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Optimum cost for ethanol production from cassava roots and cassava chips

机译:来自木薯根和木薯芯片的乙醇生产的最佳成本

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This study aimed to evaluate the optimal proportions of two forms of feedstocks such as cassava roots and chips to minimize total cost of 340,000 liter/day ethanol production capacity by solving a linear programming problem. The time period for the optimization problem was based on 12 months in a year. There were four studied case scenarios as follows: (i) base case for interchangeable ethanol production process from two different feedstocks;; (ii) modified based case for non-interchangeable monthly production process (iii) no limitation of feedstock supply for demand of ethanol manufactured in non-interchangeable production process;; and (iv) inventory cost reduction scenario without maintaining minimum inventory during the time period of sufficient feedstock supply. The optimal result showed that cassava roots were first selected for their availability and then cassava chips were selected to satisfy monthly demand of ethanol due to three-fold higher ethanol processing cost of cassava chips as feedstock. Amongst the first three cases with minimum inventory for each month, the case of unlimited feedstock supply (scenario iii) yielded the minimum total cost. However, the optimal total ethanol production cost of scenario (iv) without minimum inventory required during seasons of harvesting (November-April) and planting (May and October) was 5% lower than that of scenario (ii).
机译:本研究旨在评估两种形式的原料的最佳比例,例如木薯根和碎片,以通过解决线性规划问题来最小化340,000升/日乙醇生产能力的总成本。优化问题的时间段基于每年12个月。有四个研究的情况下,情景如下:(ⅰ)基地情况下可互换乙醇生产过程从两个不同的原料;; (ii)基于不可互换的月生产过程(III)的基于基于案例(iii)没有限制非可互换生产过程中乙醇的需求的原料供应; (iv)库存成本降低情景,无需维持足够原料供应时间的最低库存。最佳结果表明,首先为其可用性选择木薯根,然后选择木薯片以满足乙醇的月度需求,因为木薯碎片的三倍升高的乙醇加工成本作为原料。在每月最低库存的前三个案例中,无限原料供应(方案III)的情况会产生最低总成本。然而,方案(IV)的无最低库存收获(11月 - 4月)和种植(五月和十月)的季节里,所需的最佳总乙醇生产成本为5%,比该场景的降低(II)。

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