Propuesta de los principales elementos que definen el factor ecológico en las zonas rurales, mediante aplicación de herramientas ingenieriles

Bibliographic Details
Main Authors: Gallego Forero, Miller Esteban, Martinez Montoya, Jordy Dandenis
Other Authors: Suarez Roldan, Carolina
Format: Thesis
Language:unknown
Published: Universidad Cooperativa de Colombia, Facultad de Ingenierías, Ingeniería Industrial, Bogotá 2021
Subjects:
Online Access:https://hdl.handle.net/20.500.12494/28398
id ftunivccolomb:oai:repository.ucc.edu.co:20.500.12494/28398
record_format openpolar
institution Open Polar
collection Repositorio Institucional UCC (Universidad Cooperativa de Colombia)
op_collection_id ftunivccolomb
language unknown
topic Ecología
Zonas rurales
Desarrollo sostenible
TG 2020 IIN 28398
spellingShingle Ecología
Zonas rurales
Desarrollo sostenible
TG 2020 IIN 28398
Gallego Forero, Miller Esteban
Martinez Montoya, Jordy Dandenis
Propuesta de los principales elementos que definen el factor ecológico en las zonas rurales, mediante aplicación de herramientas ingenieriles
topic_facet Ecología
Zonas rurales
Desarrollo sostenible
TG 2020 IIN 28398
author2 Suarez Roldan, Carolina
format Thesis
author Gallego Forero, Miller Esteban
Martinez Montoya, Jordy Dandenis
author_facet Gallego Forero, Miller Esteban
Martinez Montoya, Jordy Dandenis
author_sort Gallego Forero, Miller Esteban
title Propuesta de los principales elementos que definen el factor ecológico en las zonas rurales, mediante aplicación de herramientas ingenieriles
title_short Propuesta de los principales elementos que definen el factor ecológico en las zonas rurales, mediante aplicación de herramientas ingenieriles
title_full Propuesta de los principales elementos que definen el factor ecológico en las zonas rurales, mediante aplicación de herramientas ingenieriles
title_fullStr Propuesta de los principales elementos que definen el factor ecológico en las zonas rurales, mediante aplicación de herramientas ingenieriles
title_full_unstemmed Propuesta de los principales elementos que definen el factor ecológico en las zonas rurales, mediante aplicación de herramientas ingenieriles
title_sort propuesta de los principales elementos que definen el factor ecológico en las zonas rurales, mediante aplicación de herramientas ingenieriles
publisher Universidad Cooperativa de Colombia, Facultad de Ingenierías, Ingeniería Industrial, Bogotá
publishDate 2021
url https://hdl.handle.net/20.500.12494/28398
genre Arctic
genre_facet Arctic
op_relation A. V. Amparovilchesuves, D. G. Pérez, J. Carlos, and Ó. Macías, “Obstáculos que pueden estar impidiendo la implicación de la ciudadanía y , en particular , de los educadores , en la construcción de un futuro sostenible . Formas de superarlos,” 2014.
PNUD, “Apoyo del PNUD a la implementación del Objetivo de Desarrollo Sostenible 13,” pp. 1–16, 2016, [Online]. Available: file:///C:/Users/user/Downloads/SDG_1_Spanish.pdf
Banco Mundial, “Medio ambiente: Resultados del sector,” 2017, pp. 1–9, 2017, [Online]. Available: http://www.bancomundial.org/es/results/2013/04/13/environment-results-profile.
C. M. sobre M. A. y D. CMMAD, “Preserving Our World: A Consumer’s Guide to the Brundtland Report,” p. 135, 1987, doi: A/42/427.
C. I. Cortez Santos and R. A. Vinueza Chérrez, “Economía ambiental y economía ecológica. Eficiencia ambiental. Evaluación monetaria y costes físicos del proceso de producción,” 2012, [Online]. Available: http://www3.uah.es/vicente_marban/ASIGNATURAS/EIA II/curso 2011 2012/tema 2.pdf.
C. I. Cortez Santos and R. A. Vinueza Chérrez, “Economía ambiental y economía ecológica. Eficiencia ambiental. Evaluación monetaria y costes físicos del proceso de producción,” 2012.
G. T. M. Hult, J. A. Mena, M. A. Gonzalez-Perez, K. Lagerström, and D. T. Hult, “A Ten Country-Company Study of Sustainability and Product-Market Performance: Influences of Doing Good, Warm Glow, and Price Fairness,” J. Macromarketing, vol. 38, no. 3, pp. 242–261, 2018, doi:10.1177/0276146718787017.
FAO, Panorama de la pobreza rural en América Latina y el Caribe. 2018.
M. Khan, “La pobreza rural en los países en desarrollo. Su relación de la política pública.,” Fondo Monet. Int., p. 21, 2001.
S. . Saravia-Matus and P. Aguirre Hörmann, “LO RURAL Y EL DESARROLLO SOSTENIBLE en ALC,” 2030 - Aliment. Agric. y Desarro. Rural en Am. Lat. y el Caribe. FAO, vol. 3, p. 20, 2019.
PNUD, “Ambiente y desarrollo sostenible Programas e Iniciativas,” Programa las Nac. Unidas para el Desarro., [Online]. Available: https://www.co.undp.org/content/colombia/es/home/climate-and-disaster-resilience.html.
M. Luis, G. Murillo, and I. Introducción, “LOGROS DEL SECTOR AMBIENTE Y DESARROLLO Informe de Gestión 2016-2018,” 2018.
S. Australia/Pacifi, “Cómo empezar con los ODS en las universidades. Una guía para las universidades, los centros de educación superior y el sector académico,” Sustain. Dev. Solut. Netw., p. 56, 2017.
ONU, “Perspectivas del Medio Ambiente Mundial GEO 6,” Organ. las Nac. Unidas, 2019.
R. Hernández Sampieri, C. Fernández Collado, and P. Baptista Lucio, Metodologia de la Investigacion, Sexta. Bogota, 2014.
A. Crítico and D. E. Económica, “Fuentes de Información Fuentes de Información,” pp. 1–17, 2015.
D. Huamán, “Fuentes de información Contenido,” Organ. Panam. la salud, p. 43, 2011, [Online]. Available: http://bvsper.paho.org/videosdigitales/matedu/cam2011/Fuentes_informacion.pdf?ua=1.
Fundibeq, “Diagrama causa-efecto,” Diagrama, pp. 1–13, 2013, [Online]. Available: http://www.fundibeq.org/opencms/export/sites/default/PWF/downloads/gallery/methodology/tools/diagrama_causa_efecto.pdf.
Grupo Elsevie and L. Codina, “Scopus : caracterización y guía de uso avanzado · Preparación , búsqueda y exportación de resultados,” Grupo elsevie, 2020. .
G. Buela-Casal, “Métodos e indicadores para evaluar la investigación: indicadores por revistas, por investigadores y por países,” no. 2007, pp. 1–3, 2012, [Online]. Available: http://www.infocop.es/view_article.asp?id=4173.
Elsevier, “Scopus es la mayor base de datos de citas y resúmenes de bibliografía revisada por pares: revistas científicas, libros y actas de conferencias,” Elsevier. https://www.elsevier.com/es-es/solutions/scopus.
DOI, “The DOI system: Factsheets,” p. 2020, 2011, [Online]. Available: http://www.doi.org/factsheets.html.
Y. Jiang, S. Sun, Y. Wang, and S. Zheng, “Niche evolution of China’s provincial social-economic-natural complex ecosystems, 2005-2015,” Sustain., vol. 10, no. 8, Aug. 2018, doi:10.3390/su10082824.
I. Machar et al., “Environmental modelling of forest vegetation zones as a support tool for sustainable management of central european spruce forests,” J. Landsc. Ecol. Republic), vol. 11, no. 3, pp. 45–63, 2018, doi:10.2478/jlecol-2018-0012.
A. Cherepovitsyn, D. Metkin, and A. Gladilin, “An algorithm of management decision-making regarding the feasibility of investing in geological studies of forecasted hydrocarbon resources,” Resources, vol. 7, no. 3, 2018, doi:10.3390/resources7030047.
D. Suocheng et al., “Green development modes of the belt and road,” Geogr. Environ. Sustain., vol. 10, no. 1, pp. 53–69, 2017, doi:10.24057/2071-9388-2017-10-1-53-69.
V. K. Gavva, A. G. Denisov, and D. P. Arbuzova, “Monitoring of innovative technologies and projects in the sector of essential water resource management aimed at sustainable development of Northern (Arctic) Regions of Russia,” Indian J. Sci. Technol., vol. 9, no. 12, Mar. 2016, doi:10.17485/ijst/2016/v9i12/89519.
V. K. Gavva, A. G. Denisov, and D. P. Arbuzova, “Monitoring of innovative technologies and projects in the field of improved industrial energy efficiency and the industrial implementation of new energy sources aimed at sustainable development of the Northern (Arctic) Russian regions,” Indian J. Sci. Technol., vol. 9, no. 12, Mar. 2016, doi:10.17485/ijst/2016/v9i12/89518.
S. Kozlovskyi, V. Baidala, O. Tkachuk, and T. Kozyrska, “Managament of the sustainable development of the Agrarian sector of the regions of Ukraine,” Montenegrin J. Econ., vol. 14, no. 4, pp. 175–190, Dec. 2018, doi:10.14254/1800-5845/2018.14-4.12.
M. Khvesyk, H. Obykhod, I. Bystryakov, and Y. Khvesyk, “Assessment of the safety of environment in terms of sustainable development,” Econ. Ann., vol. 170, no. 3–4, pp. 22–26, Sep. 2018, doi:10.21003/ea.V170-04.
G. E. Acquah, B. K. Via, T. Gallagher, N. Billor, O. O. Fasina, and L. G. Eckhardt, “High throughput screening of elite loblolly pine families for chemical and bioenergy traits with near infrared spectroscopy,” Forests, vol. 9, no. 7, Jul. 2018, doi:10.3390/f9070418.
E. Iacovidou, P. Purnell, and M. K. Lim, “The use of smart technologies in enabling construction components reuse: A viable method or a problem creating solution?,” J. Environ. Manage., vol. 216, pp. 214–223, Jun. 2018, doi:10.1016/j.jenvman.2017.04.093.
W. Fan et al., “Life cycle environmental impact assessment of circular agriculture: A case study in Fuqing, China,” Sustain., vol. 10, no. 6, May 2018, doi:10.3390/su10061810.
D. Pulido-Velazquez et al., “Integrated assessment of future potential global change scenarios and their hydrological impacts in coastal aquifers - A new tool to analyse management alternatives in the Plana Oropesa-Torreblanca aquifer,” Hydrol. Earth Syst. Sci., vol. 22, no. 5, pp. 3053–3074, May 2018, doi:10.5194/hess-22-3053-2018.
W. Liu et al., “Investigating water budget dynamics in 18 river basins across the Tibetan Plateau through multiple datasets,” Hydrol. Earth Syst. Sci., vol. 22, no. 1, pp. 351–371, Jan. 2018, doi:10.5194/hess-22-351-2018.
X. Liang, C. Liu, and Z. Li, “Measurement of scenic spots sustainable capacity based on PCA-entropy TOPSIS: A case study from 30 provinces, China,” Int. J. Environ. Res. Public Health, vol. 15, no. 1, Jan. 2018, doi:10.3390/ijerph15010010.
L. Duguleană, M. Bălăşescu, C. Duguleană, S. Bălăşescu, N. A. Neacşu, and L. Dovleac, “Dynamic analysis of european organic agricultural areas in the context of sustainable development,” Outlook Agric., vol. 47, no. 1, pp. 27–35, 2018, doi:10.1177/0030727018761689.
E. A. Kandrashina and A. S. Zotova, “Changes effectiveness assessment on the basis of sustainable development factor,” Probl. Perspect. Manag., vol. 16, no. 1, pp. 437–444, 2018, doi:10.21511/ppm.16(1).2018.41.
M. Straka, A. Rosova, M. Malindzakova, S. Khouri, and K. Culkova, “Evaluating the waste incineration process for sustainable development through modelling, logistics, and simulation,” Polish J. Environ. Stud., vol. 27, no. 6, pp. 2739–2748, 2018, doi:10.15244/pjoes/81062.
J. Fanta and P. Petřík, “Forests and climate change in Czechia: An appeal to responsibility,” J. Landsc. Ecol. Republic), vol. 11, no. 3, pp. 3–16, 2018, doi:10.2478/jlecol-2018-0009.
M. Voda, A. Torpan, and L. Moldovan, “Wild Carpathia future development: From illegal deforestation to ORV sustainable recreation,” Sustain., vol. 9, no. 12, Dec. 2017, doi:10.3390/su9122254.
H. Kasurinen, V. Uusitalo, S. Väisänen, R. Soukka, and J. Havukainen, “From sustainability-as-usual to sustainability excellence in local bioenergy business,” J. Sustain. Dev. Energy, Water Environ. Syst., vol. 5, no. 2, pp. 240–272, Jun. 2017, doi:10.13044/j.sdewes.d5.0146.
O. Mititelu-Ionuş, “Watershed sustainability index development and application: Case study of the Motru river in Romania,” Polish J. Environ. Stud., vol. 26, no. 5, pp. 2095–2105, 2017, doi:10.15244/pjoes/69935.
L. Kauskale, I. Geipele, N. Zeltins, and I. Lecis, “Environmental and energy aspects of construction industry and green buildings,” Latv. J. Phys. Tech. Sci., vol. 54, no. 2, pp. 24–33, Apr. 2017, doi:10.1515/lpts-2017-0010.
S. E. Jørgensen, “Application of ecological models for assessment of sustainability,” Int. J. Des. Nat. Ecodynamics, vol. 11, no. 3, pp. 153–167, 2016, doi:10.2495/DNE-V11-N3-153-167.
H. Wei et al., “Ecosystem services and ecological restoration in the Northern Shaanxi Loess Plateau, China, in relation to climate fluctuation and investments in natural capital,” Sustain., vol. 9, no. 2, 2017, doi:10.3390/su9020199.
J. Helyer and J. F. Samhouri, “Fishing and environmental influences on estimates of unfished herbivorous fish biomass across the Hawaiian Archipelago,” Mar. Ecol. Prog. Ser., vol. 575, pp. 1–15, Jul. 2017, doi:10.3354/meps12235.
J. Diaci, D. Rozenbergar, G. Fidej, and T. A. Nagel, “Challenges for uneven-aged silviculture in restoration of post-disturbance forests in central Europe: A synthesis,” Forests, vol. 8, no. 10, Oct. 2017, doi:10.3390/f8100378.
Z. N. Ismikhanov et al., “Modeling the parameters of socio-ecological and economic sustainable development of the territory (on the example of the Untsukulsky district of the Republic of Dagestan),” South Russ. Ecol. Dev., vol. 13, no. 1, pp. 9–20, 2018, doi:10.18470/1992-1098-2018-1-9-20.
K. Jin, F. Wang, and P. Li, “Responses of vegetation cover to environmental change in large cities of China,” Sustain., vol. 10, no. 1, Jan. 2018, doi:10.3390/su10010270.
op_rights Atribución – No comercial – Compartir igual
restrictedAccess
op_doi https://doi.org/20.500.12494/2839810.1177/027614671878701710.3390/su1008282410.2478/jlecol-2018-001210.3390/resources703004710.24057/2071-9388-2017-10-1-53-6910.17485/ijst/2016/v9i12/8951910.17485/ijst/2016/v9i12/8951810.14254/1800-5845/2018.14-4.1210.210
_version_ 1790595531019386880
spelling ftunivccolomb:oai:repository.ucc.edu.co:20.500.12494/28398 2024-02-11T09:59:46+01:00 Propuesta de los principales elementos que definen el factor ecológico en las zonas rurales, mediante aplicación de herramientas ingenieriles Gallego Forero, Miller Esteban Martinez Montoya, Jordy Dandenis Suarez Roldan, Carolina 2021-12-03 93 p. application/pdf https://hdl.handle.net/20.500.12494/28398 unknown Universidad Cooperativa de Colombia, Facultad de Ingenierías, Ingeniería Industrial, Bogotá Bogotá Ingeniería Industrial A. V. Amparovilchesuves, D. G. Pérez, J. Carlos, and Ó. Macías, “Obstáculos que pueden estar impidiendo la implicación de la ciudadanía y , en particular , de los educadores , en la construcción de un futuro sostenible . Formas de superarlos,” 2014. PNUD, “Apoyo del PNUD a la implementación del Objetivo de Desarrollo Sostenible 13,” pp. 1–16, 2016, [Online]. Available: file:///C:/Users/user/Downloads/SDG_1_Spanish.pdf Banco Mundial, “Medio ambiente: Resultados del sector,” 2017, pp. 1–9, 2017, [Online]. Available: http://www.bancomundial.org/es/results/2013/04/13/environment-results-profile. C. M. sobre M. A. y D. CMMAD, “Preserving Our World: A Consumer’s Guide to the Brundtland Report,” p. 135, 1987, doi: A/42/427. C. I. Cortez Santos and R. A. Vinueza Chérrez, “Economía ambiental y economía ecológica. Eficiencia ambiental. Evaluación monetaria y costes físicos del proceso de producción,” 2012, [Online]. Available: http://www3.uah.es/vicente_marban/ASIGNATURAS/EIA II/curso 2011 2012/tema 2.pdf. C. I. Cortez Santos and R. A. Vinueza Chérrez, “Economía ambiental y economía ecológica. Eficiencia ambiental. Evaluación monetaria y costes físicos del proceso de producción,” 2012. G. T. M. Hult, J. A. Mena, M. A. Gonzalez-Perez, K. Lagerström, and D. T. Hult, “A Ten Country-Company Study of Sustainability and Product-Market Performance: Influences of Doing Good, Warm Glow, and Price Fairness,” J. Macromarketing, vol. 38, no. 3, pp. 242–261, 2018, doi:10.1177/0276146718787017. FAO, Panorama de la pobreza rural en América Latina y el Caribe. 2018. M. Khan, “La pobreza rural en los países en desarrollo. Su relación de la política pública.,” Fondo Monet. Int., p. 21, 2001. S. . Saravia-Matus and P. Aguirre Hörmann, “LO RURAL Y EL DESARROLLO SOSTENIBLE en ALC,” 2030 - Aliment. Agric. y Desarro. Rural en Am. Lat. y el Caribe. FAO, vol. 3, p. 20, 2019. PNUD, “Ambiente y desarrollo sostenible Programas e Iniciativas,” Programa las Nac. Unidas para el Desarro., [Online]. Available: https://www.co.undp.org/content/colombia/es/home/climate-and-disaster-resilience.html. M. Luis, G. Murillo, and I. Introducción, “LOGROS DEL SECTOR AMBIENTE Y DESARROLLO Informe de Gestión 2016-2018,” 2018. S. Australia/Pacifi, “Cómo empezar con los ODS en las universidades. Una guía para las universidades, los centros de educación superior y el sector académico,” Sustain. Dev. Solut. Netw., p. 56, 2017. ONU, “Perspectivas del Medio Ambiente Mundial GEO 6,” Organ. las Nac. Unidas, 2019. R. Hernández Sampieri, C. Fernández Collado, and P. Baptista Lucio, Metodologia de la Investigacion, Sexta. Bogota, 2014. A. Crítico and D. E. Económica, “Fuentes de Información Fuentes de Información,” pp. 1–17, 2015. D. Huamán, “Fuentes de información Contenido,” Organ. Panam. la salud, p. 43, 2011, [Online]. Available: http://bvsper.paho.org/videosdigitales/matedu/cam2011/Fuentes_informacion.pdf?ua=1. Fundibeq, “Diagrama causa-efecto,” Diagrama, pp. 1–13, 2013, [Online]. Available: http://www.fundibeq.org/opencms/export/sites/default/PWF/downloads/gallery/methodology/tools/diagrama_causa_efecto.pdf. Grupo Elsevie and L. Codina, “Scopus : caracterización y guía de uso avanzado · Preparación , búsqueda y exportación de resultados,” Grupo elsevie, 2020. . G. Buela-Casal, “Métodos e indicadores para evaluar la investigación: indicadores por revistas, por investigadores y por países,” no. 2007, pp. 1–3, 2012, [Online]. Available: http://www.infocop.es/view_article.asp?id=4173. Elsevier, “Scopus es la mayor base de datos de citas y resúmenes de bibliografía revisada por pares: revistas científicas, libros y actas de conferencias,” Elsevier. https://www.elsevier.com/es-es/solutions/scopus. DOI, “The DOI system: Factsheets,” p. 2020, 2011, [Online]. Available: http://www.doi.org/factsheets.html. Y. Jiang, S. Sun, Y. Wang, and S. Zheng, “Niche evolution of China’s provincial social-economic-natural complex ecosystems, 2005-2015,” Sustain., vol. 10, no. 8, Aug. 2018, doi:10.3390/su10082824. I. Machar et al., “Environmental modelling of forest vegetation zones as a support tool for sustainable management of central european spruce forests,” J. Landsc. Ecol. Republic), vol. 11, no. 3, pp. 45–63, 2018, doi:10.2478/jlecol-2018-0012. A. Cherepovitsyn, D. Metkin, and A. Gladilin, “An algorithm of management decision-making regarding the feasibility of investing in geological studies of forecasted hydrocarbon resources,” Resources, vol. 7, no. 3, 2018, doi:10.3390/resources7030047. D. Suocheng et al., “Green development modes of the belt and road,” Geogr. Environ. Sustain., vol. 10, no. 1, pp. 53–69, 2017, doi:10.24057/2071-9388-2017-10-1-53-69. V. K. Gavva, A. G. Denisov, and D. P. Arbuzova, “Monitoring of innovative technologies and projects in the sector of essential water resource management aimed at sustainable development of Northern (Arctic) Regions of Russia,” Indian J. Sci. Technol., vol. 9, no. 12, Mar. 2016, doi:10.17485/ijst/2016/v9i12/89519. V. K. Gavva, A. G. Denisov, and D. P. Arbuzova, “Monitoring of innovative technologies and projects in the field of improved industrial energy efficiency and the industrial implementation of new energy sources aimed at sustainable development of the Northern (Arctic) Russian regions,” Indian J. Sci. Technol., vol. 9, no. 12, Mar. 2016, doi:10.17485/ijst/2016/v9i12/89518. S. Kozlovskyi, V. Baidala, O. Tkachuk, and T. Kozyrska, “Managament of the sustainable development of the Agrarian sector of the regions of Ukraine,” Montenegrin J. Econ., vol. 14, no. 4, pp. 175–190, Dec. 2018, doi:10.14254/1800-5845/2018.14-4.12. M. Khvesyk, H. Obykhod, I. Bystryakov, and Y. Khvesyk, “Assessment of the safety of environment in terms of sustainable development,” Econ. Ann., vol. 170, no. 3–4, pp. 22–26, Sep. 2018, doi:10.21003/ea.V170-04. G. E. Acquah, B. K. Via, T. Gallagher, N. Billor, O. O. Fasina, and L. G. Eckhardt, “High throughput screening of elite loblolly pine families for chemical and bioenergy traits with near infrared spectroscopy,” Forests, vol. 9, no. 7, Jul. 2018, doi:10.3390/f9070418. E. Iacovidou, P. Purnell, and M. K. Lim, “The use of smart technologies in enabling construction components reuse: A viable method or a problem creating solution?,” J. Environ. Manage., vol. 216, pp. 214–223, Jun. 2018, doi:10.1016/j.jenvman.2017.04.093. W. Fan et al., “Life cycle environmental impact assessment of circular agriculture: A case study in Fuqing, China,” Sustain., vol. 10, no. 6, May 2018, doi:10.3390/su10061810. D. Pulido-Velazquez et al., “Integrated assessment of future potential global change scenarios and their hydrological impacts in coastal aquifers - A new tool to analyse management alternatives in the Plana Oropesa-Torreblanca aquifer,” Hydrol. Earth Syst. Sci., vol. 22, no. 5, pp. 3053–3074, May 2018, doi:10.5194/hess-22-3053-2018. W. Liu et al., “Investigating water budget dynamics in 18 river basins across the Tibetan Plateau through multiple datasets,” Hydrol. Earth Syst. Sci., vol. 22, no. 1, pp. 351–371, Jan. 2018, doi:10.5194/hess-22-351-2018. X. Liang, C. Liu, and Z. Li, “Measurement of scenic spots sustainable capacity based on PCA-entropy TOPSIS: A case study from 30 provinces, China,” Int. J. Environ. Res. Public Health, vol. 15, no. 1, Jan. 2018, doi:10.3390/ijerph15010010. L. Duguleană, M. Bălăşescu, C. Duguleană, S. Bălăşescu, N. A. Neacşu, and L. Dovleac, “Dynamic analysis of european organic agricultural areas in the context of sustainable development,” Outlook Agric., vol. 47, no. 1, pp. 27–35, 2018, doi:10.1177/0030727018761689. E. A. Kandrashina and A. S. Zotova, “Changes effectiveness assessment on the basis of sustainable development factor,” Probl. Perspect. Manag., vol. 16, no. 1, pp. 437–444, 2018, doi:10.21511/ppm.16(1).2018.41. M. Straka, A. Rosova, M. Malindzakova, S. Khouri, and K. Culkova, “Evaluating the waste incineration process for sustainable development through modelling, logistics, and simulation,” Polish J. Environ. Stud., vol. 27, no. 6, pp. 2739–2748, 2018, doi:10.15244/pjoes/81062. J. Fanta and P. Petřík, “Forests and climate change in Czechia: An appeal to responsibility,” J. Landsc. Ecol. Republic), vol. 11, no. 3, pp. 3–16, 2018, doi:10.2478/jlecol-2018-0009. M. Voda, A. Torpan, and L. Moldovan, “Wild Carpathia future development: From illegal deforestation to ORV sustainable recreation,” Sustain., vol. 9, no. 12, Dec. 2017, doi:10.3390/su9122254. H. Kasurinen, V. Uusitalo, S. Väisänen, R. Soukka, and J. Havukainen, “From sustainability-as-usual to sustainability excellence in local bioenergy business,” J. Sustain. Dev. Energy, Water Environ. Syst., vol. 5, no. 2, pp. 240–272, Jun. 2017, doi:10.13044/j.sdewes.d5.0146. O. Mititelu-Ionuş, “Watershed sustainability index development and application: Case study of the Motru river in Romania,” Polish J. Environ. Stud., vol. 26, no. 5, pp. 2095–2105, 2017, doi:10.15244/pjoes/69935. L. Kauskale, I. Geipele, N. Zeltins, and I. Lecis, “Environmental and energy aspects of construction industry and green buildings,” Latv. J. Phys. Tech. Sci., vol. 54, no. 2, pp. 24–33, Apr. 2017, doi:10.1515/lpts-2017-0010. S. E. Jørgensen, “Application of ecological models for assessment of sustainability,” Int. J. Des. Nat. Ecodynamics, vol. 11, no. 3, pp. 153–167, 2016, doi:10.2495/DNE-V11-N3-153-167. H. Wei et al., “Ecosystem services and ecological restoration in the Northern Shaanxi Loess Plateau, China, in relation to climate fluctuation and investments in natural capital,” Sustain., vol. 9, no. 2, 2017, doi:10.3390/su9020199. J. Helyer and J. F. Samhouri, “Fishing and environmental influences on estimates of unfished herbivorous fish biomass across the Hawaiian Archipelago,” Mar. Ecol. Prog. Ser., vol. 575, pp. 1–15, Jul. 2017, doi:10.3354/meps12235. J. Diaci, D. Rozenbergar, G. Fidej, and T. A. Nagel, “Challenges for uneven-aged silviculture in restoration of post-disturbance forests in central Europe: A synthesis,” Forests, vol. 8, no. 10, Oct. 2017, doi:10.3390/f8100378. Z. N. Ismikhanov et al., “Modeling the parameters of socio-ecological and economic sustainable development of the territory (on the example of the Untsukulsky district of the Republic of Dagestan),” South Russ. Ecol. Dev., vol. 13, no. 1, pp. 9–20, 2018, doi:10.18470/1992-1098-2018-1-9-20. K. Jin, F. Wang, and P. Li, “Responses of vegetation cover to environmental change in large cities of China,” Sustain., vol. 10, no. 1, Jan. 2018, doi:10.3390/su10010270. Atribución – No comercial – Compartir igual restrictedAccess Ecología Zonas rurales Desarrollo sostenible TG 2020 IIN 28398 Trabajos de grado - Pregrado 2021 ftunivccolomb https://doi.org/20.500.12494/2839810.1177/027614671878701710.3390/su1008282410.2478/jlecol-2018-001210.3390/resources703004710.24057/2071-9388-2017-10-1-53-6910.17485/ijst/2016/v9i12/8951910.17485/ijst/2016/v9i12/8951810.14254/1800-5845/2018.14-4.1210.210 2024-01-21T19:10:56Z Thesis Arctic Repositorio Institucional UCC (Universidad Cooperativa de Colombia)