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 (3051)Preflabel
FE2FIC09Concentration of ferrous ion {Fe2+ divalent iron CAS 15438-31-0} per unit volume of the water body [dissolved plus reactive particulate <0.2um phase] by filtration and flow-injection chemiluminescence
FE2FICSDConcentration standard deviation of ferrous ion {Fe2+ divalent iron CAS 15438-31-0} per unit volume of the water body [dissolved plus reactive particulate <0.2um phase] by filtration and flow-injection chemiluminescence
FECNAAP2Concentration of total iron {total_Fe CAS 7439-89-6} per unit dry weight of suspended particulate material >0.4/0.45um by filtration and atomic absorption spectroscopy
FEFICLDAConcentration of total iron {total_Fe CAS 7439-89-6} per unit volume of the water body [dissolved plus reactive particulate <10**6 Dalton phase] by filtration and flow-injection chemiluminescence
FELSCVD5Log ligand binding strength of iron-complexing organic ligands {Fe_org_ligands} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration and cathodic stripping voltammetry
FELSCVDNLog ligand binding strength of iron-complexing organic ligands {Fe_org_ligands} in the water body [dissolved plus reactive particulate <10**6 Dalton phase] by filtration and cathodic stripping voltammetry
FELSCVE6Log ligand binding strength standard error of iron-complexing organic ligands {Fe_org_ligands} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration and cathodic stripping voltammetry
FENHEMS1Concentration of ferrioxamine E {hydroxamate siderophore CAS 20008-20-2} per unit volume of the water body [dissolved plus reactive particulate <0.2um phase] by filtration and high performance liquid chromatography - inductively coupled plasma mass spectrometry
FENHESD1Concentration standard deviation of ferrioxamine E {hydroxamate siderophore CAS 20008-20-2} per unit volume of the water body [dissolved plus reactive particulate <0.2um phase] by filtration and high performance liquid chromatography - inductively coupled plasma mass spectrometry
FENHGMS1Concentration of ferrioxamine G per unit volume of the water body [dissolved plus reactive particulate <0.2um phase] by filtration and high performance liquid chromatography - inductively coupled plasma mass spectrometry
FENHGSD1Concentration standard deviation of ferrioxamine G per unit volume of the water body [dissolved plus reactive particulate <0.2um phase] by filtration and high performance liquid chromatography - inductively coupled plasma mass spectrometry
FESDCLDAConcentration standard deviation of total iron {total_Fe CAS 7439-89-6} per unit volume of the water body [dissolved plus reactive particulate <10**6 Dalton phase] by filtration and flow-injection chemiluminescence
FETOTAADConcentration of total iron {total_Fe CAS 7439-89-6} per unit volume of the water body [dissolved plus reactive particulate <0.4/0.45um phase] by filtration and Ferrozine 560nm colorimetric autoanalysis
FETOTNA1Concentration of total iron {total_Fe CAS 7439-89-6} per unit volume of the atmosphere [aerosol phase] by filtration and neutron activation analysis
FETSDNA1Concentration standard deviation of total iron {total_Fe CAS 7439-89-6} per unit volume of the atmosphere [aerosol phase] by filtration and neutron activation analysis
HF176CHUEnrichment with respect to 176Hf/177Hf in the CHondritic Uniform Reservoir (CHUR) of hafnium-176 {176Hf CAS 14452-48-3} {epsilon(176/177)Hf} in the water body [dissolved plus reactive particulate <0.4/0.45um phase] by filtration and inductively-coupled plasma mass spectrometry
HF176SECEnrichment with respect to 176Hf/177Hf in the CHondritic Uniform Reservoir (CHUR) standard error of hafnium-176 {176Hf CAS 14452-48-3} {epsilon(176/177)Hf} in the water body [dissolved plus reactive particulate <0.4/0.45um phase] by filtration and inductively-coupled plasma mass spectrometry
HGRXAAD1Concentration of reactive mercury {reactive_Hg CAS 7439-97-6} per unit volume of the water body [dissolved plus reactive particulate <GF/F phase] by filtration and atomic absorption spectroscopy
HGXXCFD2Concentration of total mercury {total_Hg CAS 7439-97-6} per unit volume of the water body [dissolved plus reactive particulate <0.4/0.45um phase] by filtration and cold vapour atomic absorption spectroscopy
HPVOLDCLConcentration of hydrogen peroxide {H2O2 CAS 7722-84-1} per unit volume of the water body [dissolved plus reactive particulate <0.2um phase] by filtration and flow-injection chemiluminescence
ICCNCNP2Concentration of inorganic carbon {inorganic_C CAS 7440-44-0} per unit dry weight of suspended particulate material >0.4/0.45um by filtration and elemental analysis and differencing results from acidified and unacidified samples
LGCOCVDXConcentration of cobalt-complexing organic ligands {Co_org_ligands} per unit volume of the water body [dissolved plus reactive particulate <0.2um phase] by filtration and cathodic stripping voltammetry
LGFECVD5Concentration of iron-complexing organic ligands {Fe_org_ligands} per unit volume of the water body [dissolved plus reactive particulate <0.2um phase] by filtration and cathodic stripping voltammetry
LGFECVDNConcentration of iron-complexing organic ligands {Fe_org_ligands} per unit volume of the water body [dissolved plus reactive particulate <10**6 Dalton phase] by filtration and cathodic stripping voltammetry