Model for decision-making in integrated solid waste management in amphibious communities of La Mojana, Colombia: a literature review

Authors

  • Jorge Edwin Cárdenas De La Ossa Universidad de Córdoba
  • Olga Lucía Ocampo Universidad Autónoma de Manizales
  • Jairo Toro Díaz Universidad Autónoma de Manizales

DOI:

https://doi.org/10.26507/paper.4167

Keywords:

Cambio Climático, economía circular, Modelo para toma de desiciones, Comunidad anfibia, vulnerabilidad, residuos sólidos

Abstract

The inadequate management of solid waste in the amphibian communities of the La Mojana sub-region of Colombia highlights the need to develop effective strategies for its management. The limited and inefficient coverage of waste collection systems requires a decision-making model that addresses these deficiencies and promotes sustainable practices. This study, through a systematized literature review in databases such as Scopus and Science Direct, analyzes strategies focused on reducing vulnerability, promoting circular economy, and managing climate risk. For the analysis, scientific articles for the period 2014- 2024 were considered, using keywords such as: Vulnerability, Climate Change, Adaptation, Waste Management, Decision-making Model, Wetlands, Circular Economy, Sustainability and La Mojana. The results show little information on traditional and sustainable waste management practices in these communities, as well as their environmental and social impacts. They also reveal significant gaps in environmental education, infrastructure, and public policies. The study highlights the potential of implementing circular economic strategies, multi-criteria decision-making models and innovative technologies to mitigate the negative effects of improper waste disposal, promote sustainability and resilience of these communities in the face of climate change.

References

Aguilera, Maria. (2005). La economía del departamento de Sucre: Ganadería y sector público. Banco de La República. https://www.banrep.gov.co/sites/default/files/publicaciones/archivos/DTSER-63-VE.pdf. https://doi.org/10.32468/dtseru.63

Aguilera, María. (2009). Ciénaga de Ayapel: Riqueza en biodiversidad y recursos hídricos | Banco de la República (banco central de Colombia). 112, 136–197. https://www.banrep.gov.co/es/cienaga-ayapel-riqueza-biodiversidad-y-recursos-hidricos

Ahmed, Z., Mahmud, S., & Acet, D. H. (2022). Circular economy model for developing countries: evidence from Bangladesh. Heliyon, 8(5), e09530. https://doi.org/10.1016/j.heliyon.2022.e09530

De Angelis, R. (2022). Circular Economy Business Models: a Repertoire of Theoretical Relationships and a Research Agenda. Circular Economy and Sustainability, 2(2), 433–446. https://doi.org/10.1007/s43615-021-00133-x

Departamento Nacional de Planeación. (2020). Guía Nacional para la adecuada separación de Residuos. 112. https://colaboracion.dnp.gov.co/CDT/Vivienda Agua y Desarrollo Urbano/Guia_Residuos Solidos_Digital.pdf

Doorga, J. R. S., Rughooputh, S. D. D. V., Chung, S. Y., & McGivern, A. (2022). A geospatial approach for addressing long-term solid waste management issues: Extracting value from waste. Journal of Cleaner Production, 334, 130282. https://doi.org/10.1016/j.jclepro.2021.130282

Dumée, L. F. (2022). Circular materials—An essay on challenges with current manufacturing and recycling strategies as well as on the potential of life cycle integrated designs. In Circular Economy and Sustainability (pp. 359–372). Elsevier. https://doi.org/10.1016/B978-0-12-821664-4.00008-X

Fals Borda, O. (1979). Historia doble de la Costa. Universidad Nacional de Colombia. Banco de la República. El Áncora. https://repositorio.unal.edu.co/handle/unal/2992

Feyzi, S., Khanmohammadi, M., Abedinzadeh, N., & Aalipour, M. (2019). Multi- criteria decision analysis FANP based on GIS for siting municipal solid waste incineration power plant in the north of Iran. Sustainable Cities and Society, 47, 101513. https://doi.org/10.1016/j.scs.2019.101513

Guo, M. (2018). Multi-scale system modelling under circular bioeconomy. Computer Aided Chemical Engineering, 43, 833–838. https://doi.org/10.1016/B978-0-444-64235-6.50146-7

Gutiérrez Campo, R., & Escobar Jiménez, K. (2021). Amphibious territory and dispossession in a protected wetland area of the colombian caribbean. Revista de Estudios Sociales, 2021(76), 75–92. https://doi.org/10.7440/res76.2021.06

Hanson, A.-M. (2017). Women’s environmental health activism around waste and plastic pollution in the coastal wetlands of Yucatán. Gender & Development, 25(2), 221–234. https://doi.org/10.1080/13552074.2017.1335450

Kanani, R. (2022). Equilibrium modeling and statistical analysis of struvite precipitation for nutrient recovery from corn-ethanol downstream process. In Circular Economy and Sustainability (pp. 463–490). Elsevier. https://doi.org/10.1016/B978-0-12-821664-4.00022-4

Konietzko, J., Bocken, N., & Hultink, E. J. (2020). A tool to analyze, ideate and develop circular innovation ecosystems. Sustainability (Switzerland), 12(1). https://doi.org/10.3390/SU12010417

Kurbatova, A., & Abu-Qdais, H. A. (2020). Using multi-criteria decision analysis to select waste to energy technology for a Mega city: The case of Moscow. Sustainability (Switzerland), 12(23), 1–18. https://doi.org/10.3390/su12239828

Mander, Ü., & Chazarenc, F. (2015). Wetland pollutant dynamics and control. Ecological Engineering, 80, 1–7. https://doi.org/10.1016/j.ecoleng.2015.03.003

Mariyam, S., Cochrane, L., Al-Ansari, T., & McKay, G. (2024). A framework to support localized solid waste management decision making: Evidence from Qatar. Environmental Development, 50. https://doi.org/10.1016/j.envdev.2024.100986

Mohebbi, N., Nouri, J., Khorasani, N., & Riazi, B. (2022). Environmental management for human communities around wetlands adjacent urban region by ecological risk approach. International Journal of Human Capital in Urban Management, 7(1), 1–16. https://doi.org/10.22034/IJHCUM.2022.01.01

Preussler, K. H., Mahler, C. F., & Maranho, L. T. (2015). Performance of a system of natural wetlands in leachate of a posttreatment landfill. International Journal of Environmental Science and Technology, 12(8), 2623–2638. https://doi.org/10.1007/s13762-014-0674-0

Rafew, S. M., Razul, I. M., & Kraft, E. (2023). A System Dynamics Based Policy Simulation Approach to Reduce Plastic Waste Flow for Inland and Riverine Area in Khulna City of Bangladesh. Research Square.

Restrepo Marín, L., Arboleda Lopera, A., & Pedroza Valdez, C. (2022). Cultura material del hábitat anfibio: un caso de estudio en Bocas del Atrato en Colombia. Módulo Arquitectura CUC, 30, 70–98. https://doi.org/https://doi.org/10.17981/mod.arq.cuc.30.1.203.03

Sandoval-Reyes, M., He, R., Semeano, R., & Ferrão, P. (2024). Mathematical optimization of waste management systems: Methodological review and perspectives for application. Waste Management, 174, 630–645. https://doi.org/10.1016/j.wasman.2023.10.006

Tien, N. D., Lam Duyen, T. N., Thanh Huyen, N. T., Anh, P. Q., Oanh, N. T., Tich, V. Van, Dat, D. T., Hong Hanh, N. T., & Trang, V. H. (2024). Community-based ecotourism for sustainability: An evaluative analysis of Binh Son district, Quang Ngai province in Vietnam. Social Sciences and Humanities Open, 9. https://doi.org/10.1016/j.ssaho.2024.100807

How to Cite

[1]
J. E. Cárdenas De La Ossa, O. L. Ocampo, and J. Toro Díaz, “Model for decision-making in integrated solid waste management in amphibious communities of La Mojana, Colombia: a literature review”, EIEI ACOFI, Sep. 2025.

Downloads

Download data is not yet available.

Published

2025-09-08
Article metrics
Abstract views
Galley vies
PDF Views
HTML views
Other views
Escanea para compartir
QR Code
Crossref Cited-by logo