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Multi-Regional Multi-Objective Optimization of an Algal Biofuel Polygeneration Supply Chain with Fuzzy Mathematical Programming

机译:基于模糊数学规划的藻类生物质多联产供应链多区域多目标优化

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A polygeneration approach is proposed to improve the economic viability of algal biofuel production through simultaneous production of co-products (i.e. electricity, heat, and other biochemicals). A multi-regional polygeneration supply chain consists of various array of processing plants in producing multiple bioenergy products given spatial constraints of each plant found in different regions. The inherent complexity of the polygeneration compounds the difficulty of designing the composite network of processing plants in multi-regions. Optimizing the design flow of the polygeneration supply chain considers multiple objectives, such as satisfying product demand, maximizing economic performance, and minimizing environmental footprint. In addition, the optimal strategic capacity design of the supply and distribution of biodiesel across multi-regions are considered. This study uses a fuzzy mathematical programming model to generate an optimized design of the polygeneration supply chain while satisfying all objectives. The developed model is demonstrated using a modified industrial case study comparing two cultivation alternatives. Results showed that all fuzzy multi-objective goals are satisfied and the flat-plate photobioreactor is the preferred cultivation system in terms of environmental footprints and economic performance.
机译:提出了一种多联产方法,以通过同时生产副产品(即电,热和其他生物化学物质)来提高藻类生物燃料生产的经济可行性。一个多区域的多代供应链包括各种加工厂,这些加工厂在给定不同地区每家工厂受到空间限制的情况下,会生产多种生物能源产品。多代发电的内在复杂性使设计多区域加工厂的复合网络变得困难。优化多联产供应链的设计流程考虑了多个目标,例如满足产品需求,最大化经济绩效和最小化环境足迹。此外,还考虑了跨地区生物柴油供应和分配的最佳战略能力设计。本研究使用模糊数学规划模型来生成多代供应链的优化设计,同时满足所有目标。使用改进的工业案例研究证明了开发的模型,该案例研究比较了两种耕种替代方法。结果表明,从环境足迹和经济效益两方面来看,平板式光生物反应器是满足所有模糊多目标目标的首选栽培系统。

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