Pan-European infrastructure for ocean & marine data management

P01 Vocabulary - Facet Search on Semantic Components

P01 Vocabulary - Facet Search on Semantic Components

The P01 Parameter Usage Vocabulary is based on a semantic model. This model uses a defined set of controlled vocabularies (the semantic components). The Facet Search below facilitates you to search for specific existing P01 terms using components for drilling down.

Are you missing specific P01 terms in the vocabulary, then you can compose and submit new terms for review and uptake using the P01 Vocabulary Builder tool.

Conceptid (134)Preflabel
NRSEC00AConsumption rate standard error of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit biomass as carbon of biota {zooplankton [Size: >1000um]} by incubation
NRSEC00BConsumption rate standard error of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit biomass as carbon of biota {zooplankton [Size: 500-1000um]} by incubation
NRSEC00CConsumption rate standard error of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit biomass as carbon of biota {zooplankton [Size: 200-500um]} by incubation
NRSEC00EConsumption rate standard error of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit biomass as carbon of biota {zooplankton [Size: 1000-3000um]} by incubation
NRSPC00AConsumption rate of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit biomass as carbon of biota {zooplankton [Size: >1000um]} by incubation
NRSPC00BConsumption rate of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit biomass as carbon of biota {zooplankton [Size: 500-1000um]} by incubation
NRSPC00CConsumption rate of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit biomass as carbon of biota {zooplankton [Size: 200-500um]} by incubation
NRSPC00EConsumption rate of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit biomass as carbon of biota {zooplankton [Size: 1000-3000um]} by incubation
OXCCCTTZConsumption rate of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit volume of the water body by CTC redox dye technique
OXCCETTZConsumption rate of oxygen {O2 CAS 7782-44-7} {respiration} per day per unit volume of the water body by ETS activity measurement
OXRCPLP5Concentration change rate of oxygen {O2 CAS 7782-44-7} per hour per unit volume of the water body [dissolved plus reactive particulate phase] by incubation at full natural light level
OXRCPVP5Concentration change rate of oxygen {O2 CAS 7782-44-7} per hour per unit volume of the water body [dissolved plus reactive particulate phase] by incubation under ultra-violet light
OXRCPXP5Concentration change rate of oxygen {O2 CAS 7782-44-7} per hour per unit volume of the water body [dissolved plus reactive particulate phase] by incubation in the dark
OXSDSU01Concentration standard deviation of oxygen {O2 CAS 7782-44-7} per unit volume of the water body [dissolved plus reactive particulate phase] by Sea-Bird SBE 43 sensor and no calibration against sample data
OXSDSU02Concentration standard deviation of oxygen {O2 CAS 7782-44-7} per unit volume of the water body [dissolved plus reactive particulate phase] by Sea-Bird SBE 43 sensor (second sensor) and no calibration against sample data
OXYSBB01Saturation of oxygen {O2 CAS 7782-44-7} in the water body [dissolved plus reactive particulate phase] by in-situ Beckmann probe and computation from concentration using Benson and Krause algorithm
OXYSBB02Saturation of oxygen {O2 CAS 7782-44-7} in the water body [dissolved plus reactive particulate phase] by in-situ Beckmann probe (second sensor) and computation from concentration using Benson and Krause algorithm
OXYSBE01Saturation of oxygen {O2 CAS 7782-44-7} in the water body [dissolved plus reactive particulate phase] by in-situ pulsed electrode and computation from concentration using Benson and Krause algorithm
OXYSBW01Saturation of oxygen {O2 CAS 7782-44-7} in the water body [dissolved plus reactive particulate phase] by Winkler titration and computation from concentration using Benson and Krause algorithm
OXYSMETXSaturation of oxygen {O2 CAS 7782-44-7} in the sediment pore water [dissolved plus reactive particulate phase] by in-situ microelectrode and computation from concentration
OXYSMOD1Concentration of oxygen {O2 CAS 7782-44-7} per unit volume of the water body [dissolved plus reactive particulate phase] by model prediction
OXYSOP01Saturation of oxygen {O2 CAS 7782-44-7} in the water body [dissolved plus reactive particulate phase] by in-situ oxygen optode and computation from concentration
OXYSPMODSaturation of oxygen {O2 CAS 7782-44-7} in the sediment pore water [dissolved plus reactive particulate phase] by model prediction
OXYSSC01Saturation of oxygen {O2 CAS 7782-44-7} in the water body [dissolved plus reactive particulate phase] by Sea-Bird SBE 43 sensor and calibration against sample data and computation from concentration using Benson and Krause algorithm
OXYSSE01Saturation of oxygen {O2 CAS 7782-44-7} in the water body [dissolved plus reactive particulate phase] by YSI in-situ oxygen and temperature probe and computation from concentration