Low carbon and low embodied energy materials in buildings: A review
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DOI: 10.1016/j.rser.2013.03.017
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- Yu Lay Langston & Craig Ashley Langston, 2008. "Reliability of building embodied energy modelling: an analysis of 30 Melbourne case studies," Construction Management and Economics, Taylor & Francis Journals, vol. 26(2), pages 147-160.
- Dias, W.P.S. & Pooliyadda, S.P., 2004. "Quality based energy contents and carbon coefficients for building materials: A systems approach," Energy, Elsevier, vol. 29(4), pages 561-580.
- Van Gool, Willem, 1980. "Thermodynamic aspects of energy conservation," Energy, Elsevier, vol. 5(8), pages 783-792.
- Nässén, Jonas & Holmberg, John & Wadeskog, Anders & Nyman, Madeleine, 2007. "Direct and indirect energy use and carbon emissions in the production phase of buildings: An input–output analysis," Energy, Elsevier, vol. 32(9), pages 1593-1602.
- Dixit, Manish K. & Fernández-Solís, Jose L. & Lavy, Sarel & Culp, Charles H., 2012. "Need for an embodied energy measurement protocol for buildings: A review paper," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(6), pages 3730-3743.
- B.V. Venkatarama Reddy, 2009. "Sustainable materials for low carbon buildings," International Journal of Low-Carbon Technologies, Oxford University Press, vol. 4(3), pages 175-181, June.
- Gartner, E. M. & Smith, M. A., 1976. "Energy costs of house construction," Energy Policy, Elsevier, vol. 4(2), pages 144-157, June.
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Keywords
Low energy materials; Low carbon materials; Embodied energy; Review;All these keywords.
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