Embodied energy of materials pdf

Embodied energy of materials pdf





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2010. Embodied Energy Calculations within Life Cycle Analysis of. Residential Buildings. Page 4 of 16. Figure 1: Breakdown of embodied energy calculations. Most embodied energy figures for specific materials are quoted using a “cradle to gate” boundary. (includes orange boxes). Consumers must also consider transport 18 Jun 2015 Keywords: low-income housing; tropical housing; embodied energy; Uganda; East Africa . The embodied energy values of walling methods and materials are also calculated and compared with standard .. Available online: www.africaneconomicoutlook.org/fileadmin/uploads/aeo/2014/PDF/CN_. Embodied energy is the energy consumed by all of the processes associated with the production of a building, from the acquisition of natural resources to product delivery, including mining, manufacturing of materials and equipment, transport and administrative functions. PDF (Hammond_&_Jones_Embodied_energy_&_carbon_Proc_ICE-Energy_2008_161(2)_87-98.pdf) - Requires a PDF viewer such as GSview, Xpdf or The development of an open-access, reliable database for embodied energy and carbon (dioxide) emissions associated with the construction industry is described. A.1 Embodied Energy Coefficients - Alphabetical. MATERIAL. MJ/kg. MJ/m3. MJ/m2. Aggregate, general. 0.10. 150 virgin rock. 0.04. 63 river. 0.02. 36. Aluminium, virgin. 191. 515 700 extruded. 201. 542 700 extruded, anodised. 227. 612 900 extruded, factory painted. 218. 588 600 foil. 204. 550 800 sheet. 199. 537 300. embodied energy is the energy consumed by all of the processes associated with the production of a building, from the mining and processing of natural resources to manufacturing, transport and product delivery. embodied energy does not include the operation and disposal of the building material. 5 Jan 2015 ABSTRACT: Buildings alone consume approximately 40% of the annual global energy and contribute indirectly to the increasing concentration of atmospheric carbon. The total life cycle energy use of a building is composed of embodied and operating energy. Embodied energy includes all energy required The development of an open-access, reliable database for embodied energy and carbon (dioxide) emissions associated with the construction industry is described. The University of Bath's inventory of carbon and energy database lists almost 200 different materials. The data were extracted from peer-reviewed literature on SET2010 - 9th International Conference on Sustainable Energy Technologies; Shanghai, China. 24-27 August, 2010. Embodied energy of building materials and green building rating systems — a case study for industrial halls. Bruno Lee. 1,2. , Marija Trcka. 2. , and Jan Hensen. 2. 1. Materials innovation institute (M2i), Delft consumed (carbon released) over its life cycle. This would normally include (at least) extraction, manufacturing and transportation. Ideally the boundaries would be set from the extraction of raw materials (inc fuels) until the end of the products lifetime (including energy from manufacturing, transport, energy to manufacture

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