Multi-objective optimization model for excess bagasse utilization focusing on global warming potential : a case study for Thailand
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Title Multi-objective optimization model for excess bagasse utilization focusing on global warming potential : a case study for Thailand
Creator Bancha Buddadee
Contributor Wanpen Wirojanagud, Rapeepan Pitakaso
Publisher Chulalongkorn University
Publication Year 2550
Keyword Bagasse, Life cycle costing
Abstract In this research, a multi-objective optimization model is proposed as a tool to assist in deciding for the proper utilization scheme of excess bagasse produced in sugar industry. Two major scenarios for excess bagasse utilization are considered in the optimization. The first scenario is the typical situation when excess bagasse is used for the onsite electricity production. In the second scenario, excess bagasse is processed for the offsite ethanol production. Ethanol is then blended with gasoline by a portion of 10% and 90% by volume respectively and the mixture is used as alternative fuel for gasoline vehicles in Thailand. The model proposed in this paper called “Environmental System Optimization” comprises the life cycle impact assessment of global warming potential (GWP) and the associated cost followed by the multi-objective optimization which facilitate in finding out the optimal proportion of the excess bagasse to be processed in each scenario. Basic mathematical expressions for indicating the GWP and cost of the entire process of excess bagasse utilization are taken into account in the model formulation and optimization. The outcome of this study is the methodology developed for decision-making concerning the excess bagasse utilization available in Thailand in view of the GWP and economic effects. A demonstration example is presented to illustrate the advantage of the methodology which may be used by the policy maker. The methodology developed is successfully performed to satisfy both environmental and economic objectives over the whole life cycle of the system. It is shown in the demonstration example that the first scenario results in positive GWP while the second scenario results in negative GWP. The combination of these two scenario results in positive or negative GWP depending on the preference of the weighting given to each objective. The results on economics of all scenarios show the satisfactory outcomes.
URL Website cuir.car.chula.ac.th
Chulalongkorn University

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