يعرض 1 - 20 نتائج من 83 نتيجة بحث عن '"Environmental inequity"', وقت الاستعلام: 0.65s تنقيح النتائج
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    Academic Journal
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    Academic Journal

    المساهمون: University of St Andrews.School of Geography & Sustainable Development

    وصف الملف: application/pdf

    Relation: Urban Forestry & Urban Greening; 302500517; 86415572-5b19-4b5f-8c8e-a6385838576d; 85194963707; Han , R , Marchant , R & Thorn , J 2024 , ' Global disparities in wellbeing from green infrastructure cooling services : a systematic review ' , Urban Forestry & Urban Greening , vol. 97 , 128372 . https://doi.org/10.1016/j.ufug.2024.128372; ORCID: /0000-0003-2108-2554/work/160753876; https://hdl.handle.net/10023/29987

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    المصدر: Sustainability; Volume 14; Issue 3; Pages: 1263

    جغرافية الموضوع: agris

    وصف الملف: application/pdf

    Relation: Social Ecology and Sustainability; https://dx.doi.org/10.3390/su14031263

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    eBook

    المؤلفون: Flores, Walter, author, Laurent, Éloi, author, Ruger, Jennifer Prah, author

    المصدر: Well-Being: Expanding the Definition of Progress : Insights From Practitioners, Researchers, and Innovators From Around the Globe, 2020.

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    المصدر: Colombia Forestal; Vol. 22 No. 2 (2019): July-december; 83-100 ; Colombia forestal; Vol. 22 Núm. 2 (2019): Julio-diciembre; 83-100 ; 2256-201X ; 0120-0739

    وصف الملف: application/pdf; text/xml

    Relation: https://revistas.udistrital.edu.co/index.php/colfor/article/view/14304/14906; https://revistas.udistrital.edu.co/index.php/colfor/article/view/14304/15107; Aide, T. M. y Grau, H. R. (2004). Globalization, migration and Latin American ecosystems. Science, 305, 1915-1916. https://doi.org/10.1126/science.1103179 Ángel, L., Ramírez, A. y Domínguez, E. (2010). Isla de calor y cambios espacio-temporales de la temperatura en la ciudad de Bogotá. Revista de la Academia Colombiana de Ciencias Exactas, Físicas y Naturales, 34(131), 173-183. Anselin, L., Syabri, I. y Kho, Y. (2006). GeoDa: An introduction to spatial data analysis. Geographical Analysis, 38(1), 5-22. https://doi.org/10.1111/j.0016-7363.2005.00671.x Ayanu, Y. Z., Conrad, C., Nauss, T., Wegmann, M. y Koellner, T. (2012). Quantifying and mapping ecosystem services supplies and demands: A review of remote sensing applications. Environmental Science & Technology, 46, 8529-8541. https://doi.org/10.1021/es300157u Basara, J. B., Basara, H. G., Illston, B. G. y Crawford, K. C. (2010). The impact of the urban heat island during an intense heat wave in Oklahoma City. Advances in Meteorology. http://doi.org/10.1155/2010/230365 Bolund, P. y Hunhammar, S. (1999). Ecosystem services in urban areas. Ecological Economics, 29, 293-301. https://doi.org/10.1016/S0921-8009(99)00013-0 Bowler, D. E., Buyung-Ali, L., Knight, T. M. y Pullin, A. S. (2010). Urban greening to cool towns and cities: A systematic review of the empirical evidence. Landscape and urban planning, 97(3), 147-155. https://doi.org/10.1016/j.landurbplan.2010.05.006 Brown, M. (2012). The Bogotá Green Divide: Inequality in Street Tree Coverage Across Estratos. Recuperado de http://www.citinature.org/uploads/4/7/4/0/4740372/citinature_report_bogota_green_divide.pdf Burkhard, B., Kroll, F., Müller, F. y Windhorst, W. (2009). Landscapes’ capacities to provide ecosystem services - a–concept for Land-Cover based assessments. Landscape online, 15, 1-22. https://doi.org/10.3097/LO.200915 Burkhard, B., Kroll, F., Nedkov, S. y Müller, F. (2012). Mapping ecosystem service supply, demand and budgets. Ecological Indicators, 21, 17-29. https://doi.org/10.1016/j.ecolind.2011.06.019 Celemin, J. P. (2009). Autocorrelación espacial e indicadores locales de asociación espacial. Importancia, estructura y aplicación. Revista Universitaria de Geografía, 18(1), 11-31. Recuperado de http://www.scielo.org.ar/scielo.php?script=sci_arttext&pid=S1852-42652009000100002 Chander, G., Markham, B. L. y Helder, D. L. (2009). Summary of current radiometric calibration coefficients for Landsat MSS, TM, ETM+, and EO-1 ALI sensors. Remote sensing of environment, 113, 893-903. https://doi.org/10.1016/j.rse.2009.01.007 Chuvieco, E. (2016). Fundamentals of satellite remote sensing: An environmental approach. CRC press. Cortinovis, C. y Geneletti, D. (2018). Mapping and assessing ecosystem services to support urban planning: A case study on brownfield regeneration in Trento, Italy. One Ecosystem, 3, e25477. https://doi.org/10.3897/oneeco.3.e25477 Cristancho, C. y Triana, E. (2018). Análisis demográfico y proyecciones poblacionales de Bogotá. Bogotá: Secretaría Distrital de Planeación. Recuperado de http://www.sdp.gov.co/sites/default/files/demografia_proyecciones_2017_0_0.pdf Dawes, L. C., Adams, A. E., Escobedo, F. J. y Soto J. R. (2018). Socioeconomic and ecological perceptions and barriers to urban tree distribution and reforestation programs. Urban Ecosystems, 21(4), 657-671. https://doi.org/10.1007/s11252-018-0760-z De la Maza, C. L., Hernández, J., Brown, H., Rodríguez, M. y Escobedo, F. (2002). Vegetation diversity in the Santiago de Chile urban ecosystem. Arboricultural Journal, 126(4), 347-357. https://doi.org/10.1080/03071375.2002.9747349 Dirpen (2006). Manual del censista y auxiliar: censo del árbol urbano de Bogotá D.C. Bogotá: Jardín Botánico de Bogotá José Celestino Mutis, Departamento Nacional de Estadística. Egoh, B., Drakou, E. G., Dunbar, M. B., Maes, J. y Willemen, L. (2012). Indicators for Mapping Ecosystem Services: A Review. Luxemburgo: European Comission, Joint Research Centre. Egoh, B., Reyers, B., Rouget, M., Richardson, D. M., Le Maitre, D. C. y van Jaarsveld, A. S. (2008). Mapping ecosystem services for planning and management. Agriculture, Ecosystems and Environment, 127, 135-140. https://doi.org/10.1016/j.agee.2008.03.013 Eigenbrod, F., Armsworth, P. R., Anderson, B. J., Heinemeyer, A., Gillings, S., Roy, D.V., … y Gaston, K. J. (2010). The impact of proxy-based methods on mapping the distribution of ecosystem services. Journal of Applied Ecology, 47, 377-385. https://doi.org/10.1111/j.1365-2664.2010.01777.x Ellis, E. C. y Ramankutty, N. (2008). Putting people in the map: anthropogenic biomes of the world. Frontiers in Ecology and the Environment, 6(8), 439-447. https://doi.org/10.1890/070062 Ernstson, H. (2013). The social production of ecosystem services: A framework for studying environmental justice and ecological complexity in urbanized landscapes. Landscape and Urban Planning, 109(1), 7-17. https://doi.org/10.1016/j.landurbplan.2012.10.005 Escobedo, F. J., Clerici, N., Staudhammer, C. L. y Corzo, G. T. (2015). Socio-ecological dynamics and inequality in Bogotá, Colombia’s public urban forests and their ecosystem services. Urban Forestry and Urban Greening, 14, 1040-1053. https://doi.org/10.1016/j.ufug.2015.09.011 Escobedo, F. J., Palmas-Perez, S., Dobbs, C., Gezan, S. y Hernández, J. (2016). Spatio-Temporal Changes in Structure for a Mediterranean Urban Forest: Santiago, Chile 2002 to 2014. Forests, 7, 121. https://doi.org/10.3390/f7060121 Feltynowski, M., Kronenberg, J., Bergier, T., Kabisch, N., Łaszkiewicz, E. y Strohbach, M. W. (2018). Challenges of urban green space management in the face of using inadequate data. Urban Forestry and Urban Greening, 31, 56-66. https://doi.org/10.1016/j.ufug.2017.12.003 Foley, A., DeFries, R., Asner, G., Barford, C., Bonan, G., Carpenter, S., … y Snyder, P. (2005). Global consequences of land use. Science, 309, 570-574. https://doi.org/10.1126/science.1111772 Glenn, E. P., Huete, A. R., Nagler, P. L. y Nelson, S. G. (2008). Relationship between remotely-sensed vegetation indices, canopy attributes and plant physiological processes: What vegetation indices can and cannot tell us about the landscape. Sensors, 8, 2136-2160. https://doi.org/10.3390/s8042136 Gómez-Baggethun, E. y Barton, D.N. (2013). Classifying and valuing ecosystem services for urban planning. Ecological Economics, 86, 235-245. https://doi.org/10.1016/j.ecolecon.2012.08.019 Gómez-Baggethun, E., Gren, Å., Barton, D. N., Langemeyer, J., McPhearson, T., O’Farrell, P., … y Kremer, P. (2013). Urban ecosystem services. En T. Elmqvist, M. Fragkias, J. Goodness, B. Güneralp, P.J. Marcotullio, R.I. McDonald, … C. Wikinson (eds.), Urbanization, Biodiversity and Ecosystem Services: Challenges and Opportunities (pp. 175-251). Dordrecht: Springer. Grimmond, S. U. E. (2007). Urbanization and global environmental change: local effects of urban warming. The Geographical Journal, 173(1), 83-88. https://doi.org/10.1111/j.1475-4959.2007.232_3.x Hardin, P. J y Jensen, R. R. (2007). The effect of urban leaf area on summertime urban surface kinetic temperatures: a Terre Haute case study. Urban Forest Urban Green, 6, 63-72. https://doi.org/10.1016/j.ufug.2007.01.005 Hernández, I. (ed.) (2016). La estratificación en Bogotá: impacto social y alternativas para asignar subsidios. Bogotá: Secretaría Distrital de Planeación. Huang, C. y Ye, X. (2015). Spatial Modeling of urban vegetation and land surface temperature: A case study of Beijing. Sustainability, 7, 9478-9504. https://doi.org/10.3390/su7079478 Isaacs, P. J. y Jaimes, V. I. (2014). Análisis multitemporal de la estructura del paisaje del Distrito Capital, años 1991-2012. Bogotá: Jardín Botánico de Bogotá José Celestino Mutis. Jensen, J. R. (2000). Remote sensing of the environment: An earth resource perspective. Upper River: Prantice Hall. Jim, C. Y. y Chen, W. Y. (2009). Ecosystem services and valuation of urban forests in China. Cities, 26, 187-194. https://doi.org/10.1016/j.cities.2009.03.003 Kabisch, N. y Haase, D. (2014). Green justice or just green? Provision of urban green spaces in Berlin, Germany. Landscape and Urban Planning, 122, 129-139. https://doi.org/10.1016/j.landurbplan.2013.11.016 Kerr, J. T. y Ostrovsky, M. (2003). From space to species: Ecological applications for remote sensing. Trends in Ecology and Evolution, 18(6), 299-305. https://doi.org/10.1016/S0169-5347(03)00071-5 Leslie, E., Sugiyama, T., Ierodiaconou, D. y Kremer, P. (2010). Perceived and objectively measured greenness of neighbourhoods: Are they measuring the same thing? Landscape and Urban Planning, 95, 28-33. https://doi.org/10.1016/j.landurbplan.2009.11.002 Livesley, S. J., McPherson, E. G. y Calfapietra, C. (2016). The urban forest and ecosystem services: Impacts on urban water, heat, and pollution cycles at the tree, street, and city scale. Journal of Environmental Quality, 45(1), 119-124. https://doi.org/10.2134/jeq2015.11.0567 Lovell, S. T. y Taylor, J. R. (2013). Supplying urban ecosystem services through multifunctional green infrastructure in the United States. Landscape Ecology, 28, 1447-1463. https://doi.org/10.1007/s10980-013-9912-y Maes, J., Egoh, B., Willemen, L., Liquete, C., Vihervaara, P., Schägner, J.P., … y Bidoglio, G. (2012). Mapping ecosystem services for policy support and decision making in the European Union. Ecosystem Services, 1, 31-39. https://doi.org/10.1016/j.ecoser.2012.06.004 Maes, J., Polce, C., Zulian, G., Vandecasteele, I., Perpiña, C., Rivero, I.M., Guerra, C., Vallecillo, S., Vizcaino, P. y Hiederer, R. (2017). Mapping Regulating Ecosystem Services. En J. Burkhard y J. Maes (eds.), Mapping Ecosystem Services (pp. 179-188). Sofia: Pensoft Publishers. Mahecha, G., Sánchez, F., Chaparro, J., Cadena, H., Tovar, G., Villota, L., Morales, G., Castro, J., Bocanegra, F. y Quintero, M. (2010). Arbolado urbano de Bogotá: Identificación, descripción y bases para su manejo. Bogotá: Secretaría Distrital de Ambiente. McPhearson, T. (2011). Toward a sustainable New York City: Greening through urban forest restoration. En E. Slavin (ed.), Sustainability in America’s Cities: Creating the Green Metropolis (pp. 181-204). Washington: Island Press. Mitchell, R. y Popham, F. (2008). Effect of exposure to natural environment on health inequalities: An observational population study. Lancet, 372, 1655-1660. https://doi.org/10.1016/S0140-6736(08)61689-X Muñoz, J. H. y Ducón, J. C. (2016). Análisis econométrico espacial de las localidades de Bogotá y municipios del borde urbano. Criterios, 9(2), 129-157. Recuperado de http://www.revistas.usb.edu.co/index.php/criterios/article/view/3088 Nesbitt, L. y Meitner, M. J. (2016). Exploring relationships between socioeconomic background and urban greenery in Portland, OR. Forests, 7, 162. https://doi.org/10.3390/f7080162 Norton, B. A., Coutts, A. M., Livesley, S. J., Harris, R. J., Hunter, A. M. y Williams, N. (2015). Planning for cooler cities: A framework to prioritise green infrastructure to mitigate high temperatures in urban landscapes. Landscape and Urban Planning, 134, 127-138. https://doi.org/10.1016/j.landurbplan.2014.10.018 Nowak, D. J., Crane, D. E., Stevens, J. C., Hoehn, R. E., Walton, J. T. y Bond, J. (2008). A ground based method of assessing urban forest structure and ecosystem services. Arboriculture & Urban Forestry, 34(6), 347-358. Ochoa, V. y Urbina-Cardona, N. (2017). Tools for spatially modeling ecosystem services: Publications trends, conceptual reflections and future challenges. Ecosystem Services, 26, 155-169. https://doi.org/10.1016/j.ecoser.2017.06.011 Patz, J. A., Campbell-Lendrum, D., Holloway, T. y Foley, J. A. (2005). Impact of regional climate change on human health. Nature, 438, 310-317. https://doi.org/10.1038/nature04188 Pedlowski, M. A., Da Silva, V. A., Adell, J. J. y Heynen, N. C. (2002). Urban forests and environmental inequality in Campos Dos Goytacazes, Rio de Janeiro, Brazil. Urban Ecosystems, 6, 9-20. https://doi.org/10.1023/A:1025910528583 Peng, S., Piao, S., Clais, P., Friedlingstein, P., Ottle, C., Bréon, F. M., … y Myneni, R. B. (2012). Surface Urban Heat Island Across 419 Global Big Cities. Environmental Science and Technology, 46, 696-703. https://doi.org/10.1021/es2030438 Pickett, S. T. A., Cadenasso, M. L., Rosi-Marshall, E. J., Belt, K. T., Groffman, P. M., Grove, J. M., . y Swan, C. M. (2017). Dynamic heterogeneity: a framework to promote ecological integration and hypothesis generation in urban systems. Urban Ecosystems, 20(1), 1-14. https://doi.org/10.1007/s11252-016-0574-9 QGIS Development Team (2011). QGIS Geographic Information System. Beaverton: Open Source Geospatial Foundation Project. Recuperado de http://qgis.osgeo.org R Core Team (2016). R: A language and environment for statistical computing. Viena: R Foundation for Statistical Computing. Recuperado de https://www.R-project.org/ Rizwan, A. M., Dennis, Y. C. L. y Liu, C. (2008). A review on the generation, determination and mitigation of urban heat islands. Journal of Environmental Sciences, 20, 120-128. https://doi.org/10.1016/S1001-0742(08)60019-4 Rodríguez-Laguna, R., Meza-Rangel, J., Vargas-Hernández, J. y Jiménez-Pérez, J. (2009). Variación en la cobertura de suelo en un ensayo de procedencias de Pinus greggii Engelm. en el cerro El Potosí, Galeana, Nuevo León. Madera y Bosques, 15(1), 47-59. Recuperado de http://www.scielo.org.mx/scielo.php?pid=S1405-04712009000100004&script=sci_abstract&tlng=en Romero, J. A. (2010). Transformación urbana de la ciudad de Bogotá, 1990-2010: efecto espacial de la liberalización del comercio. Perspectiva Geográfica, 15, 85-112. Rouse, J. W., Haas, R. W., Schell, J. A., Deering, D. W. y Harlan, J. C. (1974). Monitoring the vernal advancement and retrogradation (Greenwave effect) of natural vegetation. Greenbelt: NASA/GSFCT. Santamouris, M., Cartalis, C., Synnefa, A. y Kolokotsa, D. (2015). On the impact of urban heat island and global warming on the power demand and electricity consumption of buildings—A review. Energy and Buildings, 98, 119-124. https://doi.org/10.1016/j.enbuild.2014.09.052 Schneiders, A., Van Daele, T., Van Laduyt, W. y Van Reeth, W. (2012). Biodiversity and ecosystem services: Complementary approaches for ecosystem management? Ecological Indicators, 21, 123-133. https://doi.org/10.1016/j.ecolind.2011.06.021 Schwarz, K., Fragkias, M., Boone, C. G., Zhou, W., McHale, M., Grove, J. M., . y Ogden, L. (2015). Trees grow on money: urban tree canopy cover and environmental justice. PLoS One, 10(4). https://doi.org/10.1371/journal.pone.0122051 Secretaría Distrital de Planeación (2009). Conociendo Bogotá y sus localidades: resumen de los principales aspectos físicos, demográficos y socioeconómicos. Bogotá: Alcaldía Mayor de Bogotá. Recuperado de http://oab.ambientebogota.gov.co/es/con-la-comunidad/ES/cartilla-conociendo-las-localidades-de-bogota Shashua-Bar, L. y Hoffman, M. E. (2000). Vegetation as a climatic component in the design of an urban street: An empirical model for predicting the cooling effect of urban green areas with trees. Energy and Buildings, 31(3), 221-235 Shultz, J. M., Garfin, D. R., Espinel, Z., Araya, R., Oquendo, M. A., Wainberg, M. L., . y Wilson, F. E. (2014). Internally displaced “victims of armed conflict” in Colombia: the trajectory and trauma signature of forced migration. Current Psychiatry Reports, 16(10), 475. Sierra-Guerrero, M. C. y Amarillo-Suárez, A. R. (2017). Socioecological features of plant diversity in domestic gardens in the city of Bogotá, Colombia. Urban Forestry and Urban Greening, 28, 54-62. https://doi.org/10.1016/j.ufug.2017.09.015 Storey, J., Choate, M. y Lee, K. (2014). Landsat 8 Operational Land Imager On-Orbit Geometric Calibration and Performance. Remote Sensing, 6, 11127-11152. https://doi.org/10.3390/rs61111127 Tzoulas, K., Korpela, K., Venn, S., Yli-Pelkonen, V., Kaźmierczak, A., Niemela, J. y James, P. (2007). Promoting ecosystem and human health in urban areas using Green Infrastructure: A literature review. Landscape and Urban Planning, 81(3), 167-178. https://doi.org/10.1016/j.landurbplan.2007.02.001 United Nations (2018). World Urbanization Prospects: The 2018 Revision. Nueva York: Department of Economic and Social Affairs, Population Division. United States Geological Survey (2017). Product guide: Landsat 8 Surface Reflectance Code (LaRSC) Product. Sioux Falls: Department of Interior. Weng, Q. (2009). Thermal infrared remote sensing for urban climate and environmental studies: Methods, applications and trends. ISPRS Journal of Photogrammetry and Remote Sensing, 64(4), 335-344. https://doi.org/10.1016/j.isprsjprs.2009.03.007 Weng, Q., Lu, D. y Schubring, J. (2004). Estimation of land surface temperature – vegetation abundance relationship for urban heat island studies. Remote Sensing of Environment, 89(4), 467-483. https://doi.org/10.1016/j.rse.2003.11.005 Wilson, N. R., Norman, L. M., Villareal, M., Gass, L., Tiller, R. y Salywon, A. (2016). Comparison of remote sensing indices for monitoring of desert cienegas. Arid Land Research and Management, 30(4), 460-478. https://doi.org/10.1080/15324982.2016.1170076 Wolch, J. R., Byrne, J. y Newell, J. P. (2014). Urban green space, public health, and environmental justice: The challenge of making cities ‘just green enough’. Landscape and Urban Planning, 125, 234-244. https://doi.org/10.1016/j.landurbplan.2014.01.017 Zar, J. H. (2010). Biostatistical analysis. Upper Saddle River: Prentice Hall. Zardo, L., Geneletti, D., Pérez-Soba, M. y Van Eupen, M. (2017). Estimating the cooling capacity of Green infrastructures to support urban planning. Ecosystem Services, 26, 225-235. https://doi.org/10.1016/j.ecoser.2017.06.016 Zhao, S., Da, L., Tang, Z., Fang, H., Song, K. y Fang, J. (2006). Ecological consequences of rapid urban expansion: Shanghai, China. Frontiers in Ecology and the Environment, 4(7), 341-346. https://doi.org/10.1890/1540-9295(2006)004[0341:ECORUE]2.0.CO;2 Zhou, W., Pickett, S. T. y Cadenasso, M. L. (2017). Shifting concepts of urban spatial heterogeneity and their implications for sustainability. Landscape ecology, 32(1), 15-30. https://doi.org/10.1007/s10980-016-0432-4 Zhou, W., Troy, A., Grove, J. M. y Jenkins, J. C. (2009). Can money buy green? Demographic and socioeconomic predictors of lawn-care expenditures and lawn greenness in urban residential areas. Society and Natural Resources, 22(8), 744-760. https://doi.org/10.1080/08941920802074330 Zulian, G., Liekens, I., Broekx, S., Kabisch, N., Kopperoinen, L. y Geneletti, D. (2017). Mapping urban ecosystem services. En J. Burkhard y J. Maes (eds.), Mapping Ecosystem Services (pp. 312-318). Sofia: Pensoft Publishers.; https://revistas.udistrital.edu.co/index.php/colfor/article/view/14304

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    المساهمون: School of Public and Environmental Affairs

    المصدر: Author

    مصطلحات موضوعية: environmental inequity, flood risk, FEMA, flood map, risk difference

    وصف الملف: application/pdf

    Relation: Water Economics and Policy; Noonan, D., Richardson, L., & Sun, P. (2022). Distributions of Flood Risk: The Implications of Alternative Measures of Flood Risk. Water Economics and Policy, 08(03), 2240001. https://doi.org/10.1142/S2382624X2240001X; https://hdl.handle.net/1805/37399

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