Layer List
API endpoint that allows layers to be viewed or edited.
GET /api/v2/layers?format=api&page=21
{ "links": { "next": "http://ihp-wins.unesco.org/api/v2/layers?format=api&page=22", "previous": "http://ihp-wins.unesco.org/api/v2/layers?format=api&page=20" }, "total": 224, "page": 21, "page_size": 10, "layers": [ { "pk": "1119", "uuid": "7d438fa6-46d8-11e8-a93b-005056062634", "name": "AgRip_sed_category", "workspace": "geonode", "store": "datastore", "storeType": "dataStore", "charset": "UTF-8", "is_mosaic": false, "has_time": false, "has_elevation": false, "time_regex": null, "elevation_regex": null, "use_featureinfo_custom_template": false, "featureinfo_custom_template": null, "default_style": { "pk": 376, "name": "AgRip_sed_category", "workspace": "geonode", "sld_title": "AgRip_sed_category", "sld_body": "b'<?xml version=\"1.0\" encoding=\"UTF-8\"?><sld:StyledLayerDescriptor xmlns=\"http://www.opengis.net/sld\" xmlns:sld=\"http://www.opengis.net/sld\" xmlns:gml=\"http://www.opengis.net/gml\" xmlns:ogc=\"http://www.opengis.net/ogc\" version=\"1.0.0\"><sld:NamedLayer><sld:Name>AgRip_sed_category</sld:Name><sld:UserStyle><sld:Name>AgRip_sed_category</sld:Name><sld:FeatureTypeStyle><sld:Name>name</sld:Name><sld:Rule><sld:Name>Insufficient scope</sld:Name><sld:Title>Insufficient scope</sld:Title><ogc:Filter><ogc:PropertyIsEqualTo><ogc:PropertyName>AgRip_sed_</ogc:PropertyName><ogc:Literal>Insufficient scope</ogc:Literal></ogc:PropertyIsEqualTo></ogc:Filter><sld:PointSymbolizer><sld:Graphic><sld:Mark><sld:WellKnownName>circle</sld:WellKnownName><sld:Fill><sld:CssParameter name=\"fill\">#f7fbff</sld:CssParameter></sld:Fill><sld:Stroke><sld:CssParameter name=\"stroke\">#232323</sld:CssParameter><sld:CssParameter name=\"stroke-width\">0.5</sld:CssParameter></sld:Stroke></sld:Mark><sld:Size>5</sld:Size></sld:Graphic></sld:PointSymbolizer></sld:Rule><sld:Rule><sld:Name>Low potential</sld:Name><sld:Title>Low potential</sld:Title><ogc:Filter><ogc:PropertyIsEqualTo><ogc:PropertyName>AgRip_sed_</ogc:PropertyName><ogc:Literal>Low potential</ogc:Literal></ogc:PropertyIsEqualTo></ogc:Filter><sld:PointSymbolizer><sld:Graphic><sld:Mark><sld:WellKnownName>circle</sld:WellKnownName><sld:Fill><sld:CssParameter name=\"fill\">#b0d2e8</sld:CssParameter></sld:Fill><sld:Stroke><sld:CssParameter name=\"stroke\">#232323</sld:CssParameter><sld:CssParameter name=\"stroke-width\">0.5</sld:CssParameter></sld:Stroke></sld:Mark><sld:Size>5</sld:Size></sld:Graphic></sld:PointSymbolizer></sld:Rule><sld:Rule><sld:Name>Medium potential</sld:Name><sld:Title>Medium potential</sld:Title><ogc:Filter><ogc:PropertyIsEqualTo><ogc:PropertyName>AgRip_sed_</ogc:PropertyName><ogc:Literal>Medium potential</ogc:Literal></ogc:PropertyIsEqualTo></ogc:Filter><sld:PointSymbolizer><sld:Graphic><sld:Mark><sld:WellKnownName>circle</sld:WellKnownName><sld:Fill><sld:CssParameter name=\"fill\">#3e8ec4</sld:CssParameter></sld:Fill><sld:Stroke><sld:CssParameter name=\"stroke\">#232323</sld:CssParameter><sld:CssParameter name=\"stroke-width\">0.5</sld:CssParameter></sld:Stroke></sld:Mark><sld:Size>5</sld:Size></sld:Graphic></sld:PointSymbolizer></sld:Rule><sld:Rule><sld:Name>High potential</sld:Name><sld:Title>High potential</sld:Title><ogc:Filter><ogc:PropertyIsEqualTo><ogc:PropertyName>AgRip_sed_</ogc:PropertyName><ogc:Literal>High potential</ogc:Literal></ogc:PropertyIsEqualTo></ogc:Filter><sld:PointSymbolizer><sld:Graphic><sld:Mark><sld:WellKnownName>circle</sld:WellKnownName><sld:Fill><sld:CssParameter name=\"fill\">#08306b</sld:CssParameter></sld:Fill><sld:Stroke><sld:CssParameter name=\"stroke\">#232323</sld:CssParameter><sld:CssParameter name=\"stroke-width\">0.5</sld:CssParameter></sld:Stroke></sld:Mark><sld:Size>5</sld:Size></sld:Graphic></sld:PointSymbolizer></sld:Rule></sld:FeatureTypeStyle></sld:UserStyle></sld:NamedLayer></sld:StyledLayerDescriptor>'", "sld_version": null, "sld_url": "http://localhost:8080/geoserver/rest/workspaces/geonode/styles/AgRip_sed_category.sld" }, "styles": [ { "pk": 376, "name": "AgRip_sed_category", "workspace": "geonode", "sld_title": "AgRip_sed_category", "sld_body": "b'<?xml version=\"1.0\" encoding=\"UTF-8\"?><sld:StyledLayerDescriptor xmlns=\"http://www.opengis.net/sld\" xmlns:sld=\"http://www.opengis.net/sld\" xmlns:gml=\"http://www.opengis.net/gml\" xmlns:ogc=\"http://www.opengis.net/ogc\" version=\"1.0.0\"><sld:NamedLayer><sld:Name>AgRip_sed_category</sld:Name><sld:UserStyle><sld:Name>AgRip_sed_category</sld:Name><sld:FeatureTypeStyle><sld:Name>name</sld:Name><sld:Rule><sld:Name>Insufficient scope</sld:Name><sld:Title>Insufficient scope</sld:Title><ogc:Filter><ogc:PropertyIsEqualTo><ogc:PropertyName>AgRip_sed_</ogc:PropertyName><ogc:Literal>Insufficient scope</ogc:Literal></ogc:PropertyIsEqualTo></ogc:Filter><sld:PointSymbolizer><sld:Graphic><sld:Mark><sld:WellKnownName>circle</sld:WellKnownName><sld:Fill><sld:CssParameter name=\"fill\">#f7fbff</sld:CssParameter></sld:Fill><sld:Stroke><sld:CssParameter name=\"stroke\">#232323</sld:CssParameter><sld:CssParameter name=\"stroke-width\">0.5</sld:CssParameter></sld:Stroke></sld:Mark><sld:Size>5</sld:Size></sld:Graphic></sld:PointSymbolizer></sld:Rule><sld:Rule><sld:Name>Low potential</sld:Name><sld:Title>Low potential</sld:Title><ogc:Filter><ogc:PropertyIsEqualTo><ogc:PropertyName>AgRip_sed_</ogc:PropertyName><ogc:Literal>Low potential</ogc:Literal></ogc:PropertyIsEqualTo></ogc:Filter><sld:PointSymbolizer><sld:Graphic><sld:Mark><sld:WellKnownName>circle</sld:WellKnownName><sld:Fill><sld:CssParameter name=\"fill\">#b0d2e8</sld:CssParameter></sld:Fill><sld:Stroke><sld:CssParameter name=\"stroke\">#232323</sld:CssParameter><sld:CssParameter name=\"stroke-width\">0.5</sld:CssParameter></sld:Stroke></sld:Mark><sld:Size>5</sld:Size></sld:Graphic></sld:PointSymbolizer></sld:Rule><sld:Rule><sld:Name>Medium potential</sld:Name><sld:Title>Medium potential</sld:Title><ogc:Filter><ogc:PropertyIsEqualTo><ogc:PropertyName>AgRip_sed_</ogc:PropertyName><ogc:Literal>Medium potential</ogc:Literal></ogc:PropertyIsEqualTo></ogc:Filter><sld:PointSymbolizer><sld:Graphic><sld:Mark><sld:WellKnownName>circle</sld:WellKnownName><sld:Fill><sld:CssParameter name=\"fill\">#3e8ec4</sld:CssParameter></sld:Fill><sld:Stroke><sld:CssParameter name=\"stroke\">#232323</sld:CssParameter><sld:CssParameter name=\"stroke-width\">0.5</sld:CssParameter></sld:Stroke></sld:Mark><sld:Size>5</sld:Size></sld:Graphic></sld:PointSymbolizer></sld:Rule><sld:Rule><sld:Name>High potential</sld:Name><sld:Title>High potential</sld:Title><ogc:Filter><ogc:PropertyIsEqualTo><ogc:PropertyName>AgRip_sed_</ogc:PropertyName><ogc:Literal>High potential</ogc:Literal></ogc:PropertyIsEqualTo></ogc:Filter><sld:PointSymbolizer><sld:Graphic><sld:Mark><sld:WellKnownName>circle</sld:WellKnownName><sld:Fill><sld:CssParameter name=\"fill\">#08306b</sld:CssParameter></sld:Fill><sld:Stroke><sld:CssParameter name=\"stroke\">#232323</sld:CssParameter><sld:CssParameter name=\"stroke-width\">0.5</sld:CssParameter></sld:Stroke></sld:Mark><sld:Size>5</sld:Size></sld:Graphic></sld:PointSymbolizer></sld:Rule></sld:FeatureTypeStyle></sld:UserStyle></sld:NamedLayer></sld:StyledLayerDescriptor>'", "sld_version": null, "sld_url": "http://localhost:8080/geoserver/rest/workspaces/geonode/styles/AgRip_sed_category.sld" } ], "attribute_set": [ { "pk": 91800, "attribute": "Refor_P_ca", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using grassland reforestation against phosphorus", "attribute_type": "xsd:string", "visible": true, "display_order": 35, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.593493Z" }, { "pk": 91791, "attribute": "AnnualStre", "description": "A categorical variable of WTA. Breaks follow the traditional threshold of 0.4", "attribute_label": "Categorical variable of WTA: Annual Stress", "attribute_type": "xsd:string", "visible": true, "display_order": 26, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.554488Z" }, { "pk": 91777, "attribute": "cropland", "description": "Percentage of cropland as a land cover in the surface source watersheds", "attribute_label": "Cropland", "attribute_type": "xsd:double", "visible": true, "display_order": 12, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.493685Z" }, { "pk": 91788, "attribute": "PYield_cal", "description": "(kg/km2/year), calibrated against Sparrow data in the U.S. Note this is kg, not tonnes as in previous versions of the spreadsheet.", "attribute_label": "Phosphorus yield", "attribute_type": "xsd:double", "visible": true, "display_order": 23, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.541266Z" }, { "pk": 91790, "attribute": "wta", "description": "Capped at 1. Estimated from the WaterGAP3 model.", "attribute_label": "Withdrawal to available ratio for surface sources", "attribute_type": "xsd:double", "visible": true, "display_order": 25, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.550317Z" }, { "pk": 91775, "attribute": "Desal", "description": "The proportion of municipal water that comes from desalination. When the volume of water withdrawn from each source of a city is unknown, each source is treated as equally important.", "attribute_label": "Desalination", "attribute_type": "xsd:double", "visible": true, "display_order": 10, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.485159Z" }, { "pk": 91797, "attribute": "AgBMP_P_ca", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using agricultural BMPs against phosphorus runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 32, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.580664Z" }, { "pk": 91798, "attribute": "AgRip_P_ca", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using riparian buffers on agricultural land to reduce phosphorus runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 33, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.584946Z" }, { "pk": 91784, "attribute": "Transfer", "description": "(i.e. water sourced from watershed(s) outside of the watershed within which a given city resides", "attribute_label": "Percent of water from interbasin transfer", "attribute_type": "xsd:double", "visible": true, "display_order": 19, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.523564Z" }, { "pk": 91771, "attribute": "longitude", "description": null, "attribute_label": null, "attribute_type": "xsd:double", "visible": true, "display_order": 6, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.467478Z" }, { "pk": 91799, "attribute": "ForestPr_1", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using forest protection to against phosphorus runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 34, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.589199Z" }, { "pk": 91789, "attribute": "PYieldCate", "description": "Breaks are: < 8kg/km2, “Low”; 8-20 kg/km2, “Medium”; > 20 kg/km2, “High”.", "attribute_label": "Categorical phosphorus yield", "attribute_type": "xsd:string", "visible": true, "display_order": 24, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.546005Z" }, { "pk": 91783, "attribute": "DistToDVSN", "description": "Blank where a given city sources only from non-surface sources.", "attribute_label": "Average Distance to Surface Diversion Sources", "attribute_type": "xsd:double", "visible": true, "display_order": 18, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.519298Z" }, { "pk": 91785, "attribute": "NumSources", "description": "Number of water sources including surface and non-surface sources.", "attribute_label": "Number of Water Sources", "attribute_type": "xsd:double", "visible": true, "display_order": 20, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.527908Z" }, { "pk": 91793, "attribute": "AgRip_sed_", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using riparian buffers on agricultural land to reduce erosion", "attribute_type": "xsd:string", "visible": true, "display_order": 28, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.562958Z" }, { "pk": 91767, "attribute": "the_geom", "description": null, "attribute_label": null, "attribute_type": "gml:PointPropertyType", "visible": false, "display_order": 2, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.449689Z" }, { "pk": 91781, "attribute": "developed", "description": "Percentage of developed as a land cover in the surface source watersheds", "attribute_label": "Developed", "attribute_type": "xsd:double", "visible": true, "display_order": 16, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.510812Z" }, { "pk": 91796, "attribute": "thin_sed_c", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using forest fuel thinning against sediments", "attribute_type": "xsd:string", "visible": true, "display_order": 31, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.576296Z" }, { "pk": 91776, "attribute": "Other_type", "description": "The proportion of municipal water that comes from other sources, such as recycled water, rainwater harvesting, or private water vendors.", "attribute_label": "Other Sources", "attribute_type": "xsd:double", "visible": true, "display_order": 11, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.489462Z" }, { "pk": 91769, "attribute": "City_Name", "description": "The English name of the urban area.", "attribute_label": "Name", "attribute_type": "xsd:string", "visible": true, "display_order": 4, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.458553Z" }, { "pk": 91782, "attribute": "other", "description": "Percentage of other (bodies of water, wetlands) as a land cover in the surface source watersheds", "attribute_label": "Other", "attribute_type": "xsd:double", "visible": true, "display_order": 17, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.515063Z" }, { "pk": 91766, "attribute": "fid", "description": null, "attribute_label": null, "attribute_type": "xsd:int", "visible": true, "display_order": 1, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.445005Z" }, { "pk": 91786, "attribute": "SedYield_c", "description": "(tonnes/km2/year), calibrated against Sparrow data in the U.S.", "attribute_label": "Sediment yield", "attribute_type": "xsd:double", "visible": true, "display_order": 21, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.532688Z" }, { "pk": 91768, "attribute": "City_ID", "description": "Unique identifier for city. Matches with City_ID in City Water Map database.", "attribute_label": "Identification number", "attribute_type": "xsd:long", "visible": true, "display_order": 3, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.454076Z" }, { "pk": 91794, "attribute": "ForestProt", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using forest protection to against sediment runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 29, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.567180Z" }, { "pk": 91792, "attribute": "AgBMP_sed_", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using agricultural BMPs against sediment runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 27, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.558770Z" }, { "pk": 91772, "attribute": "Country_Na", "description": "The English name of the country.", "attribute_label": "Country", "attribute_type": "xsd:string", "visible": true, "display_order": 7, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.472046Z" }, { "pk": 91778, "attribute": "grassland", "description": "Percentage of grassland as a land cover in the surface source watersheds", "attribute_label": "Grassland", "attribute_type": "xsd:double", "visible": true, "display_order": 13, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.497961Z" }, { "pk": 91787, "attribute": "SedYieldCa", "description": "A categorical variable of Sed Yield. Breaks are: <6 tonnes/km2, “Low”; 6-40 tonnes/km2, “Medium”; > 40 tonnes/km2, “High”.", "attribute_label": "Categorical sediment yield", "attribute_type": "xsd:string", "visible": true, "display_order": 22, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.536872Z" }, { "pk": 91780, "attribute": "barren", "description": "Percentage of barren (desert, rock and ice) as a land cover in the surface source watersheds", "attribute_label": "Barren", "attribute_type": "xsd:double", "visible": true, "display_order": 15, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.506498Z" }, { "pk": 91773, "attribute": "Groundwate", "description": "The proportion of municipal water that comes from groundwater. When the volume of water withdrawn from each source of a city is unknown, each source is treated as equally important.", "attribute_label": "Groundwater", "attribute_type": "xsd:double", "visible": true, "display_order": 8, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.476445Z" }, { "pk": 91779, "attribute": "forest", "description": "Percentage of forest as a land cover in the surface source watersheds", "attribute_label": "Forest", "attribute_type": "xsd:double", "visible": true, "display_order": 14, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:32:23.502186Z" }, { "pk": 91795, "attribute": "Refor_sed_", "description": "A categorical variable describing the potential for using a strategy to help a city. 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[...] The availability and quality of that water supply, and hence the costs to move and treat it, depend heavily on how land in those source watersheds is used.\" (Nature Conservancy, 2015). \r\nFor more information, access the Urban Water Blueprint report here: http://www.iwa-network.org/wp-content/uploads/2016/06/Urban-Water-Blueprint-Report.pdf\r\nYou can also visit the Urban Water Blueprint website here: http://water.nature.org/waterblueprint/#/intro=true", "attribution": null, "doi": null, "alternate": "geonode:World_Watershed_Urban_Water_Blueprint", "date": "2018-07-02T14:40:00Z", "date_type": "publication", "temporal_extent_start": "2015-01-01T15:05:00Z", "temporal_extent_end": "2015-12-31T15:05:00Z", "edition": "McDonald, R.I. & D. Shemie (2014). Urban Water Blueprint: Mapping conservation solutions to the global water challenge. 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Anyone considering using the results for analysis or decision-making should contact the Urban Water Blueprint at water@tnc.org to obtain the most current estimates.", "bbox_polygon": { "type": "Polygon", "coordinates": [ [ [ -149.81004772124, -39.3083333370132 ], [ -149.81004772124, 64.3124999976799 ], [ 176.541666666667, 64.3124999976799 ], [ 176.541666666667, -39.3083333370132 ], [ -149.81004772124, -39.3083333370132 ] ] ] }, "ll_bbox_polygon": null, "srid": "EPSG:4326", "group": { "pk": 72, "name": "IHP-Theme4-Water-for-settlements" }, "popular_count": "199", "share_count": "0", "rating": "0", "featured": true, "is_published": true, "is_approved": true, "detail_url": "/layers/datastore:geonode:World_Watershed_Urban_Water_Blueprint", "created": "2020-02-11T11:06:45.204622Z", "last_updated": "2021-02-19T14:30:13.038970Z", "raw_abstract": "This map shows the source watersheds of 534 cities. \"Although the 100 largest cities in the world occupy less than 1 percent of our planet’s land area, their source watersheds — the rivers, forests and other ecosystems from which they get their water— cover over 12 percent. [...] The availability and quality of that water supply, and hence the costs to move and treat it, depend heavily on how land in those source watersheds is used.\" (Nature Conservancy, 2015). For more information, access the Urban Water Blueprint report here: http://www.iwa-network.org/wp-content/uploads/2016/06/Urban-Water-Blueprint-Report.pdf You can also visit the Urban Water Blueprint website here: http://water.nature.org/waterblueprint/#/intro=true", "raw_purpose": "", "raw_constraints_other": "Unless otherwise specified, no restriction applies.", "raw_supplemental_information": "The Urban Water Blueprint analyzes the state of water in more than 2000 watersheds and 530 cities worldwide to provide science-based recommendations for natural solutions that can be integrated alongside traditional infrastructure to improve water quality. The Urban Water Blueprint has continued to improve its scientific analysis over time, correcting reported errors and improving its methodology.", "raw_data_quality_statement": "Updated results are not reflected in the report or website. 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Data was gathered from the Water Point Data Exchange (WPDx) platform, a tool established for sharing water point data throughout the global water sector. \r\nThe goal of the Water Point Data Exchange is to simplify the way water point data is shared so all stakeholders can work more efficiently.\r\n\r\nFor more information, visit the WPDx website at https://www.waterpointdata.org/", "attribution": null, "doi": null, "alternate": "geonode:wpdxhonduras_2017_03_15t11_14_12_last1", "date": "2017-06-15T09:10:00Z", "date_type": "publication", "temporal_extent_start": "2013-01-05T10:10:00Z", "temporal_extent_end": "2016-08-29T09:11:00Z", "edition": "Water Point Data Exchange (2016). Presence of water in 457 water points in Honduras. Retrieved from www.waterpointdata.org/water-point-data.", "purpose": "", "maintenance_frequency": "asNeeded", "constraints_other": "/", "language": "eng", "supplemental_information": "The WPDx work is achieved through two components: \r\n1. 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To date, nearly 350,000 points from almost 40 countries have been recorded.", "data_quality_statement": "/", "bbox_polygon": { "type": "Polygon", "coordinates": [ [ [ -88.2241, 15.0408 ], [ -88.2241, 15.9522 ], [ -85.1224, 15.9522 ], [ -85.1224, 15.0408 ], [ -88.2241, 15.0408 ] ] ] }, "ll_bbox_polygon": null, "srid": "EPSG:4326", "group": { "pk": 74, "name": "IHP-Theme6-Water-education" }, "popular_count": "538", "share_count": "0", "rating": "0", "featured": false, "is_published": true, "is_approved": true, "detail_url": "/layers/geonode_ihp_data:geonode:wpdxhonduras_2017_03_15t11_14_12_last1", "created": "2020-02-11T11:06:45.204622Z", "last_updated": "2021-02-19T14:30:13.062732Z", "raw_abstract": "This layer identifies if any water was available at the water point on the day of the visit (recognizing that it may be a limited flow) in Honduras. Data was gathered from the Water Point Data Exchange (WPDx) platform, a tool established for sharing water point data throughout the global water sector. The goal of the Water Point Data Exchange is to simplify the way water point data is shared so all stakeholders can work more efficiently. For more information, visit the WPDx website at https://www.waterpointdata.org/", "raw_purpose": "", "raw_constraints_other": "/", "raw_supplemental_information": "The WPDx work is achieved through two components: 1. The collaboratively developed WPDx Standard for exchanging data. It was developed based on what water point data is already being collected globally, ensuring that almost any water point data can fit into the standard. 2. The WPDx Repository, a cloud-based data library that enables sharing of global data that is compliant with the WPDx standard. To date, nearly 350,000 points from almost 40 countries have been recorded.", "raw_data_quality_statement": "/", "metadata_only": false, "embed_url": "/layers/geonode:wpdxhonduras_2017_03_15t11_14_12_last1/embed", "thumbnail_url": "http://ihp-wins.unesco.org/uploaded/thumbs/layer-115119c0-aa76-11e7-bc0e-005056062634-thumb.png?v=e44c5daf", "keywords": [ { "name": "Accessibility", "slug": "Accessibility" }, { "name": "Drinking water", "slug": "Drinking_water" }, { "name": "Supply", "slug": "Supply" } ], "regions": [ { "code": "CAM", "name": "Central America" }, { "code": "HND", "name": "Honduras" } ], "category": { "identifier": "Water for human settlements" }, "restriction_code_type": null, "license": { "identifier": "not_specified" }, "spatial_representation_type": null }, { "pk": "1134", "uuid": "0576cb72-4c51-11e8-a93b-005056062634", "name": "SedYieldCategory_NC", "workspace": "geonode", "store": "datastore", "storeType": "dataStore", "charset": "UTF-8", "is_mosaic": false, 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Estimated from the WaterGAP3 model.", "attribute_label": "Withdrawal to available ratio for surface sources", "attribute_type": "xsd:double", "visible": true, "display_order": 25, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.287501Z" }, { "pk": 94830, "attribute": "City_ID", "description": "Unique identifier for city. Matches with City_ID in City Water Map database.", "attribute_label": "Identification number", "attribute_type": "xsd:long", "visible": true, "display_order": 3, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.191612Z" }, { "pk": 94862, "attribute": "Refor_P_ca", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using grassland reforestation against phosphorus", "attribute_type": "xsd:string", "visible": true, "display_order": 35, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.329221Z" }, { "pk": 94853, "attribute": "AnnualStre", "description": "A categorical variable of WTA. Breaks follow the traditional threshold of 0.4", "attribute_label": "Categorical variable of WTA: Annual Stress", "attribute_type": "xsd:string", "visible": true, "display_order": 26, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.291800Z" }, { "pk": 94842, "attribute": "barren", "description": "Percentage of barren (desert, rock and ice) as a land cover in the surface source watersheds", "attribute_label": "Barren", "attribute_type": "xsd:double", "visible": true, "display_order": 15, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.243878Z" }, { "pk": 94846, "attribute": "Transfer", "description": "(i.e. water sourced from watershed(s) outside of the watershed within which a given city resides", "attribute_label": "Percent of water from interbasin transfer", "attribute_type": "xsd:double", "visible": true, "display_order": 19, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.260498Z" }, { "pk": 94851, "attribute": "PYieldCate", "description": "Breaks are: < 8kg/km2, “Low”; 8-20 kg/km2, “Medium”; > 20 kg/km2, “High”.", "attribute_label": "Categorical phosphorus yield", "attribute_type": "xsd:string", "visible": true, "display_order": 24, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.281265Z" }, { "pk": 94843, "attribute": "developed", "description": "Percentage of developed as a land cover in the surface source watersheds", "attribute_label": "Developed", "attribute_type": "xsd:double", "visible": true, "display_order": 16, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.248019Z" }, { "pk": 94857, "attribute": "Refor_sed_", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using grassland reforestation against sediments", "attribute_type": "xsd:string", "visible": true, "display_order": 30, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.308346Z" }, { "pk": 94859, "attribute": "AgBMP_P_ca", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using agricultural BMPs against phosphorus runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 32, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.316717Z" }, { "pk": 94847, "attribute": "NumSources", "description": "Number of water sources including surface and non-surface sources.", "attribute_label": "Number of Water Sources", "attribute_type": "xsd:double", "visible": true, "display_order": 20, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.264640Z" }, { "pk": 94850, "attribute": "PYield_cal", "description": "(kg/km2/year), calibrated against Sparrow data in the U.S. Note this is kg, not tonnes as in previous versions of the spreadsheet.", "attribute_label": "Phosphorus yield", "attribute_type": "xsd:double", "visible": true, "display_order": 23, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.276959Z" }, { "pk": 94860, "attribute": "AgRip_P_ca", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using riparian buffers on agricultural land to reduce phosphorus runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 33, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.320839Z" }, { "pk": 94848, "attribute": "SedYield_c", "description": "(tonnes/km2/year), calibrated against Sparrow data in the U.S.", "attribute_label": "Sediment yield", "attribute_type": "xsd:double", "visible": true, "display_order": 21, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.268736Z" }, { "pk": 94836, "attribute": "Surface", "description": "The proportion of municipal water that comes from surface sources. When the volume of water withdrawn from each source of a city is unknown, each source is treated as equally important.", "attribute_label": "Surface", "attribute_type": "xsd:double", "visible": true, "display_order": 9, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.219232Z" }, { "pk": 94834, "attribute": "Country_Na", "description": "The English name of the country.", "attribute_label": "Country", "attribute_type": "xsd:string", "visible": true, "display_order": 7, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.210754Z" }, { "pk": 94849, "attribute": "SedYieldCa", "description": "A categorical variable of Sed Yield. Breaks are: <6 tonnes/km2, “Low”; 6-40 tonnes/km2, “Medium”; > 40 tonnes/km2, “High”.", "attribute_label": "Categorical sediment yield", "attribute_type": "xsd:string", "visible": true, "display_order": 22, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.272802Z" }, { "pk": 94839, "attribute": "cropland", "description": "Percentage of cropland as a land cover in the surface source watersheds", "attribute_label": "Cropland", "attribute_type": "xsd:double", "visible": true, "display_order": 12, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.231549Z" }, { "pk": 94828, "attribute": "fid", "description": null, "attribute_label": null, "attribute_type": "xsd:int", "visible": true, "display_order": 1, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.181861Z" }, { "pk": 94835, "attribute": "Groundwate", "description": "The proportion of municipal water that comes from groundwater. When the volume of water withdrawn from each source of a city is unknown, each source is treated as equally important.", "attribute_label": "Groundwater", "attribute_type": "xsd:double", "visible": true, "display_order": 8, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.215120Z" }, { "pk": 94831, "attribute": "City_Name", "description": "The English name of the urban area.", "attribute_label": "Name", "attribute_type": "xsd:string", "visible": true, "display_order": 4, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.197548Z" }, { "pk": 94856, "attribute": "ForestProt", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using forest protection to against sediment runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 29, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.304270Z" }, { "pk": 94833, "attribute": "longitude", "description": null, "attribute_label": null, "attribute_type": "xsd:double", "visible": true, "display_order": 6, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.206656Z" }, { "pk": 94858, "attribute": "thin_sed_c", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using forest fuel thinning against sediments", "attribute_type": "xsd:string", "visible": true, "display_order": 31, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.312456Z" }, { "pk": 94841, "attribute": "forest", "description": "Percentage of forest as a land cover in the surface source watersheds", "attribute_label": "Forest", "attribute_type": "xsd:double", "visible": true, "display_order": 14, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.239805Z" }, { "pk": 94840, "attribute": "grassland", "description": "Percentage of grassland as a land cover in the surface source watersheds", "attribute_label": "Grassland", "attribute_type": "xsd:double", "visible": true, "display_order": 13, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.235674Z" }, { "pk": 94838, "attribute": "Other_type", "description": "The proportion of municipal water that comes from other sources, such as recycled water, rainwater harvesting, or private water vendors.", "attribute_label": "Other Sources", "attribute_type": "xsd:double", "visible": true, "display_order": 11, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.227485Z" }, { "pk": 94829, "attribute": "the_geom", "description": null, "attribute_label": null, "attribute_type": "gml:PointPropertyType", "visible": false, "display_order": 2, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.187056Z" }, { "pk": 94837, "attribute": "Desal", "description": "The proportion of municipal water that comes from desalination. When the volume of water withdrawn from each source of a city is unknown, each source is treated as equally important.", "attribute_label": "Desalination", "attribute_type": "xsd:double", "visible": true, "display_order": 10, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.223377Z" }, { "pk": 94844, "attribute": "other", "description": "Percentage of other (bodies of water, wetlands) as a land cover in the surface source watersheds", "attribute_label": "Other", "attribute_type": "xsd:double", "visible": true, "display_order": 17, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.252194Z" }, { "pk": 94861, "attribute": "ForestPr_1", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using forest protection to against phosphorus runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 34, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.325001Z" }, { "pk": 94854, "attribute": "AgBMP_sed_", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using agricultural BMPs against sediment runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 27, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.295880Z" }, { "pk": 94845, "attribute": "DistToDVSN", "description": "Blank where a given city sources only from non-surface sources.", "attribute_label": "Average Distance to Surface Diversion Sources", "attribute_type": "xsd:double", "visible": true, "display_order": 18, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.256275Z" }, { "pk": 94855, "attribute": "AgRip_sed_", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using riparian buffers on agricultural land to reduce erosion", "attribute_type": "xsd:string", "visible": true, "display_order": 28, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.300150Z" }, { "pk": 94832, "attribute": "latitude", "description": null, "attribute_label": null, "attribute_type": "xsd:double", "visible": true, "display_order": 5, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:31.202512Z" } ], "resource_type": "layer", "polymorphic_ctype_id": "51", "owner": { "pk": 1275, "username": "adrian.barranco-fabre", "first_name": "Adrian", "last_name": "Barranco-Fabre", "avatar": "/static/avatars/adrian.barranco-fabre/resized/240/20180224_163631.d97d0775e6c3.jpg" }, "poc": { "pk": 1275, "username": "adrian.barranco-fabre", "first_name": "Adrian", "last_name": "Barranco-Fabre", "avatar": "/static/avatars/adrian.barranco-fabre/resized/240/20180224_163631.d97d0775e6c3.jpg" }, "metadata_author": { "pk": 1275, "username": "adrian.barranco-fabre", "first_name": "Adrian", "last_name": "Barranco-Fabre", "avatar": "/static/avatars/adrian.barranco-fabre/resized/240/20180224_163631.d97d0775e6c3.jpg" }, "title": "Sediment Yield by Category", "abstract": "The land use greatly influence water quality on the one supplied by watersheds. Land use changes often increase significantly the sedimentation and nutrient pollution. Human activity can generate as well pollutant concentration rising and heavily affect water treatment cost for urban supply. This map shows the total quantity of sediment moving out of a watershed in a given time interval, being expressed as units of tonnes/km2/year, organized into four categories: “Low” if <6 tonnes/km2; “Medium” if between 6-40 tonnes/km2; “High” if > 40 tonnes/km2, and “No information”.\r\nFor more information, access the Urban Water Blueprint report here: http://www.iwa-network.org/wp-content/uploads/2016/06/Urban-Water-Blueprint-Report.pdf\r\nYou can also visit the Urban Water Blueprint website here: http://water.nature.org/waterblueprint/#/intro=true", "attribution": null, "doi": null, "alternate": "geonode:SedYieldCategory_NC", "date": "2018-05-31T08:32:00Z", "date_type": "publication", "temporal_extent_start": "2015-01-01T09:32:00Z", "temporal_extent_end": "2015-12-31T09:32:00Z", "edition": "McDonald, R.I. & D. Shemie (2014). Urban Water Blueprint: Mapping conservation solutions to the global water challenge. The Nature Conservancy: Washington, D.C.", "purpose": "", "maintenance_frequency": null, "constraints_other": "Unless otherwise specified, no restriction applies.", "language": "eng", "supplemental_information": "The Urban Water Blueprint analyzes the state of water in more than 2000 watersheds and 530 cities worldwide to provide science-based recommendations for natural solutions that can be integrated alongside traditional infrastructure to improve water quality. \r\nThe Urban Water Blueprint has continued to improve its scientific analysis over time, correcting reported errors and improving its methodology.", "data_quality_statement": "Updated results are not reflected in the report or website. Anyone considering using the results for analysis or decision-making should contact the Urban Water Blueprint at water@tnc.org to obtain the most current estimates.", "bbox_polygon": { "type": "Polygon", "coordinates": [ [ [ -149.8921253, -43.52765168 ], [ -149.8921253, 61.21766954 ], [ 174.7646444, 61.21766954 ], [ 174.7646444, -43.52765168 ], [ -149.8921253, -43.52765168 ] ] ] }, "ll_bbox_polygon": null, "srid": "EPSG:4326", "group": { "pk": 72, "name": "IHP-Theme4-Water-for-settlements" }, "popular_count": "130", "share_count": "0", "rating": "0", "featured": true, "is_published": true, "is_approved": true, "detail_url": "/layers/datastore:geonode:SedYieldCategory_NC", "created": "2020-02-11T11:06:45.204622Z", "last_updated": "2021-02-19T14:30:13.070473Z", "raw_abstract": "The land use greatly influence water quality on the one supplied by watersheds. Land use changes often increase significantly the sedimentation and nutrient pollution. Human activity can generate as well pollutant concentration rising and heavily affect water treatment cost for urban supply. This map shows the total quantity of sediment moving out of a watershed in a given time interval, being expressed as units of tonnes/km2/year, organized into four categories: “Low” if 40 tonnes/km2, and “No information”. For more information, access the Urban Water Blueprint report here: http://www.iwa-network.org/wp-content/uploads/2016/06/Urban-Water-Blueprint-Report.pdf You can also visit the Urban Water Blueprint website here: http://water.nature.org/waterblueprint/#/intro=true", "raw_purpose": "", "raw_constraints_other": "Unless otherwise specified, no restriction applies.", "raw_supplemental_information": "The Urban Water Blueprint analyzes the state of water in more than 2000 watersheds and 530 cities worldwide to provide science-based recommendations for natural solutions that can be integrated alongside traditional infrastructure to improve water quality. The Urban Water Blueprint has continued to improve its scientific analysis over time, correcting reported errors and improving its methodology.", "raw_data_quality_statement": "Updated results are not reflected in the report or website. Anyone considering using the results for analysis or decision-making should contact the Urban Water Blueprint at water@tnc.org to obtain the most current estimates.", "metadata_only": false, "embed_url": "/layers/geonode:SedYieldCategory_NC/embed", "thumbnail_url": "http://ihp-wins.unesco.org/uploaded/thumbs/layer-0576cb72-4c51-11e8-a93b-005056062634-thumb.png?v=526cda5b", "keywords": [ { "name": "Basin", "slug": "basin" }, { "name": "Drinking water", "slug": "Drinking_water" }, { "name": "Groundwater", "slug": "groundwater" }, { "name": "Human settlements", "slug": "Humansettlements" }, { "name": "Supply", "slug": "Supply" }, { "name": "Surface water", "slug": "Surfacewater" } ], "regions": [ { "code": "GLO", "name": "Global" } ], "category": { "identifier": "Water for human settlements" }, "restriction_code_type": null, "license": { "identifier": "not_specified" }, "spatial_representation_type": { "identifier": "vector" } }, { "pk": "925", "uuid": 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"last_stats_updated": "2021-03-17T15:33:10.948825Z" }, { "pk": 93876, "attribute": "Ind_2010", "description": "", "attribute_label": "Percentage of indigenous people out of total population in 2010", "attribute_type": "xsd:double", "visible": true, "display_order": 9, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:10.982292Z" } ], "resource_type": "layer", "polymorphic_ctype_id": "51", "owner": { "pk": 1022, "username": "gabin.archambault", "first_name": "Gabin", "last_name": "Archambault", "avatar": "https://www.gravatar.com/avatar/6b6c0feef3d040bc9f22ae6766ce83d8/?s=240&d=http%3A%2F%2Fihp-wins.unesco.org%2Fstatic%2Favatar%2Fimg%2Fdefault.jpg" }, "poc": { "pk": 1022, "username": "gabin.archambault", "first_name": "Gabin", "last_name": "Archambault", "avatar": 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Lack of access to Water Supply and Sanitation (WSS) services perpetuates chronic poverty. Extending the human right of access to WSS services to Indigenous peoples represents the final step for many countries of the region to reach universal water coverage.\r\n\r\nFor more information, access the report here: https://openknowledge.worldbank.org/bitstream/handle/10986/25405/110266-WP-Toolkit-Indigenous-Peoples-and-WSS-in-LAC-PUBLIC.pdf?sequence=1&isAllowed=y", "attribution": null, "doi": null, "alternate": "geonode:lac_nonindigenous_access_to_sanitation2_1", "date": "2017-06-07T12:57:00Z", "date_type": "publication", "temporal_extent_start": "2001-01-01T13:57:00Z", "temporal_extent_end": "2012-12-31T13:57:00Z", "edition": "World Bank Group (2016). Water and sanitation services: Achieving sustainable outcomes with indigenous peoples in Latin America and the Caribbean. 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In Nicaragua, Creoles and Mestizoa are not included as indigenous though they are usually listed as such in official data.", "data_quality_statement": "Data derive from the most recent census carried out between 2001 and 2012, and were gathered in the framework of the LAC Equity Lab of the World Bank Group.\r\n", "bbox_polygon": { "type": "Polygon", "coordinates": [ [ [ -118.3642366, -56.5247 ], [ -118.3642366, 32.71676 ], [ -28.848191499999928, 32.71676 ], [ -28.848191499999928, -56.5247 ], [ -118.3642366, -56.5247 ] ] ] }, "ll_bbox_polygon": null, "srid": "EPSG:4326", "group": { "pk": 74, "name": "IHP-Theme6-Water-education" }, "popular_count": "748", "share_count": "0", "rating": "0", "featured": false, "is_published": true, "is_approved": true, "detail_url": "/layers/lac_nonindigenous_access_to_sanitation2_1:geonode:lac_nonindigenous_access_to_sanitation2_1", "created": "2020-02-11T11:06:45.204622Z", "last_updated": "2021-02-19T14:30:13.080878Z", "raw_abstract": "This layer presents the percentage of Non-Indigenous people who have access to improved sanitation services in 11 countries of the Latin America and Caribbean (LAC) region. 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In Bolivia only individuals older than 15 were asked to self-identified; thus for people under 14, values are extrapolated. 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Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using grassland reforestation against phosphorus", "attribute_type": "xsd:string", "visible": true, "display_order": 35, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:25.714890Z" }, { "pk": 94575, "attribute": "City_Name", "description": "The English name of the urban area.", "attribute_label": "Name", "attribute_type": "xsd:string", "visible": true, "display_order": 4, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:25.585370Z" }, { "pk": 94584, "attribute": "grassland", "description": "Percentage of grassland as a land cover in the surface source watersheds", "attribute_label": "Grassland", "attribute_type": "xsd:double", "visible": true, "display_order": 13, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:25.623250Z" }, { "pk": 94573, "attribute": "the_geom", "description": null, "attribute_label": null, "attribute_type": "gml:PointPropertyType", "visible": false, "display_order": 2, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:25.576845Z" }, { "pk": 94602, "attribute": "thin_sed_c", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using forest fuel thinning against sediments", "attribute_type": "xsd:string", "visible": true, "display_order": 31, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:25.697210Z" }, { "pk": 94605, "attribute": "ForestPr_1", "description": "A categorical variable describing the potential for using a strategy to help a city. Breaks follow those in the Urban Water Blueprint.", "attribute_label": "Potential for using forest protection to against phosphorus runoff", "attribute_type": "xsd:string", "visible": true, "display_order": 34, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:25.710784Z" }, { "pk": 94579, "attribute": "Groundwate", "description": "The proportion of municipal water that comes from groundwater. When the volume of water withdrawn from each source of a city is unknown, each source is treated as equally important.", "attribute_label": "Groundwater", "attribute_type": "xsd:double", "visible": true, "display_order": 8, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:25.602676Z" }, { "pk": 94581, "attribute": "Desal", "description": "The proportion of municipal water that comes from desalination. When the volume of water withdrawn from each source of a city is unknown, each source is treated as equally important.", "attribute_label": "Desalination", "attribute_type": "xsd:double", "visible": true, "display_order": 10, "featureinfo_type": "type_property", "count": 1, "min": "NA", "max": "NA", "average": "NA", "median": "NA", "stddev": "NA", "sum": "NA", "unique_values": "NA", "last_stats_updated": "2021-03-17T15:33:25.610866Z" } ], "resource_type": "layer", "polymorphic_ctype_id": "51", "owner": { "pk": 1275, "username": "adrian.barranco-fabre", "first_name": "Adrian", "last_name": "Barranco-Fabre", "avatar": "/static/avatars/adrian.barranco-fabre/resized/240/20180224_163631.d97d0775e6c3.jpg" }, "poc": { "pk": 1275, "username": "adrian.barranco-fabre", "first_name": "Adrian", "last_name": "Barranco-Fabre", "avatar": "/static/avatars/adrian.barranco-fabre/resized/240/20180224_163631.d97d0775e6c3.jpg" }, "metadata_author": { "pk": 1275, "username": "adrian.barranco-fabre", "first_name": "Adrian", "last_name": "Barranco-Fabre", "avatar": "/static/avatars/adrian.barranco-fabre/resized/240/20180224_163631.d97d0775e6c3.jpg" }, "title": "Phosphorus Yield Category", "abstract": "In cases were the watersheds are exploited for intensive agricultural purposes, as consequence the fertilizer concentration increase. Thus, the fertilizer filters into the water and rise the accumulation of common nutrients, phosphorus and nitrogen, affecting their proper cycle. Around 384 million urbanities receive their drinking water from watersheds with high nutrient pollution. This map shows the total quantity of phosphorous moving out of a watershed in a given time interval, being expressed as units of tonnes/km2/year, organized into four categories: “Low” if < 8kg/km2; “Medium” if 8-20 kg/km2; “High” if > 20 kg/km2 and “No Information”.\r\nFor more information, access the Urban Water Blueprint report here: http://www.iwa-network.org/wp-content/uploads/2016/06/Urban-Water-Blueprint-Report.pdf\r\nYou can also visit the Urban Water Blueprint website here: http://water.nature.org/waterblueprint/#/intro=true", "attribution": null, "doi": null, "alternate": "geonode:PYieldCategory_NC", "date": "2018-05-31T12:55:00Z", "date_type": "publication", "temporal_extent_start": "2015-01-01T13:56:00Z", "temporal_extent_end": "2015-12-31T13:56:00Z", "edition": "McDonald, R.I. & D. Shemie (2014). Urban Water Blueprint: Mapping conservation solutions to the global water challenge. The Nature Conservancy: Washington, D.C.", "purpose": "", "maintenance_frequency": null, "constraints_other": "Unless otherwise specified, no restriction applies.", "language": "eng", "supplemental_information": "The Urban Water Blueprint analyzes the state of water in more than 2000 watersheds and 530 cities worldwide to provide science-based recommendations for natural solutions that can be integrated alongside traditional infrastructure to improve water quality. \r\nThe Urban Water Blueprint has continued to improve its scientific analysis over time, correcting reported errors and improving its methodology.", "data_quality_statement": "Updated results are not reflected in the report or website. Anyone considering using the results for analysis or decision-making should contact the Urban Water Blueprint at water@tnc.org to obtain the most current estimates.", "bbox_polygon": { "type": "Polygon", "coordinates": [ [ [ -149.8921253, -43.52765168 ], [ -149.8921253, 61.21766954 ], [ 174.7646444, 61.21766954 ], [ 174.7646444, -43.52765168 ], [ -149.8921253, -43.52765168 ] ] ] }, "ll_bbox_polygon": null, "srid": "EPSG:4326", "group": { "pk": 72, "name": "IHP-Theme4-Water-for-settlements" }, "popular_count": "135", "share_count": "0", "rating": "0", "featured": true, "is_published": true, "is_approved": true, "detail_url": "/layers/datastore:geonode:PYieldCategory_NC", "created": "2020-02-11T11:06:45.204622Z", "last_updated": "2021-02-19T14:30:13.106139Z", "raw_abstract": "In cases were the watersheds are exploited for intensive agricultural purposes, as consequence the fertilizer concentration increase. Thus, the fertilizer filters into the water and rise the accumulation of common nutrients, phosphorus and nitrogen, affecting their proper cycle. Around 384 million urbanities receive their drinking water from watersheds with high nutrient pollution. This map shows the total quantity of phosphorous moving out of a watershed in a given time interval, being expressed as units of tonnes/km2/year, organized into four categories: “Low” if 20 kg/km2 and “No Information”. For more information, access the Urban Water Blueprint report here: http://www.iwa-network.org/wp-content/uploads/2016/06/Urban-Water-Blueprint-Report.pdf You can also visit the Urban Water Blueprint website here: http://water.nature.org/waterblueprint/#/intro=true", "raw_purpose": "", "raw_constraints_other": "Unless otherwise specified, no restriction applies.", "raw_supplemental_information": "The Urban Water Blueprint analyzes the state of water in more than 2000 watersheds and 530 cities worldwide to provide science-based recommendations for natural solutions that can be integrated alongside traditional infrastructure to improve water quality. The Urban Water Blueprint has continued to improve its scientific analysis over time, correcting reported errors and improving its methodology.", "raw_data_quality_statement": "Updated results are not reflected in the report or website. Anyone considering using the results for analysis or decision-making should contact the Urban Water Blueprint at water@tnc.org to obtain the most current estimates.", "metadata_only": false, "embed_url": "/layers/geonode:PYieldCategory_NC/embed", "thumbnail_url": "http://ihp-wins.unesco.org/uploaded/thumbs/layer-23f5cf18-4e08-11e8-a93b-005056062634-thumb.png?v=26aecf16", "keywords": [ { "name": "Basin", "slug": "basin" }, { "name": "Drinking water", "slug": "Drinking_water" }, { "name": "Groundwater", "slug": "groundwater" }, { "name": "Human settlements", "slug": "Humansettlements" }, { "name": "Supply", "slug": "Supply" }, { "name": "Surface water", "slug": "Surfacewater" } ], "regions": [ { "code": "GLO", "name": "Global" } ], "category": { "identifier": "Water for human settlements" }, "restriction_code_type": null, "license": { "identifier": "not_specified" }, "spatial_representation_type": { "identifier": "vector" } } ] }