{"@context":{"ns0":"http://opendata.inra.fr/resources/BIORAF#","rdf":"http://www.w3.org/1999/02/22-rdf-syntax-ns#","owl":"http://www.w3.org/2002/07/owl#","skos":"http://www.w3.org/2004/02/skos/core#","rdfs":"http://www.w3.org/2000/01/rdf-schema#","ns1":"http://opendata.inra.fr/resources/core#","metadata_def":"http://data.bioontology.org/metadata/def/","metadata":"http://data.bioontology.org/metadata/"},"@graph":[{"@id":"ns0:biomass_characteristic_relation","@type":["owl:Class","skos:Concept","owl:NamedIndividual"],"rdfs:subClassOf":{"@id":"ns1:Relation"},"skos:prefLabel":[{"@language":"fr","@value":"Charactéristiques de la biomasse"},{"@language":"en","@value":"Biomass Characteristic relation"}],"skos:scopeNote":[{"@language":"en","@value":"When the biomass doesn’t have starch, we consider that the cellulose percentage equals to the glucose percentage and that the hemicellulose percentage equals to the sum of xylose and arabinose percentage (and potential other sugars like mannose, galactose, etc.). Furthermore, we consider that the glucose rate equals to glucan rate divided by 0.9. "},{"@language":"fr","@value":"Quand la biomasse ne possède pas d’amidon, on considère que le pourcentage de cellulose est égal au pourcentage de glucose et que le pourcentage d’hémicellulose est égal à la somme du taux de xylose et du taux d’arabinose. De plus, on considère que le taux de glucose est égal au taux de glucane divisé par 0.9. "},{"@language":"en","@value":" This relation should not be selected in the annotating process since it should not appear in any annotated table. When you want biomass characteristic relation to appear, select « Biomass glucose composition relation » and/or « Biomass crystallinity relation » and/or « biomass porosity relation » and/or « biomass humidity rate relation » and/or « biomass specific surface relation »."},{"@language":"fr","@value":" Cette relation ne doit pas être sélectionnée dans le processus d'annotation des articles, car elle ne doit figurer en tant que telle dans aucun tableau. Si vous souhaitez renseigner des informations concernant les caractéristiques de la biomasse dans un tableau d'annotation, choisissez « Composition en glucose de la biomasse » et/ou « Cristallinité de la biomasse » et/ou « Porosité de la biomasse » et/ou « Taux d'humidité de la biomasse » et/ou « Surface spécifique de la biomasse »."}],"metadata:def/mappingLoom":"charactristiquesdelabiomasse","metadata:def/mappingSameURI":{"@id":"ns0:biomass_characteristic_relation"},"metadata:prefixIRI":"onto:biomass_characteristic_relation"},{"@id":"ns0:biomass_aeration_ratio","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_air_permeability","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_alpha_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_angle_of_internal_friction","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_apparent_density_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_area_elongation_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_ash_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_basic_flowability_energy","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_beta_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_bulk_density_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_cellulose_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_cohesion","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_compressibility_index_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_contact_angle_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_crystallinity_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_flow_function","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_glucose_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_hemicellulose_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_humidity_rate_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_lignin_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_mean_particle_circularity_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_mean_particle_convexity_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_mean_particle_elongation_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_number_d10_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_number_d50_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_number_d90_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_number_elongation_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_polyphenol_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_porosity_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_protein_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_span_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_specific_basic_flowability_energy","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_specific_energy","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_specific_surface_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_stability_index","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_volume_d10_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_volume_d50_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_volume_d90_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_volumetric_compressibility_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_water_content_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_xylose_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}}]}
{"@context":{"ns0":"http://opendata.inra.fr/resources/BIORAF#","rdf":"http://www.w3.org/1999/02/22-rdf-syntax-ns#","owl":"http://www.w3.org/2002/07/owl#","skos":"http://www.w3.org/2004/02/skos/core#","rdfs":"http://www.w3.org/2000/01/rdf-schema#","ns1":"http://opendata.inra.fr/resources/core#","metadata_def":"http://data.bioontology.org/metadata/def/","metadata":"http://data.bioontology.org/metadata/"},"@graph":[{"@id":"ns0:biomass_characteristic_relation","@type":["owl:Class","skos:Concept","owl:NamedIndividual"],"rdfs:subClassOf":{"@id":"ns1:Relation"},"skos:prefLabel":[{"@language":"fr","@value":"Charactéristiques de la biomasse"},{"@language":"en","@value":"Biomass Characteristic relation"}],"skos:scopeNote":[{"@language":"en","@value":"When the biomass doesn’t have starch, we consider that the cellulose percentage equals to the glucose percentage and that the hemicellulose percentage equals to the sum of xylose and arabinose percentage (and potential other sugars like mannose, galactose, etc.). Furthermore, we consider that the glucose rate equals to glucan rate divided by 0.9. "},{"@language":"fr","@value":"Quand la biomasse ne possède pas d’amidon, on considère que le pourcentage de cellulose est égal au pourcentage de glucose et que le pourcentage d’hémicellulose est égal à la somme du taux de xylose et du taux d’arabinose. De plus, on considère que le taux de glucose est égal au taux de glucane divisé par 0.9. "},{"@language":"en","@value":" This relation should not be selected in the annotating process since it should not appear in any annotated table. When you want biomass characteristic relation to appear, select « Biomass glucose composition relation » and/or « Biomass crystallinity relation » and/or « biomass porosity relation » and/or « biomass humidity rate relation » and/or « biomass specific surface relation »."},{"@language":"fr","@value":" Cette relation ne doit pas être sélectionnée dans le processus d'annotation des articles, car elle ne doit figurer en tant que telle dans aucun tableau. Si vous souhaitez renseigner des informations concernant les caractéristiques de la biomasse dans un tableau d'annotation, choisissez « Composition en glucose de la biomasse » et/ou « Cristallinité de la biomasse » et/ou « Porosité de la biomasse » et/ou « Taux d'humidité de la biomasse » et/ou « Surface spécifique de la biomasse »."}],"metadata:def/mappingLoom":"charactristiquesdelabiomasse","metadata:def/mappingSameURI":{"@id":"ns0:biomass_characteristic_relation"},"metadata:prefixIRI":"onto:biomass_characteristic_relation"},{"@id":"ns0:biomass_aeration_ratio","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_air_permeability","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_alpha_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_angle_of_internal_friction","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_apparent_density_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_area_elongation_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_ash_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_basic_flowability_energy","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_beta_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_bulk_density_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_cellulose_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_cohesion","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_compressibility_index_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_contact_angle_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_crystallinity_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_flow_function","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_glucose_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_hemicellulose_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_humidity_rate_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_lignin_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_mean_particle_circularity_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_mean_particle_convexity_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_mean_particle_elongation_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_number_d10_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_number_d50_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_number_d90_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_number_elongation_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_polyphenol_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_porosity_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_protein_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_span_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_specific_basic_flowability_energy","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_specific_energy","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_specific_surface_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_stability_index","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_volume_d10_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_volume_d50_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_volume_d90_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_volumetric_compressibility_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_water_content_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}},{"@id":"ns0:biomass_xylose_composition_relation","rdfs:subClassOf":{"@id":"ns0:biomass_characteristic_relation"}}]}