Evaluating the Role of Recycling Materials in Construction Industry (Case Study: City of Tehran)
Subject Areas : Journal of Environmental Friendly Materials
1 - Architectural Engineering Department, Karaj Branch, Islamic Azad University, Karaj, Iran
2 - Architectural Engineering Department, Karaj Branch, Islamic Azad University, Karaj, Iran
Keywords: Eco-Friendly, Recycling, The Building Materials, Construction & Demolition Waste, Reusing,
Abstract :
[1] D. Rousseau, Sustainable Built Environment, 2(2001).
[2] S. Ahmari, Recycling and Reuse of Wastes as Construction Material through Geopolymerization, The University of Arizona, Ph.D Dissertation in Civil Engineering, 8 (2012), 225.
[3] M. R. Colin and A. Julia Stegemann, Sustainability, MDPI, 10 (2018), 229
[4] A. Asgari, T. Ghorbanian, N. Yousefi, D. Dadashzadeh, F. Khalili, A. Bagheri, M. Raei and A. H. Mahvi, J. Environmental Health Science & Engineering., 15(14) (2017).
[5] M. Kazemi, E. Rashidzadeh, A. Fathe-Baghali, Inter. J. Archit. Urban Dev., 5(4) (2015).
[6] Waste & Resources Action Programme (WRAP). Designing out Waste Tool for Buildings;Waste & Resources Action Programme: Banbury, UK, (2010).
[7] Department for Environment, Food and Rural Affairs (Defra). Waste Strategy for England 2007, Annex C3: Construction, Demolition and Excavation Waste; Defra: London, UK, (2007).
[8] S. Brand, How Buildings Learn: What Happens after They’re Built; Viking Press: New York, NY, USA, (1994).
[9] F. Pomponi, Moncaster, A. Circular economy research in the built environment: A theoretical contribution. In Building Information Modelling, Building Performance, Design and Smart Construction; Dastbaz, M., Gorse, C., Eds.; Springer: Cham, Switzerland, (2016).
[10] LondonWaste and Recycling Board (LWARB). London, the Circular Economy Capital: Towards a Circular Economy—Context and Oppoprtunities. (2015).
[11] C. Morgan, F. Stevenson, Design for Deconstruction—SEDA Design Guides for Scotland: No. 1; Scottish Ecological Design Association: Glasgow, UK, (2005).
[12] E. Brayan, Guidelines toward sustainable architecture. (Sh.Tehrani, Trans.). (2thed.). Tehran: Mehrazan, (2011).
[13] C. Scheuer, G. A. Keoleian, P. Reppe, Energy and Buildings, 35(2003), 1049.
[14] R. J. Cole, P. C. Kernan, Build. Envir., 31(1996), 307.
[15] S. Bastianoni, A. Galli, V. Niccolucci and R. M. Pulselli, WIT Trans. Ecol. Envir., 93(2006), 345.
[16] P. Hradil, A. Talja, M. Wahlström, S. Huuhka, J. Lahdensivu and J. Pikkuvirta, Re-use of structural elements, VTT Technical Research Centre of Finland, (2014).
[17] Publication 33/2013. Helsinki, Finland: Ministry of Employment and Economy of Finland, (2013).
[18] T. N. Ligthart, T. M. M. Ansems, InTech, (Post-Consumer Waste Recycling and Optimal Production., (2012).
[19] D. Soares, J. De Brito, J. Ferreira and J. Pacheco, Const and Build Mater., (2014).
[20] F. Özalp, H. D. Yılmaz, M. Kara, O. Kaya, A. Concrete pipes-Construction and Building Mater., 110(2016), 17.
[21] K. Shunsaku, K. Takao, Present Problems And Its Future. Elsevier Journal (vol. null), (2013), 151.
[22] G. Winkler, Recycling construction and demolition waste-A LEED based toolkit, Mcgraw Hills Green Source Series, (2010).
[23] A. Bansal, G. Mishra and S. Bishnoi, The 7th International Conference on Sustainable Built Environment, Sri Lanka, (2016).
[24] J. De-Brito, N. Saikia, Recycled concrete in aggregate, Springer-Verlag London, (2013).
[25] R. Siddique, J. Khatib and I. Kaur, Waste Manag. 28 (10)(2008), 1835.
[26] V. T. Breslin, U. Senturk, C. C. Berndt, Res. Conserv. Recycl., 23(4)(1998), 243.
[27] O. Y. Marzouk, R. Dheilly, M. Queneudec, Waste Manag., 27 (2) (2007), 310.
[28] R. M. Rowell, J. A. Youngquist, D. McNatt, Composites from Recycled Mater., Composites. (1991), 301.
[29] D. Briga-Sá, N. Nascimento, N. Teixeira, J. Pinto, F. Caldeira, H. Varum, A. Paiva, Constr. Build. Mater., 38(2013), 155.
[30] D. Bhattacharjee and V. Kothari, Inter. J. Heat. Mass. Transfer., 52 (7) (2009), 2155.
[31] United States Department of Energy, Saving Energy: Recycling saves energy in Production of New Products (2014).
[32] Coventry, S., Hillier, S., Construction Industry Research and Information Association., C. Woolveridge, The reclaimed and recycled construction materials handbook, Construction Industry Research and Information Association, London, (1999).
[33] M. Safiuddin, M. Z. Jumaat, M. Salam, M. Islam and R. Hashim, Inter. J. Phys. Sci., 5(13)(2010), 1952.
[34] United states Environmental protection Agency, (US EPA), Municipal solid waste generation, recycling, and disposal in the United States: Facts and Figures for 2012 (2014).
[35] US Environmental protection Agency, Municipal Solid Waste, (2014).
[36] European Environment Agency (EEA), European Topic Centre on Sustainable Consumption and Production, (2014).
[37] M. Moghimi, P. Shafigh, J. Berenjian, K. Nemati, J. of Civil Eng., 2(2008), 38.
[38] N. Al-Mutairi and M. Haque, Strength and durability of concrete made with crushed concrete as coarse aggregates, (2003), 16.
[39] J. M. Khatib, Cem and Concr Res., 35 (4) (2005), 763.
[40] S. Talukdar, S. Islam and N. Banthia, Advances in Civil Engineering. (2011).
[41] E. P. Aigbomian, M. Fan, Constr and Build Mater. ,40(2013), 361.
[42] O. M. Okeyinka, D. A. Oloke, J. M. Khatib, Eng. Technol. Inter. J. of Civil Environ Eng., 9(12)(2015), 1570.
[43] Institute of standard and industrial research of Iran. Standard monthly standard magazine, January, (2010), 209.
[44] R. Broujeni, G. A. Omrani, R. Naghavi, S. Afraseyabi, Eng. Technol. Appl. Sci. Res., 6(6)(2016), 1249.
[45] M. Saghafi and Z. H. Teshnizi, Proc. Eng., 21(2011), 853.