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En el instante 23 de junio de 2026, 16:14:15 UTC,
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Modificado el valor del campo
spatial_coverage
a[{'bbox': '{"type": "Polygon", "coordinates": [[[-18.16, 27.64], [4.32, 27.64], [4.32, 43.79], [-18.16, 43.79], [-18.16, 27.64]]]}', 'centroid': '{"type": "Point", "coordinates": [-6.92, 35.715]}', 'text': 'España', 'uri': 'http://datos.gob.es/recurso/sector-publico/territorio/Pais/España'}]
en Photoactive roadways: determination of CO, NO and VOC uptake coefficients and photolabile side product yields on TiO2 treated asphalt and concrete.
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| 81 | "notes": "This work reports uptake coefficients and by-product | 81 | "notes": "This work reports uptake coefficients and by-product | ||
| 82 | yields of ozone precursors onto two photocatalytic paving materials | 82 | yields of ozone precursors onto two photocatalytic paving materials | ||
| 83 | (asphalt and concrete) treated with a commercial TiO2 surface | 83 | (asphalt and concrete) treated with a commercial TiO2 surface | ||
| 84 | application product. The experimental approach used a continuously | 84 | application product. The experimental approach used a continuously | ||
| 85 | stirred tank reactor (CSTR) and allowed for testing large samples with | 85 | stirred tank reactor (CSTR) and allowed for testing large samples with | ||
| 86 | the same surface morphology encountered with real urban surfaces. The | 86 | the same surface morphology encountered with real urban surfaces. The | ||
| 87 | measured uptake coefficient (\u03b3geo) and surface resistances are | 87 | measured uptake coefficient (\u03b3geo) and surface resistances are | ||
| 88 | useful for parametrizing dry deposition velocities in air quality | 88 | useful for parametrizing dry deposition velocities in air quality | ||
| 89 | model evaluation of the impact of photoactive surfaces on urban air | 89 | model evaluation of the impact of photoactive surfaces on urban air | ||
| 90 | chemistry. At 46% relative humidity, the surface resistance to NO | 90 | chemistry. At 46% relative humidity, the surface resistance to NO | ||
| 91 | uptake was \u223c1 s cm\u22121 for concrete and \u223c2 s cm\u22121 | 91 | uptake was \u223c1 s cm\u22121 for concrete and \u223c2 s cm\u22121 | ||
| 92 | for a freshly coated older roadway asphalt sample. HONO and NO2 were | 92 | for a freshly coated older roadway asphalt sample. HONO and NO2 were | ||
| 93 | detected as side products from NO uptake to asphalt, with NO2 molar | 93 | detected as side products from NO uptake to asphalt, with NO2 molar | ||
| 94 | yields on the order of 20% and HONO molar yields ranging between 14 | 94 | yields on the order of 20% and HONO molar yields ranging between 14 | ||
| 95 | and 33%. For concrete samples, the NO2 molar yields increased with the | 95 | and 33%. For concrete samples, the NO2 molar yields increased with the | ||
| 96 | increase of water vapor, ranging from 1% to 35% and HONO was not | 96 | increase of water vapor, ranging from 1% to 35% and HONO was not | ||
| 97 | detected as a by-product. Uptake of monoaromatic VOCs to the asphalt | 97 | detected as a by-product. Uptake of monoaromatic VOCs to the asphalt | ||
| 98 | sample set displayed a dependence on the compound vapor pressure, and | 98 | sample set displayed a dependence on the compound vapor pressure, and | ||
| 99 | was influenced by competitive adsorption from less volatile VOCs. | 99 | was influenced by competitive adsorption from less volatile VOCs. | ||
| 100 | Formaldehyde and acetaldehyde were detected as byproducts, with molar | 100 | Formaldehyde and acetaldehyde were detected as byproducts, with molar | ||
| 101 | yields ranging from 5 to 32%.\n Palabras clave: Motorway", | 101 | yields ranging from 5 to 32%.\n Palabras clave: Motorway", | ||
| 102 | "notes_translated": { | 102 | "notes_translated": { | ||
| 103 | "en": "This work reports uptake coefficients and by-product yields | 103 | "en": "This work reports uptake coefficients and by-product yields | ||
| 104 | of ozone precursors onto two photocatalytic paving materials (asphalt | 104 | of ozone precursors onto two photocatalytic paving materials (asphalt | ||
| 105 | and concrete) treated with a commercial TiO2 surface application | 105 | and concrete) treated with a commercial TiO2 surface application | ||
| 106 | product. The experimental approach used a continuously stirred tank | 106 | product. The experimental approach used a continuously stirred tank | ||
| 107 | reactor (CSTR) and allowed for testing large samples with the same | 107 | reactor (CSTR) and allowed for testing large samples with the same | ||
| 108 | surface morphology encountered with real urban surfaces. The measured | 108 | surface morphology encountered with real urban surfaces. The measured | ||
| 109 | uptake coefficient (\u03b3geo) and surface resistances are useful for | 109 | uptake coefficient (\u03b3geo) and surface resistances are useful for | ||
| 110 | parametrizing dry deposition velocities in air quality model | 110 | parametrizing dry deposition velocities in air quality model | ||
| 111 | evaluation of the impact of photoactive surfaces on urban air | 111 | evaluation of the impact of photoactive surfaces on urban air | ||
| 112 | chemistry. At 46% relative humidity, the surface resistance to NO | 112 | chemistry. At 46% relative humidity, the surface resistance to NO | ||
| 113 | uptake was \u223c1 s cm\u22121 for concrete and \u223c2 s cm\u22121 | 113 | uptake was \u223c1 s cm\u22121 for concrete and \u223c2 s cm\u22121 | ||
| 114 | for a freshly coated older roadway asphalt sample. HONO and NO2 were | 114 | for a freshly coated older roadway asphalt sample. HONO and NO2 were | ||
| 115 | detected as side products from NO uptake to asphalt, with NO2 molar | 115 | detected as side products from NO uptake to asphalt, with NO2 molar | ||
| 116 | yields on the order of 20% and HONO molar yields ranging between 14 | 116 | yields on the order of 20% and HONO molar yields ranging between 14 | ||
| 117 | \u2026", | 117 | \u2026", | ||
| 118 | "es": "This work reports uptake coefficients and by-product yields | 118 | "es": "This work reports uptake coefficients and by-product yields | ||
| 119 | of ozone precursors onto two photocatalytic paving materials (asphalt | 119 | of ozone precursors onto two photocatalytic paving materials (asphalt | ||
| 120 | and concrete) treated with a commercial TiO2 surface application | 120 | and concrete) treated with a commercial TiO2 surface application | ||
| 121 | product. The experimental approach used a continuously stirred tank | 121 | product. The experimental approach used a continuously stirred tank | ||
| 122 | reactor (CSTR) and allowed for testing large samples with the same | 122 | reactor (CSTR) and allowed for testing large samples with the same | ||
| 123 | surface morphology encountered with real urban surfaces. The measured | 123 | surface morphology encountered with real urban surfaces. The measured | ||
| 124 | uptake coefficient (\u03b3geo) and surface resistances are useful for | 124 | uptake coefficient (\u03b3geo) and surface resistances are useful for | ||
| 125 | parametrizing dry deposition velocities in air quality model | 125 | parametrizing dry deposition velocities in air quality model | ||
| 126 | evaluation of the impact of photoactive surfaces on urban air | 126 | evaluation of the impact of photoactive surfaces on urban air | ||
| 127 | chemistry. At 46% relative humidity, the surface resistance to NO | 127 | chemistry. At 46% relative humidity, the surface resistance to NO | ||
| 128 | uptake was \u223c1 s cm\u22121 for concrete and \u223c2 s cm\u22121 | 128 | uptake was \u223c1 s cm\u22121 for concrete and \u223c2 s cm\u22121 | ||
| 129 | for a freshly coated older roadway asphalt sample. HONO and NO2 were | 129 | for a freshly coated older roadway asphalt sample. HONO and NO2 were | ||
| 130 | detected as side products from NO uptake to asphalt, with NO2 molar | 130 | detected as side products from NO uptake to asphalt, with NO2 molar | ||
| 131 | yields on the order of 20% and HONO molar yields ranging between 14 | 131 | yields on the order of 20% and HONO molar yields ranging between 14 | ||
| 132 | and 33%. For concrete samples, the NO2 molar yields increased with the | 132 | and 33%. For concrete samples, the NO2 molar yields increased with the | ||
| 133 | increase of water vapor, ranging from 1% to 35% and HONO was not | 133 | increase of water vapor, ranging from 1% to 35% and HONO was not | ||
| 134 | detected as a by-product. Uptake of monoaromatic VOCs to the asphalt | 134 | detected as a by-product. Uptake of monoaromatic VOCs to the asphalt | ||
| 135 | sample set displayed a dependence on the compound vapor pressure, and | 135 | sample set displayed a dependence on the compound vapor pressure, and | ||
| 136 | was influenced by competitive adsorption from less volatile VOCs. | 136 | was influenced by competitive adsorption from less volatile VOCs. | ||
| 137 | Formaldehyde and acetaldehyde were detected as byproducts, with molar | 137 | Formaldehyde and acetaldehyde were detected as byproducts, with molar | ||
| 138 | yields ranging from 5 to 32%.\n Palabras clave: Motorway" | 138 | yields ranging from 5 to 32%.\n Palabras clave: Motorway" | ||
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| 319 | "title": "Photoactive roadways: determination of CO, NO and VOC | 290 | "title": "Photoactive roadways: determination of CO, NO and VOC | ||
| 320 | uptake coefficients and photolabile side product yields on TiO2 | 291 | uptake coefficients and photolabile side product yields on TiO2 | ||
| 321 | treated asphalt and concrete.", | 292 | treated asphalt and concrete.", | ||
| 322 | "title_translated": { | 293 | "title_translated": { | ||
| 323 | "en": "", | 294 | "en": "", | ||
| 324 | "es": "Photoactive roadways: determination of CO, NO and VOC | 295 | "es": "Photoactive roadways: determination of CO, NO and VOC | ||
| 325 | uptake coefficients and photolabile side product yields on TiO2 | 296 | uptake coefficients and photolabile side product yields on TiO2 | ||
| 326 | treated asphalt and concrete." | 297 | treated asphalt and concrete." | ||
| 327 | }, | 298 | }, | ||
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| 329 | "http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/biota", | 300 | "http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/biota", | ||
| 330 | "type": "dataset", | 301 | "type": "dataset", | ||
| 331 | "url": | 302 | "url": | ||
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| 338 | } | 309 | } |