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Algal biofuel supply chain network design with variable demand under alternative fuel price uncertainty: A case study

机译:替代燃料价格不确定性下需求可变的藻类生物燃料供应链网络设计:案例研究

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According to the high sugar and oil content of algae, the algal biofuel have been taken into consideration in recent years. This paper develops a multi-objective mixed integer quadratic programming (MMIQP) model to optimize the design and planning of an algae-based biofuel supply chain network under environmental and economic objectives. The goals of this paper are set to maximize the total profit and carbon dioxide absorption of the supply chain. The proposed mathematical model considers the deterioration issue in the inventory and during the transportation, in a multi-period time horizon. Since the alternative fuel price is not certain in the real world, a two-stage stochastic programming is utilized to address this uncertainty. Moreover, data envelopment analysis (DEA) approach is proposed to rank the candidate cities based on efficiency for microalgal harvesting. The applicability and efficiency of the proposed model are finally demonstrated through a real case study in Iran. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于藻类中糖和油的含量高,近年来已经考虑了藻类生物燃料。本文开发了一种多目标混合整数二次规划(MMIQP)模型,以在环境和经济目标下优化基于藻类的生物燃料供应链网络的设计和规划。本文的目标是使供应链的总利润和二氧化碳吸收最大化。所提出的数学模型考虑了在多个时间段内库存和运输过程中的变质问题。由于替代燃料的价格在现实世界中不确定,因此采用两阶段随机规划来解决这种不确定性。此外,提出了数据包络分析(DEA)方法,根据微藻收获的效率对候选城市进行排名。最后通过在伊朗的一个实际案例研究证明了所提出模型的适用性和效率。 (C)2019 Elsevier Ltd.保留所有权利。

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