Buildings environmental impacts' sensitivity related to LCA modelling choices of construction materials
暂无分享,去创建一个
Sébastien Lasvaux | Endrit Hoxha | Guillaume Habert | Viola John | Marcella Ruschi Mendes Saade | Alexander Passer | Ian-Frederic Häfliger | G. Habert | M. Saade | S. Lasvaux | A. Passer | E. Hoxha | I. Haefliger | Viola John
[1] Sébastien Lasvaux,et al. Comparison of generic and product-specific Life Cycle Assessment databases: application to construction materials used in building LCA studies , 2015, The International Journal of Life Cycle Assessment.
[2] Scott Duncan,et al. A survey of unresolved problems in life cycle assessment , 2008 .
[3] José Dinis Silvestre,et al. Environmental impacts and benefits of the end-of-life of building materials – calculation rules, results and contribution to a “cradle to cradle” life cycle , 2014 .
[4] Randolph Kirchain,et al. Comparative pavement life cycle assessment with parameter uncertainty , 2013 .
[5] Endrit Hoxha,et al. Method to analyse the contribution of material's sensitivity in buildings' environmental impact , 2014 .
[6] Viola John. Derivation of reliable simplification strategies for the comparative LCA of individual and "typical" newly built Swiss apartment buildings , 2012 .
[7] Rolf Frischknecht,et al. Life cycle assessment in the building sector: analytical tools, environmental information and labels , 2015, The International Journal of Life Cycle Assessment.
[8] M. Rabaçal,et al. Combustion and emission characteristics of a domestic boiler fired with pellets of pine, industrial wood wastes and peach stones , 2013 .
[9] Holger Wallbaum,et al. Environmental product declarations entering the building sector: critical reflections based on 5 to 10 years experience in different European countries , 2015, The International Journal of Life Cycle Assessment.
[10] Hans-Jürgen Dr. Klüppel,et al. The Revision of ISO Standards 14040-3 - ISO 14040: Environmental management Life cycle assessment Principles and framework - ISO 14044: Environmental management Life cycle assessment Requirements and guidelines , 2005 .
[11] Magdalena Svanström,et al. Life cycle assessment of construction materials: the influence of assumptions in end-of-life modelling , 2014, The International Journal of Life Cycle Assessment.
[12] Carly Whittaker,et al. How certain are greenhouse gas reductions from bioenergy? Life cycle assessment and uncertainty analysis of wood pellet-to-electricity supply chains from forest residues , 2015 .
[13] E. Peereboom,et al. Influence of Inventory Data Sets on Life‐Cycle Assessment Results: A Case Study on PVC , 1998 .
[14] Robert H. Crawford,et al. Building service life and its effect on the life cycle embodied energy of buildings , 2015 .
[15] Sébastien Lasvaux,et al. Adaptation of environmental data to national and sectorial context: application for reinforcing steel sold on the French market , 2013, The International Journal of Life Cycle Assessment.
[16] Mark Hughes,et al. Comparison of life cycle assessment databases: A case study on building assessment , 2014 .
[17] Endong Wang,et al. An AHP-weighted aggregated data quality indicator (AWADQI) approach for estimating embodied energy of building materials , 2012, The International Journal of Life Cycle Assessment.
[18] Ingunn Saur Modahl,et al. Comparison of two versions of an EPD, using generic and specific data for the foreground system, and some methodological implications , 2012, The International Journal of Life Cycle Assessment.
[19] Reinout Heijungs,et al. Identification of key issues for further investigation in improving the reliability of life-cycle assessments , 1996 .
[20] M. Braungart,et al. Cradle-to-cradle design: creating healthy emissions - a strategy for eco-effective product and system design , 2007 .
[21] Tomas Ekvall,et al. Choice of system boundaries in life cycle assessment , 1994 .
[22] Geoffrey Qiping Shen,et al. Uncertainty analysis for measuring greenhouse gas emissions in the building construction phase: a case study in China , 2016 .
[23] Ben Amor,et al. Recent developments, future challenges and new research directions in LCA of buildings: A critical review , 2017 .
[24] Mark A. J. Huijbregts,et al. Application of uncertainty and variability in LCA , 1998 .
[25] Gian Andrea Blengini,et al. Energy-saving policies and low-energy residential buildings: an LCA case study to support decision makers in Piedmont (Italy) , 2010 .
[26] Melissa M. Bilec,et al. Impact of lifetime on US residential building LCA results , 2012, The International Journal of Life Cycle Assessment.
[27] Robert Ries,et al. Characterizing, Propagating, and Analyzing Uncertainty in Life‐Cycle Assessment: A Survey of Quantitative Approaches , 2007 .
[28] Giovanni Andrea Blengini,et al. The changing role of life cycle phases, subsystems and materials in the LCA of low energy buildings , 2010 .
[29] Rolf Frischknecht,et al. LCI modelling approaches applied on recycling of materials in view of environmental sustainability, risk perception and eco-efficiency , 2010 .
[30] Anne Grete Hestnes,et al. Energy use in the life cycle of conventional and low-energy buildings: A review article , 2007 .