Cambios
En el instante 25 de junio de 2026, 12:28:28 UTC,
-
Modificado el valor del campo
modified
a2026-06-25
en Nitrate removal from eutrophic wetlands polluted by metal-mine wastes: Effects of liming and plant growth -
Modificado el valor del campo
modified
del recurso Distribución HTML a2026-06-25
(anteriormente2026-06-23
) en Nitrate removal from eutrophic wetlands polluted by metal-mine wastes: Effects of liming and plant growth
| f | 1 | { | f | 1 | { |
| 2 | "access_rights": | 2 | "access_rights": | ||
| 3 | .europa.eu/metadata-codelist/LimitationsOnPublicAccess/noLimitations", | 3 | .europa.eu/metadata-codelist/LimitationsOnPublicAccess/noLimitations", | ||
| 4 | "alternate_identifier": "DOI: 10.1016/j.jenvman.2013.07.002", | 4 | "alternate_identifier": "DOI: 10.1016/j.jenvman.2013.07.002", | ||
| 5 | "applicable_legislation": [ | 5 | "applicable_legislation": [ | ||
| 6 | "http://data.europa.eu/eli/reg_impl/2023/138/oj" | 6 | "http://data.europa.eu/eli/reg_impl/2023/138/oj" | ||
| 7 | ], | 7 | ], | ||
| 8 | "author": "Gonz\u00e1lez Alcaraz, M.N., Conesa, H.M. y \u00c1lvarez | 8 | "author": "Gonz\u00e1lez Alcaraz, M.N., Conesa, H.M. y \u00c1lvarez | ||
| 9 | Rogel, J.", | 9 | Rogel, J.", | ||
| 10 | "author_email": "nazaret.gonzalez@upct.es", | 10 | "author_email": "nazaret.gonzalez@upct.es", | ||
| 11 | "author_name": "Gonz\u00e1lez Alcaraz, M.N., Conesa, H.M. y | 11 | "author_name": "Gonz\u00e1lez Alcaraz, M.N., Conesa, H.M. y | ||
| 12 | \u00c1lvarez Rogel, J.", | 12 | \u00c1lvarez Rogel, J.", | ||
| 13 | "classification_variables": { | 13 | "classification_variables": { | ||
| 14 | "es": "" | 14 | "es": "" | ||
| 15 | }, | 15 | }, | ||
| 16 | "conforms_to": [ | 16 | "conforms_to": [ | ||
| 17 | "https://www.boe.es/eli/es/res/2013/02/19/(4)" | 17 | "https://www.boe.es/eli/es/res/2013/02/19/(4)" | ||
| 18 | ], | 18 | ], | ||
| 19 | "contact": [ | 19 | "contact": [ | ||
| 20 | { | 20 | { | ||
| 21 | "email": "organismo@example.org", | 21 | "email": "organismo@example.org", | ||
| 22 | "name": "Organismo publicador del Cat\u00e1logo", | 22 | "name": "Organismo publicador del Cat\u00e1logo", | ||
| 23 | "role": | 23 | "role": | ||
| 24 | e.ec.europa.eu/metadata-codelist/ResponsiblePartyRole/pointOfContact", | 24 | e.ec.europa.eu/metadata-codelist/ResponsiblePartyRole/pointOfContact", | ||
| 25 | "uri": | 25 | "uri": | ||
| 26 | "http://datos.gob.es/recurso/sector-publico/org/Organismo/EA0000000", | 26 | "http://datos.gob.es/recurso/sector-publico/org/Organismo/EA0000000", | ||
| 27 | "url": "https://organismo.example.org/" | 27 | "url": "https://organismo.example.org/" | ||
| 28 | } | 28 | } | ||
| 29 | ], | 29 | ], | ||
| 30 | "contact_email": "organismo@example.org", | 30 | "contact_email": "organismo@example.org", | ||
| 31 | "contact_name": "Organismo publicador del Cat\u00e1logo", | 31 | "contact_name": "Organismo publicador del Cat\u00e1logo", | ||
| 32 | "contact_role": | 32 | "contact_role": | ||
| 33 | e.ec.europa.eu/metadata-codelist/ResponsiblePartyRole/pointOfContact", | 33 | e.ec.europa.eu/metadata-codelist/ResponsiblePartyRole/pointOfContact", | ||
| 34 | "contact_uri": | 34 | "contact_uri": | ||
| 35 | "http://datos.gob.es/recurso/sector-publico/org/Organismo/EA0000000", | 35 | "http://datos.gob.es/recurso/sector-publico/org/Organismo/EA0000000", | ||
| 36 | "contact_url": "https://organismo.example.org/", | 36 | "contact_url": "https://organismo.example.org/", | ||
| 37 | "created": "2024-11-05", | 37 | "created": "2024-11-05", | ||
| 38 | "creator": [ | 38 | "creator": [ | ||
| 39 | { | 39 | { | ||
| 40 | "email": "nazaret.gonzalez@upct.es", | 40 | "email": "nazaret.gonzalez@upct.es", | ||
| 41 | "name": "Gonz\u00e1lez Alcaraz, M.N., Conesa, H.M. y | 41 | "name": "Gonz\u00e1lez Alcaraz, M.N., Conesa, H.M. y | ||
| 42 | \u00c1lvarez Rogel, J." | 42 | \u00c1lvarez Rogel, J." | ||
| 43 | } | 43 | } | ||
| 44 | ], | 44 | ], | ||
| 45 | "creator_user_id": "d24a314a-79ce-48c0-abd9-54cb42706da4", | 45 | "creator_user_id": "d24a314a-79ce-48c0-abd9-54cb42706da4", | ||
| 46 | "dataset_scope": "non_spatial_dataset", | 46 | "dataset_scope": "non_spatial_dataset", | ||
| 47 | "dcat_type": "http://id.loc.gov/vocabulary/marcgt/art", | 47 | "dcat_type": "http://id.loc.gov/vocabulary/marcgt/art", | ||
| 48 | "encoding": "UTF-8", | 48 | "encoding": "UTF-8", | ||
| 49 | "featured": false, | 49 | "featured": false, | ||
| 50 | "graphic_overview": | 50 | "graphic_overview": | ||
| 51 | //ars.els-cdn.com/content/image/1-s2.0-S0301479713X00131-cov150h.gif", | 51 | //ars.els-cdn.com/content/image/1-s2.0-S0301479713X00131-cov150h.gif", | ||
| n | 52 | "groups": [], | n | 52 | "groups": [ |
| 53 | { | ||||
| 54 | "description": "Grupo de conjuntos de datos del Mar Menor.", | ||||
| 55 | "display_name": "Mar Menor", | ||||
| 56 | "id": "51cdbdfb-5a8e-46b2-b776-094251cf43d4", | ||||
| 57 | "image_display_url": | ||||
| 58 | %28Isla_Mayor%29_-_Mar_Menor_-_Cartagena%2C_Murcia_-_Espa%C3%B1a.jpg", | ||||
| 59 | "name": "mar_menor", | ||||
| 60 | "title": "Mar Menor" | ||||
| 61 | } | ||||
| 62 | ], | ||||
| 53 | "hvd": "hvd", | 63 | "hvd": "hvd", | ||
| 54 | "hvd_category": [ | 64 | "hvd_category": [ | ||
| 55 | "http://data.europa.eu/bna/c_dd313021" | 65 | "http://data.europa.eu/bna/c_dd313021" | ||
| 56 | ], | 66 | ], | ||
| 57 | "id": "d3e7d502-81bb-576a-81cf-2d8168d64057", | 67 | "id": "d3e7d502-81bb-576a-81cf-2d8168d64057", | ||
| 58 | "identifier": "d3e7d502-81bb-576a-81cf-2d8168d64057", | 68 | "identifier": "d3e7d502-81bb-576a-81cf-2d8168d64057", | ||
| 59 | "isopen": true, | 69 | "isopen": true, | ||
| 60 | "keyword_iepnb": [ | 70 | "keyword_iepnb": [ | ||
| 61 | "contaminacion", | 71 | "contaminacion", | ||
| 62 | "nutrientes", | 72 | "nutrientes", | ||
| 63 | "suelo" | 73 | "suelo" | ||
| 64 | ], | 74 | ], | ||
| 65 | "language": | 75 | "language": | ||
| 66 | "http://publications.europa.eu/resource/authority/language/SPA", | 76 | "http://publications.europa.eu/resource/authority/language/SPA", | ||
| 67 | "license_id": "cc-by", | 77 | "license_id": "cc-by", | ||
| 68 | "license_title": "Creative Commons Attribution", | 78 | "license_title": "Creative Commons Attribution", | ||
| 69 | "license_url": "http://www.opendefinition.org/licenses/cc-by", | 79 | "license_url": "http://www.opendefinition.org/licenses/cc-by", | ||
| 70 | "lineage_source": [ | 80 | "lineage_source": [ | ||
| 71 | "Journal of Environmental Management", | 81 | "Journal of Environmental Management", | ||
| 72 | "vol 128", | 82 | "vol 128", | ||
| 73 | "964-972" | 83 | "964-972" | ||
| 74 | ], | 84 | ], | ||
| 75 | "maintainer": "", | 85 | "maintainer": "", | ||
| 76 | "maintainer_name": "", | 86 | "maintainer_name": "", | ||
| 77 | "metadata_created": "2026-06-23T14:49:10.879114", | 87 | "metadata_created": "2026-06-23T14:49:10.879114", | ||
| n | 78 | "metadata_modified": "2026-06-23T15:58:48.766618", | n | 88 | "metadata_modified": "2026-06-25T12:28:28.111664", |
| 79 | "metadata_profile": [ | 89 | "metadata_profile": [ | ||
| 80 | "https://semiceu.github.io/DCAT-AP/releases/3.0.0/" | 90 | "https://semiceu.github.io/DCAT-AP/releases/3.0.0/" | ||
| 81 | ], | 91 | ], | ||
| 82 | "miteco_data_population": { | 92 | "miteco_data_population": { | ||
| 83 | "es": "" | 93 | "es": "" | ||
| 84 | }, | 94 | }, | ||
| 85 | "miteco_data_territory": { | 95 | "miteco_data_territory": { | ||
| 86 | "es": "" | 96 | "es": "" | ||
| 87 | }, | 97 | }, | ||
| 88 | "miteco_dataset_type": | 98 | "miteco_dataset_type": | ||
| 89 | //publications.europa.eu/resource/authority/dataset-type/STATISTICAL", | 99 | //publications.europa.eu/resource/authority/dataset-type/STATISTICAL", | ||
| 90 | "miteco_geo_level": "1", | 100 | "miteco_geo_level": "1", | ||
| n | 91 | "modified": "2026-06-23", | n | 101 | "modified": "2026-06-25", |
| 92 | "name": "d3e7d502-81bb-576a-81cf-2d8168d64057", | 102 | "name": "d3e7d502-81bb-576a-81cf-2d8168d64057", | ||
| 93 | "notes": "Wetlands are highly effective systems in removing large | 103 | "notes": "Wetlands are highly effective systems in removing large | ||
| 94 | amounts of N from waters, preventing eutro phication processes. | 104 | amounts of N from waters, preventing eutro phication processes. | ||
| 95 | However, when wetlands are polluted by metal-mine wastes their | 105 | However, when wetlands are polluted by metal-mine wastes their | ||
| 96 | capacity to act as green filters may be diminished. The objective of | 106 | capacity to act as green filters may be diminished. The objective of | ||
| 97 | this study was to evaluate the effect of liming and plants | 107 | this study was to evaluate the effect of liming and plants | ||
| 98 | (Sarcocornia fruticosa and Phragmites australis) on the removal of NO3 | 108 | (Sarcocornia fruticosa and Phragmites australis) on the removal of NO3 | ||
| 99 | from eutrophic water in slightly acidic, wetland soils polluted by | 109 | from eutrophic water in slightly acidic, wetland soils polluted by | ||
| 100 | metal-mine wastes. Simulated soil profiles were constructed and six | 110 | metal-mine wastes. Simulated soil profiles were constructed and six | ||
| 101 | treatments were assayed: (1) no liming \u00fe no plant, (2) no liming | 111 | treatments were assayed: (1) no liming \u00fe no plant, (2) no liming | ||
| 102 | \u00fe S. fruticosa, (3) no liming \u00fe P. australis, (4) liming | 112 | \u00fe S. fruticosa, (3) no liming \u00fe P. australis, (4) liming | ||
| 103 | \u00fe no plant, (5) liming \u00fe S. fruticosa and (6) liming \u00fe | 113 | \u00fe no plant, (5) liming \u00fe S. fruticosa and (6) liming \u00fe | ||
| 104 | P. australis. Three horizons were differentiated: A (never under | 114 | P. australis. Three horizons were differentiated: A (never under | ||
| 105 | water), C1 (alternating flooding-drying conditions) and C2 (always | 115 | water), C1 (alternating flooding-drying conditions) and C2 (always | ||
| 106 | under water). The eutrophic water used to flood the soil profiles was | 116 | under water). The eutrophic water used to flood the soil profiles was | ||
| 107 | enriched in N and organic carbon (pH w 7.5, electrical conductivity w | 117 | enriched in N and organic carbon (pH w 7.5, electrical conductivity w | ||
| 108 | 11 dS m 1, NO3 w 234 mg L 1 and dissolved organic carbon w 106 mg L | 118 | 11 dS m 1, NO3 w 234 mg L 1 and dissolved organic carbon w 106 mg L | ||
| 109 | 1). The pH, Eh and concentrations of dissolved organic carbon (DOC), | 119 | 1). The pH, Eh and concentrations of dissolved organic carbon (DOC), | ||
| 110 | NeNO3 and N -NH4 + were measured regularly for 18 weeks. Liming | 120 | NeNO3 and N -NH4 + were measured regularly for 18 weeks. Liming | ||
| 111 | stimulated the growth of plants, especially for S. fruticosa (20-fold | 121 | stimulated the growth of plants, especially for S. fruticosa (20-fold | ||
| 112 | more plant biomass than without liming), increased the soil pH and | 122 | more plant biomass than without liming), increased the soil pH and | ||
| 113 | favoured the decline of the Eh values, enhancing the removal of NO3 | 123 | favoured the decline of the Eh values, enhancing the removal of NO3 | ||
| 114 | via denitrification. Of all the treatments assayed, liming \u00fe S. | 124 | via denitrification. Of all the treatments assayed, liming \u00fe S. | ||
| 115 | fruticosa was the only treatment that removed almost completely the | 125 | fruticosa was the only treatment that removed almost completely the | ||
| 116 | high concentration of NO3 from the eutrophic flooding water, reaching | 126 | high concentration of NO3 from the eutrophic flooding water, reaching | ||
| 117 | w1 mg L 1 NeNO3 at the end of the experiment, at all depths. The | 127 | w1 mg L 1 NeNO3 at the end of the experiment, at all depths. The | ||
| 118 | higher content of DOC in the pore water of this treatment could | 128 | higher content of DOC in the pore water of this treatment could | ||
| 119 | explain this behaviour, since more labile carbon was available to the | 129 | explain this behaviour, since more labile carbon was available to the | ||
| 120 | soil microorganisms in the rhizosphere, favouring NO3 removal through | 130 | soil microorganisms in the rhizosphere, favouring NO3 removal through | ||
| 121 | denitrification processes. However, the treatment liming \u00fe P. | 131 | denitrification processes. However, the treatment liming \u00fe P. | ||
| 122 | australis (2-fold more plant biomass that without liming) did not | 132 | australis (2-fold more plant biomass that without liming) did not | ||
| 123 | remove completely the high concentrations of NO3 from the eutrophic | 133 | remove completely the high concentrations of NO3 from the eutrophic | ||
| 124 | water, except in the C2 horizon e which was permanently under water. | 134 | water, except in the C2 horizon e which was permanently under water. | ||
| 125 | Hence, our results show that the effectiveness of liming, regarding | 135 | Hence, our results show that the effectiveness of liming, regarding | ||
| 126 | the removal of NO3 from eutrophic flooding water in wetland soils | 136 | the removal of NO3 from eutrophic flooding water in wetland soils | ||
| 127 | polluted by metal-mine wastes, depends on the presence of plants, | 137 | polluted by metal-mine wastes, depends on the presence of plants, | ||
| 128 | their growth and the production of organic compounds in the | 138 | their growth and the production of organic compounds in the | ||
| 129 | rhizospheric environment.", | 139 | rhizospheric environment.", | ||
| 130 | "notes_translated": { | 140 | "notes_translated": { | ||
| 131 | "es": "Wetlands are highly effective systems in removing large | 141 | "es": "Wetlands are highly effective systems in removing large | ||
| 132 | amounts of N from waters, preventing eutro phication processes. | 142 | amounts of N from waters, preventing eutro phication processes. | ||
| 133 | However, when wetlands are polluted by metal-mine wastes their | 143 | However, when wetlands are polluted by metal-mine wastes their | ||
| 134 | capacity to act as green filters may be diminished. The objective of | 144 | capacity to act as green filters may be diminished. The objective of | ||
| 135 | this study was to evaluate the effect of liming and plants | 145 | this study was to evaluate the effect of liming and plants | ||
| 136 | (Sarcocornia fruticosa and Phragmites australis) on the removal of NO3 | 146 | (Sarcocornia fruticosa and Phragmites australis) on the removal of NO3 | ||
| 137 | from eutrophic water in slightly acidic, wetland soils polluted by | 147 | from eutrophic water in slightly acidic, wetland soils polluted by | ||
| 138 | metal-mine wastes. Simulated soil profiles were constructed and six | 148 | metal-mine wastes. Simulated soil profiles were constructed and six | ||
| 139 | treatments were assayed: (1) no liming \u00fe no plant, (2) no liming | 149 | treatments were assayed: (1) no liming \u00fe no plant, (2) no liming | ||
| 140 | \u00fe S. fruticosa, (3) no liming \u00fe P. australis, (4) liming | 150 | \u00fe S. fruticosa, (3) no liming \u00fe P. australis, (4) liming | ||
| 141 | \u00fe no plant, (5) liming \u00fe S. fruticosa and (6) liming \u00fe | 151 | \u00fe no plant, (5) liming \u00fe S. fruticosa and (6) liming \u00fe | ||
| 142 | P. australis. Three horizons were differentiated: A (never under | 152 | P. australis. Three horizons were differentiated: A (never under | ||
| 143 | water), C1 (alternating flooding-drying conditions) and C2 (always | 153 | water), C1 (alternating flooding-drying conditions) and C2 (always | ||
| 144 | under water). The eutrophic water used to flood the soil profiles was | 154 | under water). The eutrophic water used to flood the soil profiles was | ||
| 145 | enriched in N and organic carbon (pH w 7.5, electrical conductivity w | 155 | enriched in N and organic carbon (pH w 7.5, electrical conductivity w | ||
| 146 | 11 dS m 1, NO3 w 234 mg L 1 and dissolved organic carbon w 106 mg L | 156 | 11 dS m 1, NO3 w 234 mg L 1 and dissolved organic carbon w 106 mg L | ||
| 147 | 1). The pH, Eh and concentrations of dissolved organic carbon (DOC), | 157 | 1). The pH, Eh and concentrations of dissolved organic carbon (DOC), | ||
| 148 | NeNO3 and N -NH4 + were measured regularly for 18 weeks. Liming | 158 | NeNO3 and N -NH4 + were measured regularly for 18 weeks. Liming | ||
| 149 | stimulated the growth of plants, especially for S. fruticosa (20-fold | 159 | stimulated the growth of plants, especially for S. fruticosa (20-fold | ||
| 150 | more plant biomass than without liming), increased the soil pH and | 160 | more plant biomass than without liming), increased the soil pH and | ||
| 151 | favoured the decline of the Eh values, enhancing the removal of NO3 | 161 | favoured the decline of the Eh values, enhancing the removal of NO3 | ||
| 152 | via denitrification. Of all the treatments assayed, liming \u00fe S. | 162 | via denitrification. Of all the treatments assayed, liming \u00fe S. | ||
| 153 | fruticosa was the only treatment that removed almost completely the | 163 | fruticosa was the only treatment that removed almost completely the | ||
| 154 | high concentration of NO3 from the eutrophic flooding water, reaching | 164 | high concentration of NO3 from the eutrophic flooding water, reaching | ||
| 155 | w1 mg L 1 NeNO3 at the end of the experiment, at all depths. The | 165 | w1 mg L 1 NeNO3 at the end of the experiment, at all depths. The | ||
| 156 | higher content of DOC in the pore water of this treatment could | 166 | higher content of DOC in the pore water of this treatment could | ||
| 157 | explain this behaviour, since more labile carbon was available to the | 167 | explain this behaviour, since more labile carbon was available to the | ||
| 158 | soil microorganisms in the rhizosphere, favouring NO3 removal through | 168 | soil microorganisms in the rhizosphere, favouring NO3 removal through | ||
| 159 | denitrification processes. However, the treatment liming \u00fe P. | 169 | denitrification processes. However, the treatment liming \u00fe P. | ||
| 160 | australis (2-fold more plant biomass that without liming) did not | 170 | australis (2-fold more plant biomass that without liming) did not | ||
| 161 | remove completely the high concentrations of NO3 from the eutrophic | 171 | remove completely the high concentrations of NO3 from the eutrophic | ||
| 162 | water, except in the C2 horizon e which was permanently under water. | 172 | water, except in the C2 horizon e which was permanently under water. | ||
| 163 | Hence, our results show that the effectiveness of liming, regarding | 173 | Hence, our results show that the effectiveness of liming, regarding | ||
| 164 | the removal of NO3 from eutrophic flooding water in wetland soils | 174 | the removal of NO3 from eutrophic flooding water in wetland soils | ||
| 165 | polluted by metal-mine wastes, depends on the presence of plants, | 175 | polluted by metal-mine wastes, depends on the presence of plants, | ||
| 166 | their growth and the production of organic compounds in the | 176 | their growth and the production of organic compounds in the | ||
| 167 | rhizospheric environment." | 177 | rhizospheric environment." | ||
| 168 | }, | 178 | }, | ||
| 169 | "num_resources": 1, | 179 | "num_resources": 1, | ||
| 170 | "num_tags": 5, | 180 | "num_tags": 5, | ||
| 171 | "organization": { | 181 | "organization": { | ||
| 172 | "approval_status": "approved", | 182 | "approval_status": "approved", | ||
| 173 | "created": "2026-06-23T14:36:08.942021", | 183 | "created": "2026-06-23T14:36:08.942021", | ||
| 174 | "description": "", | 184 | "description": "", | ||
| 175 | "id": "bca483f7-26e2-4ed8-99e8-65f5b3c7a26e", | 185 | "id": "bca483f7-26e2-4ed8-99e8-65f5b3c7a26e", | ||
| 176 | "image_url": "", | 186 | "image_url": "", | ||
| 177 | "is_organization": true, | 187 | "is_organization": true, | ||
| 178 | "name": "iepnb", | 188 | "name": "iepnb", | ||
| 179 | "state": "active", | 189 | "state": "active", | ||
| 180 | "title": "", | 190 | "title": "", | ||
| 181 | "type": "organization" | 191 | "type": "organization" | ||
| 182 | }, | 192 | }, | ||
| 183 | "owner_org": "bca483f7-26e2-4ed8-99e8-65f5b3c7a26e", | 193 | "owner_org": "bca483f7-26e2-4ed8-99e8-65f5b3c7a26e", | ||
| 184 | "private": false, | 194 | "private": false, | ||
| 185 | "provenance": { | 195 | "provenance": { | ||
| 186 | "es": "" | 196 | "es": "" | ||
| 187 | }, | 197 | }, | ||
| 188 | "publisher": [ | 198 | "publisher": [ | ||
| 189 | { | 199 | { | ||
| 190 | "email": "buzon-bdatos@miteco.es", | 200 | "email": "buzon-bdatos@miteco.es", | ||
| 191 | "name": "\u00c1rea de Banco de Datos de la Naturaleza. | 201 | "name": "\u00c1rea de Banco de Datos de la Naturaleza. | ||
| 192 | Direcci\u00f3n General Biodiversidad, Bosques y Desertificaci\u00f3n. | 202 | Direcci\u00f3n General Biodiversidad, Bosques y Desertificaci\u00f3n. | ||
| 193 | Ministerio para la Transici\u00f3n Ecol\u00f3gica y el Reto | 203 | Ministerio para la Transici\u00f3n Ecol\u00f3gica y el Reto | ||
| 194 | Demogr\u00e1fico", | 204 | Demogr\u00e1fico", | ||
| 195 | "type": "http://purl.org/adms/publishertype/NationalAuthority", | 205 | "type": "http://purl.org/adms/publishertype/NationalAuthority", | ||
| 196 | "uri": "https://iepnb.es/catalogo/organization/iepnb", | 206 | "uri": "https://iepnb.es/catalogo/organization/iepnb", | ||
| 197 | "url": "https://www.miteco.gob.es/" | 207 | "url": "https://www.miteco.gob.es/" | ||
| 198 | } | 208 | } | ||
| 199 | ], | 209 | ], | ||
| 200 | "publisher_email": "buzon-bdatos@miteco.es", | 210 | "publisher_email": "buzon-bdatos@miteco.es", | ||
| 201 | "publisher_name": "\u00c1rea de Banco de Datos de la Naturaleza. | 211 | "publisher_name": "\u00c1rea de Banco de Datos de la Naturaleza. | ||
| 202 | Direcci\u00f3n General Biodiversidad, Bosques y Desertificaci\u00f3n. | 212 | Direcci\u00f3n General Biodiversidad, Bosques y Desertificaci\u00f3n. | ||
| 203 | Ministerio para la Transici\u00f3n Ecol\u00f3gica y el Reto | 213 | Ministerio para la Transici\u00f3n Ecol\u00f3gica y el Reto | ||
| 204 | Demogr\u00e1fico", | 214 | Demogr\u00e1fico", | ||
| 205 | "publisher_type": | 215 | "publisher_type": | ||
| 206 | "http://purl.org/adms/publishertype/NationalAuthority", | 216 | "http://purl.org/adms/publishertype/NationalAuthority", | ||
| 207 | "publisher_uri": "https://iepnb.es/catalogo/organization/iepnb", | 217 | "publisher_uri": "https://iepnb.es/catalogo/organization/iepnb", | ||
| 208 | "publisher_url": "https://www.miteco.gob.es/", | 218 | "publisher_url": "https://www.miteco.gob.es/", | ||
| 209 | "purpose": { | 219 | "purpose": { | ||
| 210 | "es": "" | 220 | "es": "" | ||
| 211 | }, | 221 | }, | ||
| 212 | "reference": [], | 222 | "reference": [], | ||
| 213 | "relationships_as_object": [], | 223 | "relationships_as_object": [], | ||
| 214 | "relationships_as_subject": [], | 224 | "relationships_as_subject": [], | ||
| 215 | "resources": [ | 225 | "resources": [ | ||
| 216 | { | 226 | { | ||
| 217 | "access_url": | 227 | "access_url": | ||
| 218 | 576a-81cf-2d8168d64057/resource/7a6f47cd-4773-4882-b888-6b0ff9ae2769", | 228 | 576a-81cf-2d8168d64057/resource/7a6f47cd-4773-4882-b888-6b0ff9ae2769", | ||
| 219 | "applicable_legislation": [ | 229 | "applicable_legislation": [ | ||
| 220 | "http://data.europa.eu/eli/reg_impl/2023/138/oj" | 230 | "http://data.europa.eu/eli/reg_impl/2023/138/oj" | ||
| 221 | ], | 231 | ], | ||
| 222 | "availability": | 232 | "availability": | ||
| 223 | ications.europa.eu/resource/authority/planned-availability/AVAILABLE", | 233 | ications.europa.eu/resource/authority/planned-availability/AVAILABLE", | ||
| 224 | "cache_last_updated": null, | 234 | "cache_last_updated": null, | ||
| 225 | "cache_url": null, | 235 | "cache_url": null, | ||
| 226 | "created": "2013-07-25T00:00:00", | 236 | "created": "2013-07-25T00:00:00", | ||
| 227 | "dataset_id": "4908d19e-27e1-4faf-b72b-1d1493908dd7", | 237 | "dataset_id": "4908d19e-27e1-4faf-b72b-1d1493908dd7", | ||
| 228 | "datastore_active": false, | 238 | "datastore_active": false, | ||
| 229 | "datastore_contains_all_records_of_source_file": false, | 239 | "datastore_contains_all_records_of_source_file": false, | ||
| 230 | "download_url": | 240 | "download_url": | ||
| 231 | ps://www.sciencedirect.com/science/article/abs/pii/S0301479713004726", | 241 | ps://www.sciencedirect.com/science/article/abs/pii/S0301479713004726", | ||
| 232 | "encoding": "UTF-8", | 242 | "encoding": "UTF-8", | ||
| 233 | "format": "HTML", | 243 | "format": "HTML", | ||
| 234 | "hash": "", | 244 | "hash": "", | ||
| 235 | "id": "7a6f47cd-4773-4882-b888-6b0ff9ae2769", | 245 | "id": "7a6f47cd-4773-4882-b888-6b0ff9ae2769", | ||
| 236 | "language": | 246 | "language": | ||
| 237 | "http://publications.europa.eu/resource/authority/language/ENG", | 247 | "http://publications.europa.eu/resource/authority/language/ENG", | ||
| 238 | "last_modified": null, | 248 | "last_modified": null, | ||
| 239 | "license": "http://creativecommons.org/licenses/by/4.0/", | 249 | "license": "http://creativecommons.org/licenses/by/4.0/", | ||
| 240 | "license_id": "cc-by", | 250 | "license_id": "cc-by", | ||
| n | 241 | "metadata_modified": "2026-06-23T15:58:48.770088", | n | 251 | "metadata_modified": "2026-06-25T12:28:28.115917", |
| 242 | "mimetype": | 252 | "mimetype": | ||
| 243 | "https://www.iana.org/assignments/media-types/text/html", | 253 | "https://www.iana.org/assignments/media-types/text/html", | ||
| 244 | "mimetype_inner": null, | 254 | "mimetype_inner": null, | ||
| t | 245 | "modified": "2026-06-23", | t | 255 | "modified": "2026-06-25", |
| 246 | "name": "Distribuci\u00f3n HTML", | 256 | "name": "Distribuci\u00f3n HTML", | ||
| 247 | "package_id": "d3e7d502-81bb-576a-81cf-2d8168d64057", | 257 | "package_id": "d3e7d502-81bb-576a-81cf-2d8168d64057", | ||
| 248 | "position": 0, | 258 | "position": 0, | ||
| 249 | "protocol": null, | 259 | "protocol": null, | ||
| 250 | "resource_type": null, | 260 | "resource_type": null, | ||
| 251 | "rights": | 261 | "rights": | ||
| 252 | .europa.eu/metadata-codelist/LimitationsOnPublicAccess/noLimitations", | 262 | .europa.eu/metadata-codelist/LimitationsOnPublicAccess/noLimitations", | ||
| 253 | "size": 0, | 263 | "size": 0, | ||
| 254 | "state": "active", | 264 | "state": "active", | ||
| 255 | "url": | 265 | "url": | ||
| 256 | ps://www.sciencedirect.com/science/article/abs/pii/S0301479713004726", | 266 | ps://www.sciencedirect.com/science/article/abs/pii/S0301479713004726", | ||
| 257 | "url_type": null | 267 | "url_type": null | ||
| 258 | } | 268 | } | ||
| 259 | ], | 269 | ], | ||
| 260 | "schemingdcat_xls_metadata_template": false, | 270 | "schemingdcat_xls_metadata_template": false, | ||
| 261 | "spatial": "{\"type\": \"Polygon\", \"coordinates\": [[[-2.34, | 271 | "spatial": "{\"type\": \"Polygon\", \"coordinates\": [[[-2.34, | ||
| 262 | 37.38], [-0.69, 37.38], [-0.69, 38.76], [-2.34, 38.76], [-2.34, | 272 | 37.38], [-0.69, 37.38], [-0.69, 38.76], [-2.34, 38.76], [-2.34, | ||
| 263 | 37.38]]]}", | 273 | 37.38]]]}", | ||
| 264 | "spatial_coverage": [ | 274 | "spatial_coverage": [ | ||
| 265 | { | 275 | { | ||
| 266 | "bbox": "{\"type\": \"Polygon\", \"coordinates\": [[[-2.34, | 276 | "bbox": "{\"type\": \"Polygon\", \"coordinates\": [[[-2.34, | ||
| 267 | 37.38], [-0.69, 37.38], [-0.69, 38.76], [-2.34, 38.76], [-2.34, | 277 | 37.38], [-0.69, 37.38], [-0.69, 38.76], [-2.34, 38.76], [-2.34, | ||
| 268 | 37.38]]]}", | 278 | 37.38]]]}", | ||
| 269 | "centroid": "{\"type\": \"Point\", \"coordinates\": [-1.515, | 279 | "centroid": "{\"type\": \"Point\", \"coordinates\": [-1.515, | ||
| 270 | 38.07]}", | 280 | 38.07]}", | ||
| 271 | "text": "Regi\u00f3n de Murcia", | 281 | "text": "Regi\u00f3n de Murcia", | ||
| 272 | "uri": | 282 | "uri": | ||
| 273 | atos.gob.es/recurso/sector-publico/territorio/Autonomia/Region-Murcia" | 283 | atos.gob.es/recurso/sector-publico/territorio/Autonomia/Region-Murcia" | ||
| 274 | } | 284 | } | ||
| 275 | ], | 285 | ], | ||
| 276 | "spatial_uri": | 286 | "spatial_uri": | ||
| 277 | tos.gob.es/recurso/sector-publico/territorio/Autonomia/Region-Murcia", | 287 | tos.gob.es/recurso/sector-publico/territorio/Autonomia/Region-Murcia", | ||
| 278 | "state": "active", | 288 | "state": "active", | ||
| 279 | "study_variables": { | 289 | "study_variables": { | ||
| 280 | "es": "" | 290 | "es": "" | ||
| 281 | }, | 291 | }, | ||
| 282 | "tag_uri": [ | 292 | "tag_uri": [ | ||
| 283 | 293 | ||||
| 284 | tp://inspire.ec.europa.eu/metadata-codelist/TopicCategory/environment" | 294 | tp://inspire.ec.europa.eu/metadata-codelist/TopicCategory/environment" | ||
| 285 | ], | 295 | ], | ||
| 286 | "tags": [ | 296 | "tags": [ | ||
| 287 | { | 297 | { | ||
| 288 | "display_name": "contaminacion", | 298 | "display_name": "contaminacion", | ||
| 289 | "id": "49a55c88-74b7-4e72-ab38-19a1e2b3904f", | 299 | "id": "49a55c88-74b7-4e72-ab38-19a1e2b3904f", | ||
| 290 | "name": "contaminacion", | 300 | "name": "contaminacion", | ||
| 291 | "state": "active", | 301 | "state": "active", | ||
| 292 | "vocabulary_id": null | 302 | "vocabulary_id": null | ||
| 293 | }, | 303 | }, | ||
| 294 | { | 304 | { | ||
| 295 | "display_name": "humedales-marino-costeros", | 305 | "display_name": "humedales-marino-costeros", | ||
| 296 | "id": "782e4ecd-1629-4a08-8afe-c7f2d0ecfce6", | 306 | "id": "782e4ecd-1629-4a08-8afe-c7f2d0ecfce6", | ||
| 297 | "name": "humedales-marino-costeros", | 307 | "name": "humedales-marino-costeros", | ||
| 298 | "state": "active", | 308 | "state": "active", | ||
| 299 | "vocabulary_id": null | 309 | "vocabulary_id": null | ||
| 300 | }, | 310 | }, | ||
| 301 | { | 311 | { | ||
| 302 | "display_name": "marino", | 312 | "display_name": "marino", | ||
| 303 | "id": "004084d1-68d8-46ca-842a-c10278540bc9", | 313 | "id": "004084d1-68d8-46ca-842a-c10278540bc9", | ||
| 304 | "name": "marino", | 314 | "name": "marino", | ||
| 305 | "state": "active", | 315 | "state": "active", | ||
| 306 | "vocabulary_id": null | 316 | "vocabulary_id": null | ||
| 307 | }, | 317 | }, | ||
| 308 | { | 318 | { | ||
| 309 | "display_name": "nutrientes", | 319 | "display_name": "nutrientes", | ||
| 310 | "id": "6e4b1d4d-e9a1-4e79-9f81-387ce2265097", | 320 | "id": "6e4b1d4d-e9a1-4e79-9f81-387ce2265097", | ||
| 311 | "name": "nutrientes", | 321 | "name": "nutrientes", | ||
| 312 | "state": "active", | 322 | "state": "active", | ||
| 313 | "vocabulary_id": null | 323 | "vocabulary_id": null | ||
| 314 | }, | 324 | }, | ||
| 315 | { | 325 | { | ||
| 316 | "display_name": "suelo", | 326 | "display_name": "suelo", | ||
| 317 | "id": "ddd64fbe-63d9-4624-a38d-30754e273d0a", | 327 | "id": "ddd64fbe-63d9-4624-a38d-30754e273d0a", | ||
| 318 | "name": "suelo", | 328 | "name": "suelo", | ||
| 319 | "state": "active", | 329 | "state": "active", | ||
| 320 | "vocabulary_id": null | 330 | "vocabulary_id": null | ||
| 321 | } | 331 | } | ||
| 322 | ], | 332 | ], | ||
| 323 | "thematic_area": [ | 333 | "thematic_area": [ | ||
| 324 | "espacios_protegidos" | 334 | "espacios_protegidos" | ||
| 325 | ], | 335 | ], | ||
| 326 | "theme_es": [ | 336 | "theme_es": [ | ||
| 327 | "http://datos.gob.es/kos/sector-publico/sector/medio-ambiente" | 337 | "http://datos.gob.es/kos/sector-publico/sector/medio-ambiente" | ||
| 328 | ], | 338 | ], | ||
| 329 | "title": "Nitrate removal from eutrophic wetlands polluted by | 339 | "title": "Nitrate removal from eutrophic wetlands polluted by | ||
| 330 | metal-mine wastes: Effects of liming and plant growth", | 340 | metal-mine wastes: Effects of liming and plant growth", | ||
| 331 | "title_translated": { | 341 | "title_translated": { | ||
| 332 | "es": "Nitrate removal from eutrophic wetlands polluted by | 342 | "es": "Nitrate removal from eutrophic wetlands polluted by | ||
| 333 | metal-mine wastes: Effects of liming and plant growth" | 343 | metal-mine wastes: Effects of liming and plant growth" | ||
| 334 | }, | 344 | }, | ||
| 335 | "topic": | 345 | "topic": | ||
| 336 | "http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/biota", | 346 | "http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/biota", | ||
| 337 | "type": "dataset", | 347 | "type": "dataset", | ||
| 338 | "url": | 348 | "url": | ||
| 339 | //iepnb.es:443/catalogo/dataset/d3e7d502-81bb-576a-81cf-2d8168d64057", | 349 | //iepnb.es:443/catalogo/dataset/d3e7d502-81bb-576a-81cf-2d8168d64057", | ||
| 340 | "version_notes": { | 350 | "version_notes": { | ||
| 341 | "es": "" | 351 | "es": "" | ||
| 342 | } | 352 | } | ||
| 343 | } | 353 | } |