Zobrazeno 1 - 10
of 57
pro vyhledávání: '"Clara Inés Pardo Martínez"'
Publikováno v:
Development Studies Research, Vol 10, Iss 1 (2023)
ABSTRACTWorldwide, it is widely recognized that violent conflicts constrain economic growth and development. Thus, it is necessary to research and analyse the main causes of violence and their relationship with development. This paper analyses how vi
Externí odkaz:
https://doaj.org/article/6c07887336f74025aaeb1d0832405afe
Publikováno v:
Energy, Sustainability and Society, Vol 11, Iss 1, Pp 1-15 (2021)
Abstract Background Currently, most of the world’s population lives in cities, and the rapid urbanization of the population is driving increases in the demand for products, goods and services. To effectively design policies for urban sustainability
Externí odkaz:
https://doaj.org/article/fb192a66688f4e599cd4d6bf07ea4627
Publikováno v:
Global Sustainability, Vol 5 (2022)
Non-technical summary Small and medium enterprises generate an elevated environmental footprint, which requires green transformation to achieve sustainable development. The purpose of this study is to describe the intervention process in 120 microent
Externí odkaz:
https://doaj.org/article/42d59445598e4fa79df284e7162963dd
Publikováno v:
International Journal of Climate Change Strategies and Management, Vol 10, Iss 4, Pp 632-652 (2018)
Purpose - This research analyses and evaluates the trends and perspectives of climate change in Colombia. This study aims to understand the main ideas and concepts of climate change in five regions of the country by analysing attitudes and values, in
Externí odkaz:
https://doaj.org/article/8d727fc58be94559b0823b76423e3c57
Publikováno v:
Information, Vol 9, Iss 11, p 292 (2018)
Open science can provide researchers diverse opportunities to collaborate, disseminate their research results, generate important impacts in the scientific community, and engage in effective and efficient science for the benefit of society. This stud
Externí odkaz:
https://doaj.org/article/58b96b5cefd24041babd1168552844bd
Publikováno v:
Ensayos Revista de Economía, Vol 30, Iss 2 (2011)
Este estudio estima las tendencias de la pobreza y la desigualdad utilizando el análisis envolvente de datos (DEA) y datos de panel en Colombia durante el periodo 1993-2007. En este trabajo se propone un modelo DEA para medir y clasificar las tenden
Externí odkaz:
https://doaj.org/article/079459b559f441daaadbc84e3c3d8623
Publikováno v:
International Journal of Refrigeration. 141:54-65
Publikováno v:
International Journal of Refrigeration. 131:448-458
This paper presents the characteristics and baseline use of refrigerant gas in the meat, dairy, and fruit and vegetable sectors. The data are based on different sources of primary information starting from a survey of the companies that constitute th
Publikováno v:
Environment Systems and Decisions. 42:51-62
The main sources of input for an economy are environmental and natural resources, especially in biodiverse countries. Given this, such resources are associated with competitiveness and efficiency in that natural resources are a factor for production
Publikováno v:
Energy, Sustainability and Society, Vol 11, Iss 1, Pp 1-15 (2021)
United Nations (2019) World urbanization prospects: the 2018 revision.
UNEP (2012) Global initiative for resource efcient cities. https://europa. eu/capacity4dev/fle/13847/
United Nations (2015) Adoption of the Paris Agreement. Conference of the parties on its twenty-frst session.
Kennedy C, Stewart I, Facchini A, Cersosimo I, Meleb R, Chenc B, Uda M, Kansald A, Chiu A, Kim K, Dubeuxg C, Lebre E, Cunha B, Pincet LS, Keirstead J, Barles S, Pusaka S, Gunawan S, Adegbile M, Nazariha M, Hoque S, Marcotullio P, González F, Genena T, Ibrahim N, Farooqui R, Cervantes R, Duran A (2015) Energy and material fows of megacities. PNAS 112:5985–5990. https://doi.org/10.1073/pnas.1504315112
Moore J, Kissinger M, Rees WE (2013) An urban metabolism and ecological footprint assessment of Metro Vancouver. J Environ Manag 124:51–61
Kennedy C, Cuddihy J, Engel-Yan J (2007) The changing metabolism of cities. J Ind Ecol. https://doi.org/10.1162/jiec.0.1107
Rosado L, Kalmykova Y, Patrício J (2017) Reprint of: urban metabolism profles. An empirical analysis of the material fow characteristics of three metropolitan areas in Sweden. J Clean Prod 163:S254–S266
Ferrao P, Fernández J (2013) Sustainable urban metabolism. MIT Press, Cambridge, Massachusetts, London
Grimm V, Wissel C (1997) Babel, or the ecological stability discussions: an inventory and analysis of terminology and a guide for avoiding confusion. Oecologia 109:323–334
Barles S (2010) Society, energy and materials: the contribution of urban metabolism studies to sustainable urban development issues. J Environ Plan Manag 53:439–455
Pataki D, Carreiro M, Cherrier J, Grulke N, Jennings V, Pincetl S, Pouyat R, Whitlow R, Zipperer W (2011) Coupling biogeochemical cycles in urban environments: ecosystem services, green solutions, and misconceptions. Front Ecol Environ 9:27–36. https://doi.org/10.1890/090220
Lin T, Gibson V, Cui S, Yu C, Chen S, Ye Z, Zhu Y (2014) Managing urban nutrient biogeochemistry for sustainable urbanization. Environ Pollut 192:244–250
EEA (2015) Urban sustainability issues—What is a resource-efcient city?. EEA Technical report No 23/2015. https://www.eea.europa.eu/publicatio ns/resource-efcient-cities/fle
Song T, Yang Z, Chahine T (2016) Efciency evaluation of material and energy fows, a case study of Chinese cities. J Clean Prod 112:3667–3675
Prendeville S, Cherim E, Bocken N (2018) Circular cities: mapping six cities in transition. Environ Innov Soc Trans 26:171–194
Czamanski D, Broitman D (2018) The life cycle of cities. Habitat Int 72:100–108
Pao H, Chen C (2019) Decoupling strategies: CO2 emissions, energy resources, and economic growth in the Group of Twenty. J Clean Prod 206:907–919
Giampietro M (2019) On the circular bioeconomy and decoupling: implications for sustainable growth. Ecol Econ 162:143–156
Dai T, Liu R (2018) Dematerialization in Beijing from the perspective of material metabolism. J Clean Prod 201:792–801
Kemp-Benedict E (2018) Dematerialization, decoupling, and productivity change. Ecol Econ 150:204–216
Repositorio EdocUR-U. Rosario
Universidad del Rosario
instacron:Universidad del Rosario
United Nations (2019) World urbanization prospects: the 2018 revision.
UNEP (2012) Global initiative for resource efcient cities. https://europa. eu/capacity4dev/fle/13847/
United Nations (2015) Adoption of the Paris Agreement. Conference of the parties on its twenty-frst session.
Kennedy C, Stewart I, Facchini A, Cersosimo I, Meleb R, Chenc B, Uda M, Kansald A, Chiu A, Kim K, Dubeuxg C, Lebre E, Cunha B, Pincet LS, Keirstead J, Barles S, Pusaka S, Gunawan S, Adegbile M, Nazariha M, Hoque S, Marcotullio P, González F, Genena T, Ibrahim N, Farooqui R, Cervantes R, Duran A (2015) Energy and material fows of megacities. PNAS 112:5985–5990. https://doi.org/10.1073/pnas.1504315112
Moore J, Kissinger M, Rees WE (2013) An urban metabolism and ecological footprint assessment of Metro Vancouver. J Environ Manag 124:51–61
Kennedy C, Cuddihy J, Engel-Yan J (2007) The changing metabolism of cities. J Ind Ecol. https://doi.org/10.1162/jiec.0.1107
Rosado L, Kalmykova Y, Patrício J (2017) Reprint of: urban metabolism profles. An empirical analysis of the material fow characteristics of three metropolitan areas in Sweden. J Clean Prod 163:S254–S266
Ferrao P, Fernández J (2013) Sustainable urban metabolism. MIT Press, Cambridge, Massachusetts, London
Grimm V, Wissel C (1997) Babel, or the ecological stability discussions: an inventory and analysis of terminology and a guide for avoiding confusion. Oecologia 109:323–334
Barles S (2010) Society, energy and materials: the contribution of urban metabolism studies to sustainable urban development issues. J Environ Plan Manag 53:439–455
Pataki D, Carreiro M, Cherrier J, Grulke N, Jennings V, Pincetl S, Pouyat R, Whitlow R, Zipperer W (2011) Coupling biogeochemical cycles in urban environments: ecosystem services, green solutions, and misconceptions. Front Ecol Environ 9:27–36. https://doi.org/10.1890/090220
Lin T, Gibson V, Cui S, Yu C, Chen S, Ye Z, Zhu Y (2014) Managing urban nutrient biogeochemistry for sustainable urbanization. Environ Pollut 192:244–250
EEA (2015) Urban sustainability issues—What is a resource-efcient city?. EEA Technical report No 23/2015. https://www.eea.europa.eu/publicatio ns/resource-efcient-cities/fle
Song T, Yang Z, Chahine T (2016) Efciency evaluation of material and energy fows, a case study of Chinese cities. J Clean Prod 112:3667–3675
Prendeville S, Cherim E, Bocken N (2018) Circular cities: mapping six cities in transition. Environ Innov Soc Trans 26:171–194
Czamanski D, Broitman D (2018) The life cycle of cities. Habitat Int 72:100–108
Pao H, Chen C (2019) Decoupling strategies: CO2 emissions, energy resources, and economic growth in the Group of Twenty. J Clean Prod 206:907–919
Giampietro M (2019) On the circular bioeconomy and decoupling: implications for sustainable growth. Ecol Econ 162:143–156
Dai T, Liu R (2018) Dematerialization in Beijing from the perspective of material metabolism. J Clean Prod 201:792–801
Kemp-Benedict E (2018) Dematerialization, decoupling, and productivity change. Ecol Econ 150:204–216
Repositorio EdocUR-U. Rosario
Universidad del Rosario
instacron:Universidad del Rosario
Antecedentes: Actualmente, la mayor parte de la población mundial vive en ciudades, y la rápida urbanización de la población está impulsando aumentos en la demanda de productos, bienes y servicios. Para diseñar eficazmente políticas de sosteni