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Drying Technology
An International Journal
Volume 33, 2015 - Issue 8
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Original Articles

Embodied Energy and Carbon Analysis of Solar Kilns for Wood Drying

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REFERENCES

  • Hegner, S. An assessment of embodied energy‘s relevance for energy saving in the Swiss residential building sector. Department of Environmental Science 2007, 1–5. ETH: Zurich, Switzerland.
  • Plank, R.J. Sustainable building construction for structural engineers. Structural Engineer 2005, 83(11), 30–33.
  • Sartori, I.; Hestnes, A.G. Energy use in the life cycle of conventional and low-energy buildings: A review article. Energy & Buildings 2007, 39(3), 249–257.
  • Yung, P.; Lam, K.C.; Yu, C. An audit of life cycle energy analyses of buildings. Habitat International 2013, 39, 43–54.
  • Ximenes, F.A.; Grant, T. Quantifying the greenhouse benefits of the use of wood products in two popular house designs in Sydney, Australia. The International Journal of Life Cycle Assessment 2013, 18(4), 891–908.
  • Zaid, A.; Paul, J. The importance of embodied energy in carbon footprint assessment. Structural Survey 2014, 32(1), 49–60.
  • Dixit, M.K.,. Identification of parameters for embodied energy measurement: A literature review. Energy and Buildings 2010, 42(8), 1238–1247.
  • Hasan, M.; Langrish, T.A.G. Numerical simulation of a solar kiln design for drying timber with different geographical and climatic conditions in Australia. Drying Technology 2014, 32(13), 1632–1639.
  • Hasan, M.; Langrish, T.A.G. Performance comparison of two solar kiln designs for wood drying using a numerical simulation. Drying Technology (in press).
  • Hammond, G.; Jones, C. Inventory of Carbon & Energy: ICE. 2008, version 1.6a, 10–14; Sustainable Energy Research Team, Department of Mechanical Engineering, University of Bath: Bath, UK.
  • Dixit, M.K.,. Need for an embodied energy measurement protocol for buildings: A review paper. Renewable and Sustainable Energy Reviews 2012, 16(6), 3730–3743.
  • Haque, M.N.; Langrish, T.A.G. Stack-wide effects in the modeling of solar kilns for drying timber. Drying Technology 2001, 19(1), 99–114.
  • Haque, M.N. Modeling of solar kilns and the development of an optimized schedule for drying hardwood timber. Chemical Engineering; Sydney, Australia: University of Sydney, 2002; 354.
  • AusLCI. Australian Life Cycle Inventory. 2009. http://alcas.asn.au/AusLCI/ (accessed July 7, 2014).
  • Tharumaharajah, A.; Grant, T. Australian national life cycle inventory database: Moving forward. In 5th Australian Life Cycle Assesment Society Conference, Melbourne, Australia, November 22–24, 2006.
  • Newton, P.W.; Hampson, K.; Drogemuller, R. Technology, Design and Process Innovation in the Built Environment; Spon Press: New York, 2009.
  • Islam, H.,. Life cycle assessment and life cycle cost implications of wall assemblages designs. Energy and Buildings 2014, 84(0), 33–45.
  • Henriksen, J.E. The value of design in reducing energy use and co2-e impact over the life cycle of a detached dwelling in temperate climate. In Faculty of Engineering and the Built Environment, University of Newcastle, Newcastle, Australia, 2006.
  • PE International. Life Cycle Assessment of Rough-Sawn Kiln-Dried Hardwood Lumber; American Hardwood Export Council (AHEC): Reston, VA, 2012; 16.
  • Grant, T.; Peters, G. Best Practice Guide to Life Cycle Impact Assessment in Australia; Australian Life Cycle Society: Melbourne, Australia, 2008.
  • Forest & Wood Products. Treated timber in Australia. National Timber Development Program. 2004. http://www.timber.net.au/images/downloads/exterior/outdoor_timber_cca_tech_report_5.pdf (accessed January 10, 2015).
  • Sabic Innovative Plastics. Product Datasheet: Warranty Conditions. 2008 http://www.sabic-ip.com/resins/DataSheet/Internet/PDF/1002002131_1002003948_1002038287_SI.pdf (accessed November 3, 2014).
  • Falk, B. Wood as a sustainable building material. Forest Product Journal 2009, 59(9), 6–12.
  • Milne, G.; Reardon, C. Embodied Energy. 2013. http://www.yourhome.gov.au/materials/embodied-energy (accessed August 28, 2014).
  • McDougall, F.R.; White, P. Integrated Solid Waste Management: A Life Cycle Inventory; Blackwell Science: Malden, MA, 2001.
  • Department of Infrastructure and Transport. Truck Productivity: Sources, Trends and Future Prospects. Bureau of Infrastructure, Transport and Regional Economics. 2011. http://www.bitre.gov.au/publications/2011/files/report_123.pdf (accessed September 20, 2014).
  • Giacomelli, G.A.; Roberts, W.J. Greenhouse covering systems. HortTechnology 1993, 3(1), 50–58.

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