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Sustainable optimization of waste management network over extended planning time horizon
Authors:Yousef Saif  Ali Almansoori  Ali Elkamel
Affiliation:1. Department of Chemical Engineering, Khalifa University of Science and Technology, Abu Dhabi, UAE;2. Department of Chemical Engineering, University of Waterloo, Waterloo, Ontario, Canada
Abstract:This study proposes a multiperiod mixed integer linear programming model for the management of a single municipal solid waste (MSW) treatment plant with sustainability as the objective. Discrete and continuous variables define the capacity selections for diverse MSW technologies, and the operation of the MSW network, respectively. The economic target is considered to maximize the net present value. The environmental impact is the minimization of a normalized environmental objective function (NEOF). The social target is the maximization of jobs. An interesting feature about the research work is the requirement of biodrying technologies for MSW moisture content control. Due to the conflicted nature among the sustainability components, a multiobjective optimization (MO) is carried out to find the Pareto optimal solutions. The MO results show that the Pareto optimal solutions vary around profit range of $4.9–8.5 billion, NEOF impact range of 3.2–3.6 units, and social benefit range of 2700–4828 jobs.
Keywords:cyclic economy  mixed integer programming  MSW treatment design  multiobjective optimization  sustainability
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