A stochastic fuzzy multi-criteria decision-making model for optimal selection of clean technologies
College
Gokongwei College of Engineering
Department/Unit
Chemical Engineering
Document Type
Article
Source Title
Journal of Cleaner Production
Volume
183
First Page
1289
Last Page
1299
Publication Date
5-10-2018
Abstract
Selection of clean technology options requires systematic evaluation based on multiple criteria which are often conflicting. The optimal choice should consider not just technical performance but also the economic, environmental and social aspects of technologies. Furthermore, the interdependencies of these aspects should also be considered. The decision-maker often needs to make explicit trade-offs while ranking the alternatives. In addition, data gaps and imprecise information that are typical when dealing with emerging technologies make conventional methods ineffective. This work thus proposes a Stochastic Fuzzy Analytic Hierarchical Network Process decision model to address the complexity and uncertainty involved in the clean technology selection process. This method first decomposes the problem into a hierarchical network structure, and then derives the probability distribution of the priority weights needed for ranking. The capabilities of the methodology are demonstrated with three case studies, involving the comparison of different carbon nanotube synthesis methods, nutrient removal treatment technology options for municipal wastewater, and low-carbon electricity sources in the Philippines. © 2018
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Digitial Object Identifier (DOI)
10.1016/j.jclepro.2018.02.183
Recommended Citation
Promentilla, M. B., Janairo, J. B., Yu, D. C., Pausta, C. J., Beltran, A. B., Huelgas-Orbecido, A. P., Tapia, J. D., Aviso, K. B., & Tan, R. R. (2018). A stochastic fuzzy multi-criteria decision-making model for optimal selection of clean technologies. Journal of Cleaner Production, 183, 1289-1299. https://doi.org/10.1016/j.jclepro.2018.02.183
Disciplines
Chemical Engineering
Keywords
Clean energy; Carbon nanotubes—Synthesis; Multiple criteria decision making
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