Análisis Ambiental de la Producción de Paneles de Celulosa Como Material no Estructural de Construcción Mediante el uso de la Herramienta de Análisis de Ciclo de Vida

Digital

Autores:
Ramírez-Salinas, Laura Cristina
Tipo de recurso:
Fecha de publicación:
2023
Institución:
Universidad de Santander
Repositorio:
Repositorio Universidad de Santander
Idioma:
spa
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oai:repositorio.udes.edu.co:001/10060
Acceso en línea:
https://repositorio.udes.edu.co
https://repositorio.udes.edu.co/handle/001/10060
Palabra clave:
Análisis Ciclo de Vida
Materiales de Construcción Sostenible
Sostenibilidad
Paneles de Celulosa
Paneles de Yeso
Life Cycle Analysis
Sustainability
Sustainable Construction Materials
Cellulose Panels
Gypsum
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http://purl.org/coar/access_right/c_abf2
id RUDES2_4b7dee73e405c0607fbae25d2d8cfd95
oai_identifier_str oai:repositorio.udes.edu.co:001/10060
network_acronym_str RUDES2
network_name_str Repositorio Universidad de Santander
repository_id_str
dc.title.spa.fl_str_mv Análisis Ambiental de la Producción de Paneles de Celulosa Como Material no Estructural de Construcción Mediante el uso de la Herramienta de Análisis de Ciclo de Vida
dc.title.translated.none.fl_str_mv Environmental Analysis of the Production of Cellulose Panels as a non-Structural Building Material Using the Life Cycle Assessment Tool
title Análisis Ambiental de la Producción de Paneles de Celulosa Como Material no Estructural de Construcción Mediante el uso de la Herramienta de Análisis de Ciclo de Vida
spellingShingle Análisis Ambiental de la Producción de Paneles de Celulosa Como Material no Estructural de Construcción Mediante el uso de la Herramienta de Análisis de Ciclo de Vida
Análisis Ciclo de Vida
Materiales de Construcción Sostenible
Sostenibilidad
Paneles de Celulosa
Paneles de Yeso
Life Cycle Analysis
Sustainability
Sustainable Construction Materials
Cellulose Panels
Gypsum
title_short Análisis Ambiental de la Producción de Paneles de Celulosa Como Material no Estructural de Construcción Mediante el uso de la Herramienta de Análisis de Ciclo de Vida
title_full Análisis Ambiental de la Producción de Paneles de Celulosa Como Material no Estructural de Construcción Mediante el uso de la Herramienta de Análisis de Ciclo de Vida
title_fullStr Análisis Ambiental de la Producción de Paneles de Celulosa Como Material no Estructural de Construcción Mediante el uso de la Herramienta de Análisis de Ciclo de Vida
title_full_unstemmed Análisis Ambiental de la Producción de Paneles de Celulosa Como Material no Estructural de Construcción Mediante el uso de la Herramienta de Análisis de Ciclo de Vida
title_sort Análisis Ambiental de la Producción de Paneles de Celulosa Como Material no Estructural de Construcción Mediante el uso de la Herramienta de Análisis de Ciclo de Vida
dc.creator.fl_str_mv Ramírez-Salinas, Laura Cristina
dc.contributor.advisor.none.fl_str_mv Durán-Ordóñez, Julián Fernando
Luna-Guevara, Francisco
dc.contributor.author.none.fl_str_mv Ramírez-Salinas, Laura Cristina
dc.contributor.jury.none.fl_str_mv Caycedo-García, Maya Sian
Mantilla-Suárez, Nadia
dc.subject.proposal.spa.fl_str_mv Análisis Ciclo de Vida
Materiales de Construcción Sostenible
Sostenibilidad
Paneles de Celulosa
Paneles de Yeso
topic Análisis Ciclo de Vida
Materiales de Construcción Sostenible
Sostenibilidad
Paneles de Celulosa
Paneles de Yeso
Life Cycle Analysis
Sustainability
Sustainable Construction Materials
Cellulose Panels
Gypsum
dc.subject.proposal.eng.fl_str_mv Life Cycle Analysis
Sustainability
Sustainable Construction Materials
Cellulose Panels
Gypsum
description Digital
publishDate 2023
dc.date.issued.none.fl_str_mv 2023-12-01
dc.date.accessioned.none.fl_str_mv 2024-03-04T18:56:52Z
dc.date.available.none.fl_str_mv 2024-03-04T18:56:52Z
dc.type.none.fl_str_mv Trabajo de grado - Maestría
dc.type.coar.fl_str_mv http://purl.org/coar/resource_type/c_7a1f
dc.type.coarversion.none.fl_str_mv http://purl.org/coar/version/c_71e4c1898caa6e32
dc.type.content.none.fl_str_mv Text
dc.type.driver.none.fl_str_mv info:eu-repo/semantics/masterThesis
dc.type.redcol.none.fl_str_mv http://purl.org/redcol/resource_type/TP
dc.type.version.none.fl_str_mv info:eu-repo/semantics/submittedVersion
status_str submittedVersion
dc.identifier.instname.none.fl_str_mv Universidad de Santander
dc.identifier.local.none.fl_str_mv T 93.23 R154a
dc.identifier.reponame.none.fl_str_mv Repositorio Digital Institucional Universidad de Santander
dc.identifier.repourl.none.fl_str_mv https://repositorio.udes.edu.co
dc.identifier.uri.none.fl_str_mv https://repositorio.udes.edu.co/handle/001/10060
identifier_str_mv Universidad de Santander
T 93.23 R154a
Repositorio Digital Institucional Universidad de Santander
url https://repositorio.udes.edu.co
https://repositorio.udes.edu.co/handle/001/10060
dc.language.iso.none.fl_str_mv spa
language spa
dc.relation.references.none.fl_str_mv M. Macías and J. G. Navarro, “Metodología y herramienta VERDE para la evaluación de la sostenibilidad en edificios,” Inf. la Construcción, vol. 62, no. 517, pp. 9–12, 2010.
J. Shi, Z. Liu, H. Zhang, Q. Jiang, and T. Li, “Life Cycle Assessment: State of the Art and Future Perspectives,” Recent Patents Mech. Eng., vol. 8, no. 3, pp. 211–221, 2015.
S. A. Miller, “Natural fiber textile reinforced bio-based composites: Mechanical properties, creep, and environmental impacts.,” J. Clean. Prod., 2018.
P. Lopez Hurtado, A. Rouilly, V. Vandenbossche, and C. Raynaud, “A review on the properties of cellulose fibre insulation,” Build. Environ., vol. 96, pp. 170–177, 2016.
M. Buyle, J. Braet, and A. Audenaert, “Life cycle assessment in the construction sector: A review,” Renew. Sustain. Energy Rev., vol. 26, pp. 379–388, 2013.
Organización de las Naciones Unidas, “Asamblea General de las Naciones Unidas.” [Online]. Available: https://www.un.org/es/ga/president/65/issues/sustdev.shtml. [Accessed: 20-Nov-2019].
J. Khedari, B. Suttisonk, N. Pratinthong, and J. Hirunlabh, “New lightweight composite construction materials with low thermal conductivity,” Cem. Concr. Compos., vol. 23, no. 1, pp. 65–70, 2001.
V. Castellani, S. Sala, and N. Mirabella, “Beyond the Throwaway Society : A Life Cycle-Based Assessment of the Environmental Benefit of Reuse,” vol. 11, no. 3, pp. 373–382, 2015.
A. Lúcia et al., “Environmental assessment of bioproducts in development stage: The case of fiberboards made from coconut residues,” J. Clean. Prod., 2017.
N. Lushnikova and L. Dvorkin, Sustainability of gypsum products as a construction material, Second Edi. Elsevier Ltd., 2016.
K. Condeixa, E. Qualharini, D. Boer, and A. Haddad, “An inquiry into the life cycle of systems of inner walls: Comparison of masonry and drywall,” Sustain., vol. 7, no. 6, pp. 7904–7925, 2015.
K. Quesquen, “El sistema Drywall como alternativa constructiva sostenible en edificaciones de viviendas en el distrito de Chiclayo -Lambayeque,” Universidad Nacional de Trujillo, 2019.
C. Meral, O. Pasaoglu, and G. Ozcelik, “Life-Cycle Assessment of a Basic External Drywall System in Turkey,” 11th Int. Congr. Adv. Civ. Eng., no. October, pp. 2–8, 2014.
F. Asdrubali, F. D. Alessandro, and S. Schiavoni, “Asdrubali, F., Alessandro, F. D., & Schiavoni, S. (2020). Sustainable Materials and Technologies A review of unconventional sustainable building insulation materials, 4(2015), 1–17. https://doi.org/10.1016/j.susmat.2015.05.002Sustainable Materials and Tec,” vol. 4, no. 2015, pp. 1–17, 2020.
A. M. Pertuz, “Construcción y Medio Ambiente,” Módulo, vol. 1, no. 9, pp. 105–114, 2010
I. F. Häfliger et al., “Buildings environmental impacts’ sensitivity related to LCA modelling choices of construction materials,” J. Clean. Prod., vol. 156, pp. 805–816, 2017.
GABC - The Global Alliance for Building and Construction.” [Online]. Available: https://www.globalabc.org/. [Accessed: 20-Nov-2019].
X. Li, Y. Zhu, and Z. Zhang, “An LCA-based environmental impact assessment model for construction processes,” Build. Environ., vol. 45, no. 3, pp. 766–775, 2010.
I. Zabalza Bribián, A. Aranda Usón, and S. Scarpellini, “Life cycle assessment in buildings: State-of-the-art and simplified LCA methodology as a complement for building certification,” Build. Environ., vol. 44, no. 12, pp. 2510–2520, 2009.
“Objetivo 11: Ciudades y comunidades sostenibles | PNUD.” [Online]. Available: https://www.undp.org/content/undp/es/home/sustainable-development-goals/goal-11-sustainable-cities-and-communities.html. [Accessed: 20-Nov-2019]
J. A. Lozano-Miralles, M. J. Hermoso-Orzáez, C. Martínez-García, and J. I. Rojas-Sola, “Comparative study on the environmental impact of traditional clay bricks mixed with organic waste using life cycle analysis,” Sustain., vol. 10, no. 8, 2018.
N. Pargana, M. D. Pinheiro, J. D. Silvestre, and J. De Brito, “Comparative environmental life cycle assessment of thermal insulation materials of buildings,” Energy Build., vol. 82, pp. 466–481, 2014.
UN Environment, “Towards low-GHG and resilient buildings,” Nairoibi, Kenya, 2016.
C. Ingrao, A. Lo Giudice, C. Tricase, R. Rana, C. Mbohwa, and V. Siracusa, “Recycled-PET fibre based panels for building thermal insulation: Environmental impact and improvement potential assessment for a greener production,” Sci. Total Environ., vol. 493, pp. 914–929, 2014.
I. Z. Bribián, A. V. Capilla, and A. A. Usón, “Life cycle assessment of building materials : Comparative analysis of energy and environmental impacts and evaluation of the eco-ef fi ciency improvement potential,” Build. Environ., vol. 46, no. 5, pp. 1133–1140, 2011.
A. Salazar Jaramillo, “Determinacion de propiedades físicas y, estimación del consumo energético en la producción, de acero, concreto, vidrio, ladrillo y otros materiales, entre ellos los alternativos y otros de uso no tradicional, utilizados en la construcción de edificaciones,” Cali, Colombia, 2012.
knauf, “Informe Técnico Placa Knauf ST,” Bogotá, Colombia.
A. Jiménez Rivero, R. Sathre, and J. García Navarro, “Life cycle energy and material flow implications of gypsum plasterboard recycling in the European Union,” Resour. Conserv. Recycl., vol. 108, no. January 2013, pp. 171–181, 2016.
S. Tae et al., “Life cycle environmental loads and economic efficiencies of apartment buildings built with plaster board drywall,” Renew. Sustain. Energy Rev., vol. 15, no. 8, pp. 4145–4155, 2011.
E. Mejía Mejía, “Metodología de la investigación científica,” Centro de Producción Editorial e Imprenta de la Universidad Nacional Mayor de San Marcos, Lima, 2005.
K. Sahoo, R. Bergman, and P. Khatri, “Cradle-To-Grave Life-Cycle Assessment of Cellulosic Fiberboard,” Recent Prog. Mater., vol. 3, no. 4, pp. 1–1, 2021.
F. Foroughi, E. R. Ghomi, F. M. Dehaghi, R. Borayek, and S. Ramakrishna, “A review on the life cycle assessment of cellulose: From properties to the potential of making it a low carbon material,” Materials (Basel)., vol. 14, no. 4, pp. 1–23, 2021.
R. K. Pal, P. Goyal, and S. Sehgal, “Effect of cellulose fibre based insulation on thermal performance of buildings,” Mater. Today Proc., vol. 45, no. xxxx, pp. 5778–5781, 2021.
S. Rbihi, H. Neggaoui, L. Laallam, and A. Jouaiti, “Cellulose waste for making sustainable cellulose/concrete bio-composite: functional and environmental value for the thermal insulation,” Biomass Convers. Biorefinery, no. 0123456789, 2022.
Y. Zhanga, L. Ma, S. Ren, M. Huang, Y. Wang, and Q. Zhang, “Comparative life cycle assessment between ordinary gypsum plasterboard and functional phase-change gypsum plasterboard,” Mater. Sci. Forum, vol. 993 MSF, pp. 1473–1480, 2020.
L. F. Cabeza, L. Rincón, V. Vilariño, G. Pérez, and A. Castell, “Life cycle assessment (LCA) and life cycle energy analysis (LCEA) of buildings and the building sector: A review,” Renew. Sustain. Energy Rev., vol. 29, pp. 394–416, 2014.
A. Kylili and P. A. Fokaides, “Life Cycle Assessment (LCA) of Phase Change Materials (PCMs) for building applications: A review,” J. Build. Eng., vol. 6, pp. 133–143, 2016.
A. Faiz, A. Rashid, and S. Yusoff, “A review of life cycle assessment method for building industry,” Renew. Sustain. Energy Rev., vol. 45, pp. 244–248, 2015.
A. Vilches, A. Garcia-Martinez, and B. Sanchez-Montañes, “Life cycle assessment (LCA) of building refurbishment: A literature review,” Energy Build., vol. 135, pp. 286–301, 2017.
M. Bahramian and K. Yetilmezsoy, “Life cycle assessment of the building industry : An overview of two decades of research ( 1995 – 2018 ),” Energy Build., vol. 219, p. 109917, 2020.
E. Leiva Haya, “Análisis de Ciclo de Vida.” p. 42, 2016.
J. Dewulf et al., “Rethinking the area of protection ‘natural resources’ in life cycle assessment,” Environ. Sci. Technol., vol. 49, no. 9, pp. 5310–5317, 2015.
J. L. Cámbara Villanueva, “Análisis de la confiabilidad de las metodologias EICV,” Universidad de Oviedo, 2012.
I. Herrera, “Evaluación Ambiental mediante el Análisis de Ciclo de Vida,” no. August 2016, 2017.
M. Bolea García, “Análisis de Ciclo de Vida de la captura de CO2 en una central térmica y evaluación de alternativas basadas en energías renovables.,” Universidad Zaragoza, 2015.
S. Humbert, M. Margni, O. Jolliet, and various authors PRe, “IMPACT 2002 + : User Guide,” Quantis Sustain. counts, vol. 21, p. 36, 2012.
O. Jolliet et al., “IMPACT 2002+: A New Life Cycle Impact Assessment Methodology,” Int. J. Life Cycle Assess., vol. 8, no. 6, pp. 324–330, 2003.
H. Danso, “Dimensions and Indicators for Sustainable Construction Materials : A Review Related,” Crimson Publ., 2018.
Instituto Colombiano de Normas Tecnicas y Certificacion, Norma Técnica NTC-ISO Colombiana 14040 Gestión Ambiental. Análisis De Ciclo De Vida. Principios Y Marco De Referencia, no. 571. 2007, p. 33.
. Elkington, “Towards the sustainable corporation: Win-win-win business strategies for sustainable development,” Corp. Environ. Responsib., no. June, pp. 109–119, 1994.
T. Klarin, “The Concept of Sustainable Development: From its Beginning to the Contemporary Issues,” Zagreb Int. Rev. Econ. Bus., vol. 21, no. 1, pp. 67–94, May 2018.
G. M. Garmendia, “Desarrollo sostenible y políticas públicas: enfoque de la ONU y ecología política.,” Cienc. Jurídica y Política, pp. 73–78, 2021.
M. Soriano, “Construcción Sostenible.” p. 247, 2012.
International Financial Corporation, “Guía de construcción sostenible para el ahorro de agua y energía en edificaciones,” no. 1. 2013.
S. Schiavoni, F. D’Alessandro, F. Bianchi, and F. Asdrubali, “Insulation materials for the building sector: A review and comparative analysis,” Renew. Sustain. Energy Rev., vol. 62, pp. 988–1011, 2016.
U. Y. A. Tettey, A. Dodoo, and L. Gustavsson, “Effects of different insulation materials on primary energy and CO 2 emission of a multi-storey residential building,” Energy Build., vol. 82, pp. 369–377, 2014.
J. Marino Pascual, “La placa de yeso laminado.” pp. 46–53.
Naciones Unidas, “Objetivos de Desarrollo del Milenio Informe de 2015,” New York, 2015.
Consejo Colombiano de la Construcción Sostenible, “Estado de la Construcción Sostenible en Colombia,” Bogotá, Colombia, 2021.
Z. Liu, P. Pypłacz, M. Ermakova, and P. Konev, “Sustainable Construction as a Competitive Advantage,” Sustainability, vol. 12, 2020.
U. Hossain, S. T. Ng, P. Antwi-afari, and B. Amor, “Circular economy and the construction industry : Existing trends , challenges and prospective framework for sustainable construction,” Renew. Sustain. Energy Rev., vol. 130, no. October 2019, p. 109948, 2020.
United Nationes Environment Programme, “Buildings and Climate Change,” Sustainable Buildings & Climate Initiative. UNEP, Paris, p. 62, 2009.
M. A. Hollman, “Construcción Histórica del Actual Concepto de Desarrollo Sostenible. Antecedentes de Problemáticas Socioeconómicas y Ambientales,” Ciencias Adm., pp. 1–13, 2017.
J. E. Rivera-hernández, N. Blanco-Orozco, Vicente, G. Alcántara Salinas, and E. Pascal Hpubron, “¿ Desarrollo sostenible o sustentable ? La controversia de un concepto.,” Rev. Posgrado y Soc., vol. 15, pp. 57–67, 2017.
V. Prieto-sandoval, C. Jaca, and M. Ormazabal, “Economía circular : Relación con la evolución del concepto de sostenibilidad y estrategias para su implementación,” Mem. Investig. en Ing., vol. 15, pp. 85–95, 2017
J. Mensah, “Sustainable development : Meaning , history , principles , pillars , and implications for human action : Literature review,” Congent Soc. Sci., 2019.
CEPAL, FAO, UNESCO, PNUMA, and PNUD, “Capítulo 1: La Declaración del Milenio,” in Objetivos de Desarrollo del Milenio: Una Mirada desde América Latina y el Caribe, Naciones Unidas, Ed. Santiago de Chile, 2005, pp. 1–24.
A. Aguado Puig, “El desarrollo sostenible: 30 años de evolución desde el Informe de Brundtland,” p. 778, 2018.
A. Guillen and J. L. Abreu, “La industria y el desarrollo sostenible,” Int. J. Good Conscienc., vol. 12, no. 1, pp. 105–126, 2017.
C. G. Gil, “Objetivos de Desarrollo Sostenible ( ODS ): una revisión crítica,” pp. 107–118, 2017. [71] Universidad Pontificia Bolivariana, “Guía para el diseño de edificaciones sostenibles.” Área Metropolitana Valle de Arrubá, p. 133, 2015.
C. Aigbavboa, I. Ohiomah, and T. Zwane, “Sustainable construction practices : ‘ a lazy view ’ of construction professionals in the South Africa construction industry,” Energy Procedia, vol. 105, pp. 3003–3010, 2017.
Tunji-Olayeni, “Sustainability strategies in the construction industry : implications on Green Growth in Nigeria,” IC3E, 2018.
A. L. Laverde, “Construcción Sostenible en Bogotá, de Ideal Normativo a Estándar Constructivo,” Universidad Militar Nueva Granada, 2020.
“Construcción Sostenible - Ministerio de Ambiente y Desarrollo Sostenible.” [Online]. Available: https://www.minambiente.gov.co/asuntos-ambientales-sectorial-y-urbana/construccion-sostenible/. [Accessed: 01-Jun-2022].
S. Dixit, S, Mandal, SN, Sawhney, A and Singh, “Area of Linkage Between Lean Construction and Sustainability in Indian Construction Industry,” Int. J. Civ. Eng. Technol., vol. 8, no. 8, pp. 623–636, 2017.
L. Lima, E. Trindade, L. Alencar, M. Alencar, and L. Silva, “Sustainability in the construction industry : A systematic review of the literature,” J. Clean. Prod., vol. 289, p. 125730, 2021.
N. K. Sharma, “Sustainable Building Material for Green Building Construction , Conservation and Refurbishing,” Int. J. Adv. Sci. Technol., vol. 29, no. 10, pp. 5343–5350, 2020.
E. A. Olivetti and J. M. Cullen, “Toward a sustainable materials system,” INSIGHTS Perspect., vol. 360, no. 6396, 2018.
A. Sarabia-Guarin, J. Sánchez-Molina, and J. C. Leyva-Díaz, “Uso de nutrientes tecnológicos como materia prima en la fabricación de materiales de construcción en el paradigma de la economía circular,” Respuestas, vol. 22, no. 1, pp. 6–16, 2017.
B. Torres, M. Segarra, and L. Bragança, “El bambú como alternativa de construcción sostenible,” Extensionismo, Innovación y Transf. Tecnológica, vol. 5, pp. 389–400, 2019.
L. Czarnecki and D. V. A. N. Gemert, “Innovation in construction materials engineering versus sustainable development,” Tech. Sci., vol. 65, no. 6, 2017.
A. Kylili and P. A. Fokaides, “Policy trends for the sustainability assessment of construction materials: A review,” Sustain. Cities Soc., 2017.
G. Delgado, “Ecología y Ambiente. Diseño y Sustentabilidad en Construcciones de Caña de Guadúa,” Diseño, Arte y Arquit., no. 2, pp. 75–93, 2017.
D. Perrone and A. Filiatrault, “Automated seismic design of non-structural elements with building information modelling,” Autom. Constr., vol. 84, no. September, pp. 166–175, 2017.
A. Baird and H. Ferner, “Damage to non-structural elements in the 2016 Kaikōura earthquake,” Bull. New Zeal. Soc. Earthq. Eng., vol. 50, no. 2, pp. 187–193, 2017.
R. P. Dhakal et al., “Seismic performance of non-structural components and contents in buildings: an overview of NZ research,” Earthq. Eng. Eng. Vib., vol. 15, no. 1, pp. 1–17, 2016.
D. Klemm, B. Heublein, H. P. Fink, and A. Bohn, “Cellulose: Fascinating biopolymer and sustainable raw material,” Angew. Chemie - Int. Ed., vol. 44, no. 22, pp. 3358–3393, 2005.
R. Arévalo, N. Soykeabkaew, and T. Peijs, “Turning low-cost recycled paper into high-value binder-free all-cellulose panel products,” Green Mater., vol. 8, no. 2, pp. 51–59, 2019.
P. Moreno, N. Villamizar, J. Perez, A. Bayona, and J. Román, “Fire-resistant cellulose boards from waste newspaper, boric acid salts, and protein binders.,” Clean Techn Env. Policy, vol. 23, pp. 1537–1546, 2021.
F. Vitrone, D. Ramos, F. Ferrando, and J. Salvadó, “Binderless fiberboards for sustainable construction. Materials, production methods and applications,” J. Build. Eng., vol. 44, no. March, 2021.
T. Dickson and S. Pavía, “Energy performance, environmental impact and cost of a range of insulation materials,” Renew. Sustain. Energy Rev., vol. 140, no. January, p. 110752, 2021.
J. Lazko, N. Landercy, F. Laoutid, L. Dangreau, M. H. Huguet, and O. Talon, “Flame retardant treatments of insulating agro-materials from flax short fibres,” Polym. Degrad. Stab., vol. 98, no. 5, pp. 1043–1051, 2013.
Gypsum Board Manufacturers of Australasia, “Sustainability in the Australian and New Zealand Gypsum.”
G. J. Venta, “Life Cycle Analysis of Gypsum Board and,” Athena Sustain. Mater. Inst., no. March, p. 150, 1997.
K. Weimann, C. Adam, M. Buchert, and J. Sutter, “Environmental evaluation of gypsum plasterboard recycling,” Minerals, vol. 11, no. 2, pp. 1–13, 2021.
L. Bushi and J. Mell, “A Cradle-To-Gate Life Cycle Assessment of ½ ” Regular and 5 / 8 ” Type X Gypsum Wallboard,” 2011.
J. Castro and R. Darío, “RECICLAJE DEL YESO NATURAL A PARTIR DE LA PRODUCCIÓN DE PLACAS DE YESO LAMINADO,” Univ. Nac. Colomb., vol. 21, no. 1, pp. 1–9, 2020.
D. Kellenberger, H.-J. Althaus, N. Jungbluth, T. Künninger, M. Lehmann, and P. Thalmann, “Life Cycle inventories of Building Products,” Final Rep. ecoinvent Data v2.0, no. 7, p. 914, 2007.
EUROGYPSUM, “European Life Cycle Assessment on Plasterboard: European Environmental Declaration,” no. June, pp. 11–25, 2010.
B. Gypsum, “EPD-Gyproc-WallBoard,” 2019.
A. F. Abd Rashid and S. Yusoff, “A review of life cycle assessment method for building industry,” Renew. Sustain. Energy Rev., vol. 45, pp. 244–248, 2015.
E. Franzoni, L. Volpi, and A. Bonoli, “Applicability of life cycle assessment methodology to conservation works in historical building : The case of cleaning,” Energy Build., vol. 214, p. 109844, 2020.
A. Nabavi-Pelesaraei, A. Kaab, F. Hosseini-Fashami, F. Mostashari-Rad, and K.-W. Chau, “Life Cycle Assessment (LCA) Approach to Evaluate Different Waste Management Opportunities,” Adv. Waste-to-Energy Technol., no. December, pp. 195–216, 2019.
T. H. Christensen et al., “Application of LCA modelling in integrated waste management,” Waste Manag., vol. 118, pp. 313–322, 2020.
U. Khan, R. Zevenhoven, and T.-M. Tveit, “Evaluation of the Environmental Sustainability of a Stirling Cycle-Based Heat Pump Using LCA,” Energies, vol. 13, no. 4469, 2020.
The International organization for standardization, ISO 14044 Environmental management-Life cycle assessment-Requirements and guidelines. Suiza, 2006, p. 55.
N. Garcés Castañeda and C. Y. Rangel, “Evaluación del Impacto Ambiental de la Explotación de Asfaltita, en la Mina Juan Pablo ll, de la Esperanza N.S. Mediante el Análisis de Ciclo de Vida,” Universidad Santo Tomás, 2018.
A. Martínez-Rocamora, J. Solís-Guzmán, and M. Marrero, “LCA databases focused on construction materials: A review,” Renew. Sustain. Energy Rev., vol. 58, pp. 565–573, 2016.
A. Quintana, J. Alba, R. del Rey, and I. Guillén-Guillamón, “Comparative Life Cycle Assessment of gypsum plasterboard and a new kind of bio-based epoxy composite containing different natural fibers,” J. Clean. Prod., vol. 185, pp. 408–420, 2018.
C. G. Trujillo, R. H. Rodríguez, and J. A. O. Gaviria, Ley 99 de 1993. 1993, pp. 1–44.
Constitución Política de Colombia 1991, vol. 3, no. 2. 1991, p. 30604.
Departamento Adiminstrativo de la Función Pública, “Decreto 2811 de 1974,” pp. 1–37, 2010.
C. Y. T. Ministerio De Vivienda, “Decreto 1285 de 2015,” pp. 1–4, 2015.
J. M. S. Calderón, J. C. E. Garzón, B. U. Botero, and E. R. Taylor, Decreto Ley 3571 de 2011. 2011, pp. 1–32.
C. Y. T. Ministerio De Vivienda, Decreto 1077 de 2015, vol. 2015. Colombia, 2020.
F. J. Echeverri, A. E. Arango, A. E. Arango, and G. A. Zapata, Ley 1844 de 2017, no. 14. 2017.
“Estrategia Nacional de Economía Circular - Ministerio de Ambiente y Desarrollo Sostenible.” [Online]. Available: https://www.minambiente.gov.co/asuntos-ambientales-sectorial-y-urbana/estrategia-nacional-de-economia-circular/. [Accessed: 29-Aug-2022].
M. C. Santamaría, L. G. M. Urrutia, and L. F. M. Alzate, Ley 1931 de 2018 Gestor Normativo. 2018, pp. 1–14.
V. y D. T. Ministerio de Ambiente, Reglamento Colombiano de Construcción Sismo Resistente NSR-10. 2010.
Ministerio del Inteiror y Justicia, V. y D. T. Ministerio de Ambiente, and Ministerio de Transporte, “Decreto 926 de 2010,” pp. 6–7, 2011.
“ISO - ISO/TR 14047:2012 - Environmental management — Life cycle assessment — Illustrative examples on how to apply ISO 14044 to impact assessment situations.” [Online]. Available: https://www.iso.org/standard/57109.html. [Accessed: 28-Aug-2022].
“ISO - ISO/TS 14048:2002 - Environmental management — Life cycle assessment — Data documentation format.” [Online]. Available: https://www.iso.org/standard/29872.html. [Accessed: 28-Aug-2022].
“ISO - ISO/TR 14049:2012 - Environmental management — Life cycle assessment — Illustrative examples on how to apply ISO 14044 to goal and scope definition and inventory analysis.” [Online]. Available: https://www.iso.org/standard/57110.html. [Accessed: 28-Aug-2022].
“SimaPro.” [Online]. Available: https://www.simapro.mx/. [Accessed: 30-Aug-2022].
“Standard Test Methods for Evaluating Properties of Wood-Base Fiber and Particle Panel Materials.” [Online]. Available: https://www.astm.org/d1037-12.html. [Accessed: 26-Oct-2022].
H. Kouchaki-penchah, M. Shari, H. Mousazadeh, and H. Zarea-hosseinabadi, “Life cycle assessment of medium-density fi berboard manufacturing process in I . R . Iran,” pp. 1–8, 2015.
“Home - ecoinvent.” [Online]. Available: https://ecoinvent.org/. [Accessed: 01-Nov-2023].
P. Ricciardi, E. Belloni, and F. Cotana, “Innovative panels with recycled materials : Thermal and acoustic performance and Life Cycle Assessment,” Appl. Energy, vol. 134, pp. 150–162, 2014.
B. J. Borunda Valverde and G. G. Sánchez, “Análisis de Ciclo De Vida para el Proceso de Producción de Nanopartículas de Hidróxido de Magnesio Utilizadas como Retardantes de Flama,” 2012.
A. Takano, S. Winter, M. Hughes, and L. Linkosalmi, “Comparison of life cycle assessment databases: A case study on building assessment,” Build. Environ., vol. 79, pp. 20–30, 2014.
F. Herrera Simanca, J. Puerta Gómesz, F. Garrido Blanco, and P. Carreño Hernández, “Estimación de la huella de carbono en empresas de Ingeniería, Procura y Construcción,” vol. 16, pp. 200–215, 2021.
Rafael Deaguas, “Comunicación Privada,” Colombia, 2021.
“Knauf Colombia.” [Online]. Available: https://www.knauf.com.co/. [Accessed: 19-Dec-2022].
F. Pacheco-Torgal and J. A. Labrincha, “The future of construction materials research and the seventh un Millennium Development Goal: A few insights,” Constr. Build. Mater., vol. 40, pp. 729–737, 2013.
S. Burnley, R. Phillips, T. Coleman, and T. Rampling, “Energy implications of the thermal recovery of biodegradable municipal waste materials in the United Kingdom,” Waste Manag., vol. 31, no. 9–10, pp. 1949–1959, 2011.
Pre-Sustainability, PRé Consultants B.V. (Versión 9.1.0.11 Analyst Demo). Acceso: Dic., 1, 2023. [Deskopt]. Disponible: "C:\Program Files (x86)\SimaPro\SimaPro.exe"
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spelling Durán-Ordóñez, Julián Fernandoe6e91684-1f58-44c4-84ca-316b604f56c7-1Luna-Guevara, Franciscod6c63ee1-0069-4808-81b9-38ee35049f7a-1Ramírez-Salinas, Laura Cristina64f7fdae-e054-412d-b80e-ccc0bf7bf0a3-1Caycedo-García, Maya Sianb879fde9-ba7a-447d-bd6c-32f3a61cea0d-1Mantilla-Suárez, Nadiaf5edacb3-7da4-49f2-b3c5-4c5efa399c87-12024-03-04T18:56:52Z2024-03-04T18:56:52Z2023-12-01DigitalLa industria de la construcción y el tiempo de uso de los edificios representaron casi el 38 % del total de las emisiones mundiales de CO₂ relacionadas con la energía en el 2019. El sector de la construcción, con el objetivo de mitigar el cambio climático, está utilizando materiales con baja huella de carbono, los cuales son evaluados medioambientalmente por medio de la metodología del Análisis de Ciclo de Vida (ACV). En este proyecto, esta metodología es aplicada para llevar a cabo la caracterización de la categoría de impacto denominada “calentamiento global” enfocada entre la fase gate to gate (puerta a puerta) del sistema cradle to grave (de la cuna a la tumba), para dos materiales no estructurales de construcción: uno con un material base alternativo, el panel de celulosa y dos materiales con un material base convencional, el panel de yeso regular de media pulgada (½”) y el panel de yeso genérico; con el objetivo de calcular y comparar los impactos de cambio climático asociados a cada material. La Evaluación de Impacto de Ciclo de Vida (EICV) de cada material se llevó a cabo con el software SimaPro 9.0.11. Analyst, con datos de inventario tomados de información académica y de las bases de datos Ecoinvent 3, Agro-footprint y USLCI. Se utilizó el método IMPACT 2002+ para la evaluación de impactos ambientales. Los resultados de este proyecto permiten una comparación completa de los impactos de cambio climático de la etapa de producción del panel de celulosa y de los paneles de yeso, evidenciando sus principales “debilidades” y asistiendo en la toma de decisiones para la industria desde un punto de vista ambiental, a favor de la sostenibilidad en el sector de la construcción.The construction industry and the time of use of buildings accounted for almost 38% of total global energy-related CO₂ emissions in 2019. The construction sector, with the objective of reducing climate change, is using materials with a low carbon footprint, which are environmentally evaluated through the Life Cycle Analysis (LCA) methodology. In this project, this methodology is applied to carry out the characterization of the "global warming" impact category, focused on the gate to gate phase of the cradle to grave system, for two non-structural building materials: one with an alternate base material, cellulose board, and two materials with a conventional base material, regular half-inch (½”) gypsum board and generic gypsum board; in order to calculate and compare the impacts on climate change associated with each material. The Life Cycle Impact Assessment (LCIA) of each material was carried out with the SimaPro 9.0.11 software. Analyst, with inventory data taken from academic information and from the Ecoinvent 3, Agro-footprint and USLCI databases. The IMPACT 2002+ method was used for the evaluation of environmental impacts. The results of this project allow a complete comparison of the climate change impacts of the production stage of the cellulose panel and the gypsum panels, evidencing their main "weaknesses" and assisting in decision-making for the industry from an environmental point of view, in favor of sustainability in the construction sector.MaestríaMagíster en Recursos EnergéticosIntroducción 25 Justificación 27 Objetivos 30 Objetivo General 30 Objetivos Específicos 30 Diseño Metodológico 31 Tipo de Investigación 31 El Enfoque de la Investigación 31 Método de la Investigación 32 Estado del Arte 33 Fundamentación Teórica 38 Marco Conceptual 38 Definiciones de Conceptos Estructurales del Análisis de Ciclo de Vida 38 Conceptos Complementarios del Análisis de Ciclo de Vida. 41 Marco Teórico 44 Construcción 44 Desarrollo Sostenible 45 Construcción Sostenible 49 Importancia de los Materiales en la Construcción Sostenible 51 Materiales no Estructurales de Construcción 53 Paneles de Celulosa 54 Paneles de Yeso 57 Análisis de Ciclo de Vida 60 Definición del Alcance y los Objetivos 62 Análisis del Inventario del Ciclo de Vida 62 Evaluación del Impacto del Ciclo de Vida 64 Interpretación 69 Software Para Análisis de Ciclo de Vida 70 Simapro® 70 Guía Básica de Interpretación de Simapro® 71 Creación de un Proceso en Simapro 76 Marco Legal 83 Metodología Propuesta 87 Estructura Metodológica 87 Desarrollo Metodológico: Desarrollo del Análisis de Ciclo de Vida 89 Definición del Objetivo y Alcance 89 Objetivo del Estudio 90 Alcance 91 Análisis del Inventario del Ciclo de Vida (ICV) 96 Evaluación de Impacto de Ciclo de Vida (EICV) 103 Comparación Específica 105 Evaluación de Impacto Ambiental Para Cada Producto 112 Comparación General 124 Interpretación 126 Interpretación de Resultados del Análisis de Ciclo de Vida 127 Análisis de Resultados de la Evaluación de Impacto de Ciclo de Vida 131 Análisis de Resultados 148 Conclusiones 153 En Cuanto a los Objetivos 153 Generales 154 Limitaciones 156 Recomendaciones 157 Referencias Bibliográficas 158170 papplication/pdfapplication/mswordUniversidad de SantanderT 93.23 R154aRepositorio Digital Institucional Universidad de Santanderhttps://repositorio.udes.edu.cohttps://repositorio.udes.edu.co/handle/001/10060spaUniversidad de SantanderBucaramangaFacultad de Ingenierías y TecnologíasBucaramanga, ColombiaMaestría en Recursos EnergéticosM. Macías and J. G. Navarro, “Metodología y herramienta VERDE para la evaluación de la sostenibilidad en edificios,” Inf. la Construcción, vol. 62, no. 517, pp. 9–12, 2010.J. Shi, Z. Liu, H. Zhang, Q. Jiang, and T. Li, “Life Cycle Assessment: State of the Art and Future Perspectives,” Recent Patents Mech. Eng., vol. 8, no. 3, pp. 211–221, 2015.S. A. Miller, “Natural fiber textile reinforced bio-based composites: Mechanical properties, creep, and environmental impacts.,” J. Clean. Prod., 2018.P. Lopez Hurtado, A. Rouilly, V. Vandenbossche, and C. Raynaud, “A review on the properties of cellulose fibre insulation,” Build. Environ., vol. 96, pp. 170–177, 2016.M. Buyle, J. Braet, and A. Audenaert, “Life cycle assessment in the construction sector: A review,” Renew. Sustain. Energy Rev., vol. 26, pp. 379–388, 2013.Organización de las Naciones Unidas, “Asamblea General de las Naciones Unidas.” [Online]. Available: https://www.un.org/es/ga/president/65/issues/sustdev.shtml. [Accessed: 20-Nov-2019].J. Khedari, B. Suttisonk, N. Pratinthong, and J. Hirunlabh, “New lightweight composite construction materials with low thermal conductivity,” Cem. Concr. Compos., vol. 23, no. 1, pp. 65–70, 2001.V. Castellani, S. Sala, and N. Mirabella, “Beyond the Throwaway Society : A Life Cycle-Based Assessment of the Environmental Benefit of Reuse,” vol. 11, no. 3, pp. 373–382, 2015.A. Lúcia et al., “Environmental assessment of bioproducts in development stage: The case of fiberboards made from coconut residues,” J. Clean. Prod., 2017.N. Lushnikova and L. Dvorkin, Sustainability of gypsum products as a construction material, Second Edi. Elsevier Ltd., 2016.K. Condeixa, E. Qualharini, D. Boer, and A. Haddad, “An inquiry into the life cycle of systems of inner walls: Comparison of masonry and drywall,” Sustain., vol. 7, no. 6, pp. 7904–7925, 2015.K. Quesquen, “El sistema Drywall como alternativa constructiva sostenible en edificaciones de viviendas en el distrito de Chiclayo -Lambayeque,” Universidad Nacional de Trujillo, 2019.C. Meral, O. Pasaoglu, and G. Ozcelik, “Life-Cycle Assessment of a Basic External Drywall System in Turkey,” 11th Int. Congr. Adv. Civ. Eng., no. October, pp. 2–8, 2014.F. Asdrubali, F. D. Alessandro, and S. Schiavoni, “Asdrubali, F., Alessandro, F. D., & Schiavoni, S. (2020). Sustainable Materials and Technologies A review of unconventional sustainable building insulation materials, 4(2015), 1–17. https://doi.org/10.1016/j.susmat.2015.05.002Sustainable Materials and Tec,” vol. 4, no. 2015, pp. 1–17, 2020.A. M. Pertuz, “Construcción y Medio Ambiente,” Módulo, vol. 1, no. 9, pp. 105–114, 2010I. F. Häfliger et al., “Buildings environmental impacts’ sensitivity related to LCA modelling choices of construction materials,” J. Clean. Prod., vol. 156, pp. 805–816, 2017.GABC - The Global Alliance for Building and Construction.” [Online]. Available: https://www.globalabc.org/. [Accessed: 20-Nov-2019].X. Li, Y. Zhu, and Z. Zhang, “An LCA-based environmental impact assessment model for construction processes,” Build. Environ., vol. 45, no. 3, pp. 766–775, 2010.I. Zabalza Bribián, A. Aranda Usón, and S. Scarpellini, “Life cycle assessment in buildings: State-of-the-art and simplified LCA methodology as a complement for building certification,” Build. Environ., vol. 44, no. 12, pp. 2510–2520, 2009.“Objetivo 11: Ciudades y comunidades sostenibles | PNUD.” [Online]. Available: https://www.undp.org/content/undp/es/home/sustainable-development-goals/goal-11-sustainable-cities-and-communities.html. [Accessed: 20-Nov-2019]J. A. Lozano-Miralles, M. J. Hermoso-Orzáez, C. Martínez-García, and J. I. Rojas-Sola, “Comparative study on the environmental impact of traditional clay bricks mixed with organic waste using life cycle analysis,” Sustain., vol. 10, no. 8, 2018.N. Pargana, M. D. Pinheiro, J. D. Silvestre, and J. De Brito, “Comparative environmental life cycle assessment of thermal insulation materials of buildings,” Energy Build., vol. 82, pp. 466–481, 2014.UN Environment, “Towards low-GHG and resilient buildings,” Nairoibi, Kenya, 2016.C. Ingrao, A. Lo Giudice, C. Tricase, R. Rana, C. Mbohwa, and V. Siracusa, “Recycled-PET fibre based panels for building thermal insulation: Environmental impact and improvement potential assessment for a greener production,” Sci. Total Environ., vol. 493, pp. 914–929, 2014.I. Z. Bribián, A. V. Capilla, and A. A. Usón, “Life cycle assessment of building materials : Comparative analysis of energy and environmental impacts and evaluation of the eco-ef fi ciency improvement potential,” Build. Environ., vol. 46, no. 5, pp. 1133–1140, 2011.A. Salazar Jaramillo, “Determinacion de propiedades físicas y, estimación del consumo energético en la producción, de acero, concreto, vidrio, ladrillo y otros materiales, entre ellos los alternativos y otros de uso no tradicional, utilizados en la construcción de edificaciones,” Cali, Colombia, 2012.knauf, “Informe Técnico Placa Knauf ST,” Bogotá, Colombia.A. Jiménez Rivero, R. Sathre, and J. García Navarro, “Life cycle energy and material flow implications of gypsum plasterboard recycling in the European Union,” Resour. Conserv. Recycl., vol. 108, no. January 2013, pp. 171–181, 2016.S. Tae et al., “Life cycle environmental loads and economic efficiencies of apartment buildings built with plaster board drywall,” Renew. Sustain. Energy Rev., vol. 15, no. 8, pp. 4145–4155, 2011.E. Mejía Mejía, “Metodología de la investigación científica,” Centro de Producción Editorial e Imprenta de la Universidad Nacional Mayor de San Marcos, Lima, 2005.K. Sahoo, R. Bergman, and P. Khatri, “Cradle-To-Grave Life-Cycle Assessment of Cellulosic Fiberboard,” Recent Prog. Mater., vol. 3, no. 4, pp. 1–1, 2021.F. Foroughi, E. R. Ghomi, F. M. Dehaghi, R. Borayek, and S. Ramakrishna, “A review on the life cycle assessment of cellulose: From properties to the potential of making it a low carbon material,” Materials (Basel)., vol. 14, no. 4, pp. 1–23, 2021.R. K. Pal, P. Goyal, and S. Sehgal, “Effect of cellulose fibre based insulation on thermal performance of buildings,” Mater. Today Proc., vol. 45, no. xxxx, pp. 5778–5781, 2021.S. Rbihi, H. Neggaoui, L. Laallam, and A. Jouaiti, “Cellulose waste for making sustainable cellulose/concrete bio-composite: functional and environmental value for the thermal insulation,” Biomass Convers. Biorefinery, no. 0123456789, 2022.Y. Zhanga, L. Ma, S. Ren, M. Huang, Y. Wang, and Q. Zhang, “Comparative life cycle assessment between ordinary gypsum plasterboard and functional phase-change gypsum plasterboard,” Mater. Sci. Forum, vol. 993 MSF, pp. 1473–1480, 2020.L. F. Cabeza, L. Rincón, V. Vilariño, G. Pérez, and A. Castell, “Life cycle assessment (LCA) and life cycle energy analysis (LCEA) of buildings and the building sector: A review,” Renew. Sustain. Energy Rev., vol. 29, pp. 394–416, 2014.A. Kylili and P. A. Fokaides, “Life Cycle Assessment (LCA) of Phase Change Materials (PCMs) for building applications: A review,” J. Build. Eng., vol. 6, pp. 133–143, 2016.A. Faiz, A. Rashid, and S. Yusoff, “A review of life cycle assessment method for building industry,” Renew. Sustain. Energy Rev., vol. 45, pp. 244–248, 2015.A. Vilches, A. Garcia-Martinez, and B. Sanchez-Montañes, “Life cycle assessment (LCA) of building refurbishment: A literature review,” Energy Build., vol. 135, pp. 286–301, 2017.M. Bahramian and K. Yetilmezsoy, “Life cycle assessment of the building industry : An overview of two decades of research ( 1995 – 2018 ),” Energy Build., vol. 219, p. 109917, 2020.E. Leiva Haya, “Análisis de Ciclo de Vida.” p. 42, 2016.J. Dewulf et al., “Rethinking the area of protection ‘natural resources’ in life cycle assessment,” Environ. Sci. Technol., vol. 49, no. 9, pp. 5310–5317, 2015.J. L. Cámbara Villanueva, “Análisis de la confiabilidad de las metodologias EICV,” Universidad de Oviedo, 2012.I. Herrera, “Evaluación Ambiental mediante el Análisis de Ciclo de Vida,” no. August 2016, 2017.M. Bolea García, “Análisis de Ciclo de Vida de la captura de CO2 en una central térmica y evaluación de alternativas basadas en energías renovables.,” Universidad Zaragoza, 2015.S. Humbert, M. Margni, O. Jolliet, and various authors PRe, “IMPACT 2002 + : User Guide,” Quantis Sustain. counts, vol. 21, p. 36, 2012.O. Jolliet et al., “IMPACT 2002+: A New Life Cycle Impact Assessment Methodology,” Int. J. Life Cycle Assess., vol. 8, no. 6, pp. 324–330, 2003.H. Danso, “Dimensions and Indicators for Sustainable Construction Materials : A Review Related,” Crimson Publ., 2018.Instituto Colombiano de Normas Tecnicas y Certificacion, Norma Técnica NTC-ISO Colombiana 14040 Gestión Ambiental. Análisis De Ciclo De Vida. Principios Y Marco De Referencia, no. 571. 2007, p. 33.. Elkington, “Towards the sustainable corporation: Win-win-win business strategies for sustainable development,” Corp. Environ. Responsib., no. June, pp. 109–119, 1994.T. Klarin, “The Concept of Sustainable Development: From its Beginning to the Contemporary Issues,” Zagreb Int. Rev. Econ. Bus., vol. 21, no. 1, pp. 67–94, May 2018.G. M. Garmendia, “Desarrollo sostenible y políticas públicas: enfoque de la ONU y ecología política.,” Cienc. Jurídica y Política, pp. 73–78, 2021.M. Soriano, “Construcción Sostenible.” p. 247, 2012.International Financial Corporation, “Guía de construcción sostenible para el ahorro de agua y energía en edificaciones,” no. 1. 2013.S. Schiavoni, F. D’Alessandro, F. Bianchi, and F. Asdrubali, “Insulation materials for the building sector: A review and comparative analysis,” Renew. Sustain. Energy Rev., vol. 62, pp. 988–1011, 2016.U. Y. A. Tettey, A. Dodoo, and L. Gustavsson, “Effects of different insulation materials on primary energy and CO 2 emission of a multi-storey residential building,” Energy Build., vol. 82, pp. 369–377, 2014.J. Marino Pascual, “La placa de yeso laminado.” pp. 46–53.Naciones Unidas, “Objetivos de Desarrollo del Milenio Informe de 2015,” New York, 2015.Consejo Colombiano de la Construcción Sostenible, “Estado de la Construcción Sostenible en Colombia,” Bogotá, Colombia, 2021.Z. Liu, P. Pypłacz, M. Ermakova, and P. Konev, “Sustainable Construction as a Competitive Advantage,” Sustainability, vol. 12, 2020.U. Hossain, S. T. Ng, P. Antwi-afari, and B. Amor, “Circular economy and the construction industry : Existing trends , challenges and prospective framework for sustainable construction,” Renew. Sustain. Energy Rev., vol. 130, no. October 2019, p. 109948, 2020.United Nationes Environment Programme, “Buildings and Climate Change,” Sustainable Buildings & Climate Initiative. UNEP, Paris, p. 62, 2009.M. A. Hollman, “Construcción Histórica del Actual Concepto de Desarrollo Sostenible. Antecedentes de Problemáticas Socioeconómicas y Ambientales,” Ciencias Adm., pp. 1–13, 2017.J. E. Rivera-hernández, N. Blanco-Orozco, Vicente, G. Alcántara Salinas, and E. Pascal Hpubron, “¿ Desarrollo sostenible o sustentable ? La controversia de un concepto.,” Rev. Posgrado y Soc., vol. 15, pp. 57–67, 2017.V. Prieto-sandoval, C. Jaca, and M. Ormazabal, “Economía circular : Relación con la evolución del concepto de sostenibilidad y estrategias para su implementación,” Mem. Investig. en Ing., vol. 15, pp. 85–95, 2017J. Mensah, “Sustainable development : Meaning , history , principles , pillars , and implications for human action : Literature review,” Congent Soc. Sci., 2019.CEPAL, FAO, UNESCO, PNUMA, and PNUD, “Capítulo 1: La Declaración del Milenio,” in Objetivos de Desarrollo del Milenio: Una Mirada desde América Latina y el Caribe, Naciones Unidas, Ed. Santiago de Chile, 2005, pp. 1–24.A. Aguado Puig, “El desarrollo sostenible: 30 años de evolución desde el Informe de Brundtland,” p. 778, 2018.A. Guillen and J. L. Abreu, “La industria y el desarrollo sostenible,” Int. J. Good Conscienc., vol. 12, no. 1, pp. 105–126, 2017.C. G. Gil, “Objetivos de Desarrollo Sostenible ( ODS ): una revisión crítica,” pp. 107–118, 2017. [71] Universidad Pontificia Bolivariana, “Guía para el diseño de edificaciones sostenibles.” Área Metropolitana Valle de Arrubá, p. 133, 2015.C. Aigbavboa, I. Ohiomah, and T. Zwane, “Sustainable construction practices : ‘ a lazy view ’ of construction professionals in the South Africa construction industry,” Energy Procedia, vol. 105, pp. 3003–3010, 2017.Tunji-Olayeni, “Sustainability strategies in the construction industry : implications on Green Growth in Nigeria,” IC3E, 2018.A. L. Laverde, “Construcción Sostenible en Bogotá, de Ideal Normativo a Estándar Constructivo,” Universidad Militar Nueva Granada, 2020.“Construcción Sostenible - Ministerio de Ambiente y Desarrollo Sostenible.” [Online]. Available: https://www.minambiente.gov.co/asuntos-ambientales-sectorial-y-urbana/construccion-sostenible/. [Accessed: 01-Jun-2022].S. Dixit, S, Mandal, SN, Sawhney, A and Singh, “Area of Linkage Between Lean Construction and Sustainability in Indian Construction Industry,” Int. J. Civ. Eng. Technol., vol. 8, no. 8, pp. 623–636, 2017.L. Lima, E. Trindade, L. Alencar, M. Alencar, and L. Silva, “Sustainability in the construction industry : A systematic review of the literature,” J. Clean. Prod., vol. 289, p. 125730, 2021.N. K. Sharma, “Sustainable Building Material for Green Building Construction , Conservation and Refurbishing,” Int. J. Adv. Sci. Technol., vol. 29, no. 10, pp. 5343–5350, 2020.E. A. Olivetti and J. M. Cullen, “Toward a sustainable materials system,” INSIGHTS Perspect., vol. 360, no. 6396, 2018.A. Sarabia-Guarin, J. Sánchez-Molina, and J. C. Leyva-Díaz, “Uso de nutrientes tecnológicos como materia prima en la fabricación de materiales de construcción en el paradigma de la economía circular,” Respuestas, vol. 22, no. 1, pp. 6–16, 2017.B. Torres, M. Segarra, and L. Bragança, “El bambú como alternativa de construcción sostenible,” Extensionismo, Innovación y Transf. Tecnológica, vol. 5, pp. 389–400, 2019.L. Czarnecki and D. V. A. N. Gemert, “Innovation in construction materials engineering versus sustainable development,” Tech. Sci., vol. 65, no. 6, 2017.A. Kylili and P. A. Fokaides, “Policy trends for the sustainability assessment of construction materials: A review,” Sustain. Cities Soc., 2017.G. Delgado, “Ecología y Ambiente. Diseño y Sustentabilidad en Construcciones de Caña de Guadúa,” Diseño, Arte y Arquit., no. 2, pp. 75–93, 2017.D. Perrone and A. Filiatrault, “Automated seismic design of non-structural elements with building information modelling,” Autom. Constr., vol. 84, no. September, pp. 166–175, 2017.A. Baird and H. Ferner, “Damage to non-structural elements in the 2016 Kaikōura earthquake,” Bull. New Zeal. Soc. Earthq. Eng., vol. 50, no. 2, pp. 187–193, 2017.R. P. Dhakal et al., “Seismic performance of non-structural components and contents in buildings: an overview of NZ research,” Earthq. Eng. Eng. Vib., vol. 15, no. 1, pp. 1–17, 2016.D. Klemm, B. Heublein, H. P. Fink, and A. Bohn, “Cellulose: Fascinating biopolymer and sustainable raw material,” Angew. Chemie - Int. Ed., vol. 44, no. 22, pp. 3358–3393, 2005.R. Arévalo, N. Soykeabkaew, and T. Peijs, “Turning low-cost recycled paper into high-value binder-free all-cellulose panel products,” Green Mater., vol. 8, no. 2, pp. 51–59, 2019.P. Moreno, N. Villamizar, J. Perez, A. Bayona, and J. Román, “Fire-resistant cellulose boards from waste newspaper, boric acid salts, and protein binders.,” Clean Techn Env. Policy, vol. 23, pp. 1537–1546, 2021.F. Vitrone, D. Ramos, F. Ferrando, and J. Salvadó, “Binderless fiberboards for sustainable construction. Materials, production methods and applications,” J. Build. Eng., vol. 44, no. March, 2021.T. Dickson and S. Pavía, “Energy performance, environmental impact and cost of a range of insulation materials,” Renew. Sustain. Energy Rev., vol. 140, no. January, p. 110752, 2021.J. Lazko, N. Landercy, F. Laoutid, L. Dangreau, M. H. Huguet, and O. Talon, “Flame retardant treatments of insulating agro-materials from flax short fibres,” Polym. Degrad. Stab., vol. 98, no. 5, pp. 1043–1051, 2013.Gypsum Board Manufacturers of Australasia, “Sustainability in the Australian and New Zealand Gypsum.”G. J. Venta, “Life Cycle Analysis of Gypsum Board and,” Athena Sustain. Mater. Inst., no. March, p. 150, 1997.K. Weimann, C. Adam, M. Buchert, and J. Sutter, “Environmental evaluation of gypsum plasterboard recycling,” Minerals, vol. 11, no. 2, pp. 1–13, 2021.L. Bushi and J. Mell, “A Cradle-To-Gate Life Cycle Assessment of ½ ” Regular and 5 / 8 ” Type X Gypsum Wallboard,” 2011.J. Castro and R. Darío, “RECICLAJE DEL YESO NATURAL A PARTIR DE LA PRODUCCIÓN DE PLACAS DE YESO LAMINADO,” Univ. Nac. Colomb., vol. 21, no. 1, pp. 1–9, 2020.D. Kellenberger, H.-J. Althaus, N. Jungbluth, T. Künninger, M. Lehmann, and P. Thalmann, “Life Cycle inventories of Building Products,” Final Rep. ecoinvent Data v2.0, no. 7, p. 914, 2007.EUROGYPSUM, “European Life Cycle Assessment on Plasterboard: European Environmental Declaration,” no. June, pp. 11–25, 2010.B. Gypsum, “EPD-Gyproc-WallBoard,” 2019.A. F. Abd Rashid and S. Yusoff, “A review of life cycle assessment method for building industry,” Renew. Sustain. Energy Rev., vol. 45, pp. 244–248, 2015.E. Franzoni, L. Volpi, and A. Bonoli, “Applicability of life cycle assessment methodology to conservation works in historical building : The case of cleaning,” Energy Build., vol. 214, p. 109844, 2020.A. Nabavi-Pelesaraei, A. Kaab, F. Hosseini-Fashami, F. Mostashari-Rad, and K.-W. Chau, “Life Cycle Assessment (LCA) Approach to Evaluate Different Waste Management Opportunities,” Adv. Waste-to-Energy Technol., no. December, pp. 195–216, 2019.T. H. Christensen et al., “Application of LCA modelling in integrated waste management,” Waste Manag., vol. 118, pp. 313–322, 2020.U. Khan, R. Zevenhoven, and T.-M. Tveit, “Evaluation of the Environmental Sustainability of a Stirling Cycle-Based Heat Pump Using LCA,” Energies, vol. 13, no. 4469, 2020.The International organization for standardization, ISO 14044 Environmental management-Life cycle assessment-Requirements and guidelines. Suiza, 2006, p. 55.N. Garcés Castañeda and C. Y. Rangel, “Evaluación del Impacto Ambiental de la Explotación de Asfaltita, en la Mina Juan Pablo ll, de la Esperanza N.S. Mediante el Análisis de Ciclo de Vida,” Universidad Santo Tomás, 2018.A. Martínez-Rocamora, J. Solís-Guzmán, and M. Marrero, “LCA databases focused on construction materials: A review,” Renew. Sustain. Energy Rev., vol. 58, pp. 565–573, 2016.A. Quintana, J. Alba, R. del Rey, and I. Guillén-Guillamón, “Comparative Life Cycle Assessment of gypsum plasterboard and a new kind of bio-based epoxy composite containing different natural fibers,” J. Clean. Prod., vol. 185, pp. 408–420, 2018.C. G. Trujillo, R. H. Rodríguez, and J. A. O. Gaviria, Ley 99 de 1993. 1993, pp. 1–44.Constitución Política de Colombia 1991, vol. 3, no. 2. 1991, p. 30604.Departamento Adiminstrativo de la Función Pública, “Decreto 2811 de 1974,” pp. 1–37, 2010.C. Y. T. Ministerio De Vivienda, “Decreto 1285 de 2015,” pp. 1–4, 2015.J. M. S. Calderón, J. C. E. Garzón, B. U. Botero, and E. R. Taylor, Decreto Ley 3571 de 2011. 2011, pp. 1–32.C. Y. T. Ministerio De Vivienda, Decreto 1077 de 2015, vol. 2015. Colombia, 2020.F. J. Echeverri, A. E. Arango, A. E. Arango, and G. A. Zapata, Ley 1844 de 2017, no. 14. 2017.“Estrategia Nacional de Economía Circular - Ministerio de Ambiente y Desarrollo Sostenible.” [Online]. Available: https://www.minambiente.gov.co/asuntos-ambientales-sectorial-y-urbana/estrategia-nacional-de-economia-circular/. [Accessed: 29-Aug-2022].M. C. Santamaría, L. G. M. Urrutia, and L. F. M. Alzate, Ley 1931 de 2018 Gestor Normativo. 2018, pp. 1–14.V. y D. T. Ministerio de Ambiente, Reglamento Colombiano de Construcción Sismo Resistente NSR-10. 2010.Ministerio del Inteiror y Justicia, V. y D. T. Ministerio de Ambiente, and Ministerio de Transporte, “Decreto 926 de 2010,” pp. 6–7, 2011.“ISO - ISO/TR 14047:2012 - Environmental management — Life cycle assessment — Illustrative examples on how to apply ISO 14044 to impact assessment situations.” [Online]. Available: https://www.iso.org/standard/57109.html. [Accessed: 28-Aug-2022].“ISO - ISO/TS 14048:2002 - Environmental management — Life cycle assessment — Data documentation format.” [Online]. Available: https://www.iso.org/standard/29872.html. [Accessed: 28-Aug-2022].“ISO - ISO/TR 14049:2012 - Environmental management — Life cycle assessment — Illustrative examples on how to apply ISO 14044 to goal and scope definition and inventory analysis.” [Online]. Available: https://www.iso.org/standard/57110.html. [Accessed: 28-Aug-2022].“SimaPro.” [Online]. Available: https://www.simapro.mx/. [Accessed: 30-Aug-2022].“Standard Test Methods for Evaluating Properties of Wood-Base Fiber and Particle Panel Materials.” [Online]. Available: https://www.astm.org/d1037-12.html. [Accessed: 26-Oct-2022].H. Kouchaki-penchah, M. Shari, H. Mousazadeh, and H. Zarea-hosseinabadi, “Life cycle assessment of medium-density fi berboard manufacturing process in I . R . Iran,” pp. 1–8, 2015.“Home - ecoinvent.” [Online]. Available: https://ecoinvent.org/. [Accessed: 01-Nov-2023].P. Ricciardi, E. Belloni, and F. Cotana, “Innovative panels with recycled materials : Thermal and acoustic performance and Life Cycle Assessment,” Appl. Energy, vol. 134, pp. 150–162, 2014.B. J. Borunda Valverde and G. G. Sánchez, “Análisis de Ciclo De Vida para el Proceso de Producción de Nanopartículas de Hidróxido de Magnesio Utilizadas como Retardantes de Flama,” 2012.A. Takano, S. Winter, M. Hughes, and L. Linkosalmi, “Comparison of life cycle assessment databases: A case study on building assessment,” Build. Environ., vol. 79, pp. 20–30, 2014.F. Herrera Simanca, J. Puerta Gómesz, F. Garrido Blanco, and P. Carreño Hernández, “Estimación de la huella de carbono en empresas de Ingeniería, Procura y Construcción,” vol. 16, pp. 200–215, 2021.Rafael Deaguas, “Comunicación Privada,” Colombia, 2021.“Knauf Colombia.” [Online]. Available: https://www.knauf.com.co/. [Accessed: 19-Dec-2022].F. Pacheco-Torgal and J. A. Labrincha, “The future of construction materials research and the seventh un Millennium Development Goal: A few insights,” Constr. Build. Mater., vol. 40, pp. 729–737, 2013.S. Burnley, R. Phillips, T. Coleman, and T. Rampling, “Energy implications of the thermal recovery of biodegradable municipal waste materials in the United Kingdom,” Waste Manag., vol. 31, no. 9–10, pp. 1949–1959, 2011.Pre-Sustainability, PRé Consultants B.V. (Versión 9.1.0.11 Analyst Demo). Acceso: Dic., 1, 2023. [Deskopt]. 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