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 (51)Preflabel
AFE56SDTEnrichment standard deviation of total iron-56 {total_56Fe CAS 14093-02-8} {delta(56)Fe} in the atmosphere [aerosol phase] by filtration, acid digestion and inductively-coupled plasma mass spectrometry
AFE56TOTEnrichment of total iron-56 {total_56Fe CAS 14093-02-8} {delta(56)Fe} in the atmosphere [aerosol phase] by filtration, acid digestion and inductively-coupled plasma mass spectrometry
AFE57SDTEnrichment standard deviation of total iron-57 {total_57Fe} {delta(57)Fe} in the atmosphere [aerosol phase] by filtration, acid digestion and inductively-coupled plasma mass spectrometry
AFE57TOTEnrichment of total iron-57 {total_57Fe} {delta(57)Fe} in the atmosphere [aerosol phase] by filtration, acid digestion and inductively-coupled plasma mass spectrometry
ARTH02MSActivity ratio of thorium-232/thorium-230 {232Th/230Th} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration, acidification and inductively-coupled plasma mass spectrometry
ARTH02SDActivity ratio standard error of thorium-232/thorium-230 {232Th/230Th} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration, acidification and inductively-coupled plasma mass spectrometry
ARTHTTMSActivity ratio of thorium-232/thorium-230 {232Th/230Th} in the water body [dissolved plus reactive particulate phase] by acidification and inductively-coupled plasma mass spectrometry
ARTHTTSDActivity ratio standard error of thorium-232/thorium-230 {232Th/230Th} in the water body [dissolved plus reactive particulate phase] by acidification and inductively-coupled plasma mass spectrometry
ATFE56S1Enrichment of soluble iron-56 {soluble_56Fe CAS 14093-02-8} {delta(56)Fe} in the atmosphere [aerosol phase] by filtration, leaching with pH 4.7 ammonium acetate buffer and inductively-coupled plasma mass spectrometry
ATFE56SDEnrichment standard deviation of soluble iron-56 {soluble_56Fe CAS 14093-02-8} {delta(56)Fe} in the atmosphere [aerosol phase] by filtration, leaching with pH 4.7 ammonium acetate buffer and inductively-coupled plasma mass spectrometry
ATFE57S1Enrichment of soluble iron-57 {soluble_57Fe} {delta(57)Fe} in the atmosphere [aerosol phase] by filtration, leaching with pH 4.7 ammonium acetate buffer and inductively-coupled plasma mass spectrometry
ATFE57SDEnrichment standard deviation of soluble iron-57 {soluble_57Fe} {delta(57)Fe} in the atmosphere [aerosol phase] by filtration, leaching with pH 4.7 ammonium acetate buffer and inductively-coupled plasma mass spectrometry
CDENRICPEnrichment with respect to 114Cd/110Cd in NIST SRM 3108 of cadmium-114 {114Cd CAS 14041-58-8} {epsilon(114)Cd} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration and inductively-coupled plasma mass spectrometry
CDENRICQEnrichment with respect to 114Cd/110Cd in NIST SRM 3108 uncertainty of cadmium-114 {114Cd CAS 14041-58-8} {epsilon(114)Cd} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration and inductively-coupled plasma mass spectrometry
CDESDICPEnrichment with respect to 114Cd/110Cd in NIST SRM 3108 standard deviation of cadmium-114 {114Cd CAS 14041-58-8} {epsilon(114)Cd} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration and inductively-coupled plasma mass spectrometry
CDESEICPEnrichment with respect to 114Cd/110Cd in NIST SRM 3108 standard error of cadmium-114 {114Cd CAS 14041-58-8} {epsilon(114)Cd} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration and inductively-coupled plasma mass spectrometry
D30SIMS1Enrichment of silicon-30 {30Si} {delta(30)Si} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration, acidification, pre-concentration, ion-exchange chromatography and inductively-coupled plasma mass spectrometry
D30SIMS2Enrichment of silicon-30 {30Si} {delta(30)Si} in the water body [dissolved plus reactive particulate <0.4/0.45um phase] by filtration, acidification, pre-concentration, ion-exchange chromatography and inductively-coupled plasma mass spectrometry
DTENRICPEnrichment with respect to 114Cd/110Cd in NIST SRM 3108 of cadmium-114 {114Cd CAS 14041-58-8} {delta(114)Cd} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration and inductively-coupled plasma mass spectrometry and using the delta notation
DTENRICQEnrichment with respect to 114Cd/110Cd in NIST SRM 3108 uncertainty of cadmium-114 {114Cd CAS 14041-58-8} {delta(114)Cd} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration and inductively-coupled plasma mass spectrometry and using the delta notation
DTESDICPEnrichment with respect to 114Cd/110Cd in NIST SRM 3108 standard deviation of cadmium-114 {114Cd CAS 14041-58-8} {delta(114)Cd} in the water body [dissolved plus reactive particulate <0.2um phase] by filtration and inductively-coupled plasma mass spectrometry and using the delta notation
ED30SBSIEnrichment standard deviation of silicon-30 in biogenic silica {30Si_in_BSi} {delta(30)Si} in the water body [particulate >0.4/0.45um phase] by filtration and inductively-coupled plasma mass spectrometry
ED30SSLCEnrichment standard deviation of silicon-30 in silicate {30Si_in_SiO44-} {delta(30)Si} in the water body [dissolved plus reactive particulate <0.4/0.45um phase] by filtration and inductively-coupled plasma mass spectrometry
EFE56P01Enrichment with respect to 56Fe/54Fe in IRMM-14 of iron-56 {56Fe CAS 14093-02-8} {delta(56)Fe} in the water body [particulate >0.4/0.45um phase] by filtration and inductively-coupled plasma mass spectrometry