A Model for the Assessment of the Water Footprint …
99
10. Buyle M, Braet J, Audenaert A (2013) Life cycle assessment in the construction sector: a
review. Renew Sustain Energy Rev 26:379–388. https://doi.org/10.1016/j.rser.2013.05.001
11. Cabeza LF, Rincón L, Vilariño V, Pérez G, Castell A (2014) Life cycle assessment (LCA) and
life cycle energy analysis (LCEA) of buildings and the building sector: a review. Renew Sustain
Energy Rev 29:394–416. https://doi.org/10.1016/j.rser.2013.08.037
12. Cagiao J, Gómez B, Doménech JL, Gutiérrez Mainar S, Gutiérrez Lanza H (2011) Calculation
of the corporate carbon footprint of the cement industry by the application of MC3 methodology.
Ecol Ind 11(6):1526–1540. https://doi.org/10.1016/j.ecolind.2011.02.013
13. Chau CK, Leung TM, Ng WY (2015) A review on life cycle assessment, life cycle energy
assessment and life cycle carbon emissions assessment on buildings. Appl Energy 143(1):395–
413. https://doi.org/10.1016/j.apenergy.2015.01.023
14. CLIMWAT (2018a) CLIMWAT 2.0. FAO databases an software. Retrieved from https://www.
fao.org/land-water/databases-and-software/climwat-for-cropwat/en/
15. CLIMWAT (2018b) CLIMWAT 2.0. FAO Databases an Software. https://www.fao.org/landwater/databases-and-software/climwat-for-cropwat/en/, consultado en mayo de 2018
16. Contreras F, González A, López J, Calvo A (2006) Estimación de necesidades hídricas para
especies de jardín en la región de Murcia: adaptación de WUCOLS y utilización del sistema
de información agraria de Murcia. III Jornadas Ibéricas de Horticultura Ornamental, Almería,
Spain
17. Costello LR, Jones KS (2000) Water use classification of landscape species (WUCOLS III). A
guide to estimating irrigation water needs of landscape plantings in California. Department of
Water Resources, Sacramento, California
18. CROPWAT (2018) CROPWAT 8.0. FAO databases an software. https://www.fao.org/landwater/databases-and-software/cropwat/en/, consultado en mayo de 2018
19. Cuchí A, Wadel G, Rivas P (2010) Sector edificacion: La imprescindible reconversion del
sector frente al reto de la sostenibilidad
20. Di Gregorio A (2005) Land cover classification system. Classification concepts and user
manual. Software version 2
21. Doorenbos J, Pruitt WO (1977) Crop water requirements. FAO irrigation and drainage paper
24. Land and Water Development Division, FAO, Rome, p 144
22. Engineers USACO (2000) Hydrologic modeling system HEC–HMS, technical reference
manual. Hydrologic Engineering Center, Davis, CA
23. Falkenmark M (1989) Water scarcity and food production. Food and Natural Resources, pp
164–191
24. Freire-Guerrero A, Alba-Rodríguez MD, Marrero M (2019) A budget for the ecological footprint of buildings is possible: a case study using the dwelling construction cost database
of Andalusia. Sustainable Cities and Society 51:101737. https://doi.org/10.1016/J.SCS.2019.
101737
25. Freire-Guerrero A, Marrero-Meléndez M (2015) Ecological footprint in indirect costs of
construction. In: Proceedings of the II International congress on sustainable construction
and eco-efficient solutions : Seville 25–27 may 2015 (pp. 969–980). Retrieved from https://
www.mendeley.com/research-papers/ecological-footprint-indirect-costs-construction/?utm_
source=desktop&utm_medium=1.19.1&utm_campaign=open_catalog&userDocumentId=%
7Bbfc310cc-56d5-4362-82b9-8720e901d018%7D
26. Freire-Guerrero A, Marrero M (2015) Evaluation of the embodied energy of a construction
project using the budget. Habitat Sustentable 5(1):54–63
27. Freire A, Marrero M (2014) Analysis of the ecological footprint produced by machinery in
construction. In World Sustainable Building 14. Barcelona
28. Freire Guerrero A, Marrero M, Muñoz Martín J (2016) Incorporación de huella de carbono
y huella ecológica en las bases de costes de construcción. Estudio de caso de un proyecto de
urbanización en Écija, España. Hábitat Sustentable, ISSN-e 0719–0700, vol. 6, no. 1, 2016
(Ejemplar Dedicado a: Junio), pp 6–17, 6(1), 6–17
29. Freire Guerrero A. (2017). Presupuesto ambiental. Evaluación de la huella ecológica del
proyecto a través de la clasificación de la Base de Costes de la Construcción de Andalucía.
Tesis Doctoral. Universidad de Sevilla
Précédent

- 107/193

Suivant