentration in the ocean—one of the most classical parameters in ...
[1] Apparent Oxygen Utilization (AOU) is widely used to infer respiration in the oceans by assuming ...
Despite its huge ecological importance, microbial oxygen respiration in pelagic waters is little stu...
Despite its huge ecological importance, microbial oxygen respiration in pelagic waters is little stu...
Oxygen respiration rates in pelagic environments are often difficult to quantify as the resolutions ...
Oxygen respiration rates in pelagic environments are often difficult to quantify as the resolutions ...
AbstractHighly sensitive STOX O2 sensors were used for determination of in situ O2 distribution in t...
Studies of the impact of hypoxic or anoxic environments on both climate and ecosystems rely on a det...
The oxygen concentration in the ocean is controlled by a delicate balance between the source from at...
© The Author(s), 2019. This article is distributed under the terms of the Creative Commons Attributi...
We describe two applications of a recently introduced system for very precise, continuous measuremen...
Ocean warming has a severe impact on oxygen distribution because it reduces oxygen solubility and in...
The formation of oxygen minimum zones (OMZ) in the ocean causes extensive changes of biogeochemical ...
Apparent Oxygen Utilization (AOU) is widely used to infer respiration in the oceans by assuming that...
Elements involved in biogeochemical cycles undergo rapid turnover at the oxic-anoxic interface of st...
Recently, measurements of oxygen concentration in the ocean—one of the most classical parameters in ...
[1] Apparent Oxygen Utilization (AOU) is widely used to infer respiration in the oceans by assuming ...
Despite its huge ecological importance, microbial oxygen respiration in pelagic waters is little stu...
Despite its huge ecological importance, microbial oxygen respiration in pelagic waters is little stu...
Oxygen respiration rates in pelagic environments are often difficult to quantify as the resolutions ...
Oxygen respiration rates in pelagic environments are often difficult to quantify as the resolutions ...
AbstractHighly sensitive STOX O2 sensors were used for determination of in situ O2 distribution in t...
Studies of the impact of hypoxic or anoxic environments on both climate and ecosystems rely on a det...
The oxygen concentration in the ocean is controlled by a delicate balance between the source from at...
© The Author(s), 2019. This article is distributed under the terms of the Creative Commons Attributi...
We describe two applications of a recently introduced system for very precise, continuous measuremen...
Ocean warming has a severe impact on oxygen distribution because it reduces oxygen solubility and in...
The formation of oxygen minimum zones (OMZ) in the ocean causes extensive changes of biogeochemical ...
Apparent Oxygen Utilization (AOU) is widely used to infer respiration in the oceans by assuming that...
Elements involved in biogeochemical cycles undergo rapid turnover at the oxic-anoxic interface of st...
Recently, measurements of oxygen concentration in the ocean—one of the most classical parameters in ...
[1] Apparent Oxygen Utilization (AOU) is widely used to infer respiration in the oceans by assuming ...