How to cite this paper
Marzouk, M & Abdelakder, E. (2019). On the use of multi-criteria decision making methods for minimizing environmental emissions in construction projects.Decision Science Letters , 8(4), 373-392.
Refrences
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Seo, M., Kim, T., Hong, G., & Kim, H. (2016). On-Site Measurements of CO2 Emissions during the Construction Phase of a Building Complex. Energies, 9(8), 1-13.
Triantaphyllou, E., Shu, B., Nieto Sanchez, S., & Ray, T. (1998). Multi-criteria decision making: an operations research approach. Encyclopedia of Electrical and Electronics Engineering, 15 175–186.
Triantaphyllou, E. & Sánchez, A. (1997). A sensitivity analysis approach for some deterministic multi-criteria decision making methods. Decision Sciences, 28(1), 151-194.
Visual PROMETHEE 1.4. VPSolutions, Available at: http://www.promethee-gaia.net/software.html (accessed Aug 25, 2015).
Akyene, T. (2012). Cell Phone Evaluation Base on Entropy and TOPSIS. Interdisciplinary Journal of Research In Business, 1(12), 9–15.
Autodesk, Autodesk Revit 2015. Available at: http://www.autodesk.com/education/free-software/revit (accessed Dec 29, 2014).
Athena Sustainable Materials Institute, Athena Impact Estimator 5.0.0105. Available at: http://calculatelca.com/software/impact-estimator/download-impact-estimator/ (accessed Feb 1, 2015).
Banerjee, R., & Ghosh, D. (2013). Faculty Recruitment in Engineering Organization Through Fuzzy Multi-Criteria Group Decision Making Methods. International Journal of u-and e –Service. Science and Technology, 6, 139–154.
Bogdanovic, D., Nikolic, D., & Ivana, I. (2012). Mining method selection by integrated AHP and PROMETHEE method. Anais da Academia Brasileira de Ciencias, 84; 219–233.
Barati, K. & Shen, X. (2017). Optimal driving pattern of on-road construction equipment for emissions reduction, Procedia Engineering, 180, 1221–1228.
Chakraborty, R., Ray, A., & Dan, P.K. (2013), Multi criteria decision making methods for location selection of distribution centers. International Journal of Industrial Engineering Computations, 4, 491–504.
Chen, J., Hsu, S., Luo, Y., & Skibniewski, M. J. (2012). Knowledge Management for Risk Hedging by Construction Material Suppliers. Journal of Management in Engineering, 28(3), 273-280.
Cho., S., & Chae, C. (2016). A Study on Life Cycle CO2 Emissions of Low-Carbon Building in South Korea. Sustainability, 8 (579), 1-19.
Cristóbal, J.R.S. (2011). Multi-criteria decision-making in the selection of a renewable energy project in spain: The Vikor method. Renewable Energy, 36(2), 498-502.
Dean, B., Dulac, J., Petrichenko, K., & Graham, P. (2016). Towards zero-emission efficient and resilient buildings Global Status Report 2016, Global Alliance for Buildings and Construction, Available at: http://www.planbatimentdurable.fr/IMG/pdf/gabc_report.pdf (accessed June 24, 2018).
Dragisa, S., Bojan, D., & Mira, D. (2013). Comparative Analysis of Some Prominent MCDM Methods: A case of Ranking Serbian banks. Serbian Journal of Management, 8(2), 213–241.
Heidrich, O., Reckien, D., Olazabal, M., Foley, A., Salvia, M., Hurtado, S. D. G., Orru, H., Flacke, J., Geneletti, D., Pietrapertosa, F., Hamann, J. J., Tiwary, A., Feliu, E., &. Dawson, R. J. (2016). National climate policies across Europe and their impacts on cities strategies. Journal of Environmental Management, 168, 36-45.
Huang, W., Li, F., & Cui, S. (2017). Carbon Footprint and Carbon Emission Reduction of Urban Buildings : A Case in Xiamen City , China. Procedia Engineering 198, 1007–1017.
Kuo, Y, Yang. T, & Huang, G.W. (2008). The Use of Grey Relational Analysis in Solving Multiple Attribute Decision-making Problems. Computers and Industrial Engineering, 55, 80–93.
Motuzienệ, V., Rogoza, A., Lapinskiene, V., & Vilutiene, T. (2016). Construction solutions for energy efficient single-family house based on its life cycle multi-criteria analysis : a case study. Journal of Cleaner Production, 112, 532-541
Mulliner, E., Smallbone, K., & Maliene, V. (2013). An assessment of sustainable housing affordability using a multiple criteria decision making method. Omega, 41, 270–279.
Olivier, J. G. J., Janssens-Maenhout, G., Muntean, M., & Peters, J. A. H. W. (2016). Trends in global CO2 emissions 2016, PBL Netherlands Assessment Agency, European Commision Joint Research Centre, Available at: http://edgar.jrc.ec.europa.eu/news_docs/jrc-2016-trends-in-global-co2-emissions-2016-report-103425.pdf (accessed June 24, 2018).
Parker, C. F., & Karlsson, C. (2018). The UN climate change negotiations and the role of the United States : assessing American leadership from Copenhagen to Paris The UN climate change negotiations and the role of the United States : assessing American leadership from Copenhagen to Paris. Environmental Politics, 27 (3), 519-540.
Pires, M.B, Silva, J. V. M., & Gupta, P. D. (2016). Heat Waves In Non-Conventional Areas , Climate Change And Disease Load : A Review. Journal of Cell and Tissue Research, 16 (2), 5705–5711.
Saaty, T.L. (1980). Analytic hierarchy process, McGraw-Hill, New York.
Seo, M., Kim, T., Hong, G., & Kim, H. (2016). On-Site Measurements of CO2 Emissions during the Construction Phase of a Building Complex. Energies, 9(8), 1-13.
Triantaphyllou, E., Shu, B., Nieto Sanchez, S., & Ray, T. (1998). Multi-criteria decision making: an operations research approach. Encyclopedia of Electrical and Electronics Engineering, 15 175–186.
Triantaphyllou, E. & Sánchez, A. (1997). A sensitivity analysis approach for some deterministic multi-criteria decision making methods. Decision Sciences, 28(1), 151-194.
Visual PROMETHEE 1.4. VPSolutions, Available at: http://www.promethee-gaia.net/software.html (accessed Aug 25, 2015).