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Biodiesel production from engineered sugarcane lipids under uncertain feedstock compositions: Process design and techno-economic analysis

机译:在不确定原料组合物下的工程化甘蔗脂质的生物柴油生产:工艺设计和技术经济分析

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摘要

In this study, different process schemes were designed and evaluated for biodiesel production from engineered cane lipids with uncertain fatty acid compositions. Four different process schemes were compared under (i) thermal glycerolysis and (ii) enzymatic glycerolysis approaches. These schemes were based on the biodiesel yield and economic indicators such as the net present value (NPV) and the minimum selling price (MSP) of biodiesel. A scheme with polar lipid separation under thermal glycerolysis resulted in the maximum NPV ($96.5 million) and minimum MSP ($1107/ton biodiesel), respectively. Through local sensitivity analysis, it was concluded that the cane lipid percentage is the most significant factor influencing process economics. A conjoint analysis of the lipid procurement price and cane lipid percent suggested that 15% cane lipids with a low lipid procurement price ($0.536/kg) results in a positive NPV. When the cane lipid price is higher ($0.80/kg), a 20% lipid content should be considered to achieve a positive NPV. At 20% cane lipids, the worst-case and best-case scenarios were evaluated by analyzing the interplay of the three most important parameters, The best-case scenario revealed that the minimum NPV under any process scheme could yield more than $100 million (or MSP: $0.80/L), and the worst-case analysis showed that losses incurred by the plant could be as high as $80 million (MSP: $1.36/L). A Monte Carlo simulation indicated that there is a 70% chance of the plant being profitable (NPV 0).
机译:在该研究中,设计了不同的工艺方案,并评估了具有不确定脂肪酸组合物的工程甘露脂质的生物柴油生产。在(i)热甘油分解和(II)酶促甘油分解方法下比较了四种不同的工艺方案。这些方案基于生物柴油产量和经济指标,如净目前价值(NPV)和生物柴油的最低销售价格(MSP)。热甘油分解下具有极性脂质分离的方案,分别导致最大NPV(9650万美元)和最低MSP(1107美元/吨生物柴油)。通过局部敏感性分析,得出结论是,甘蔗脂质百分比是影响过程经济学的最重要因素。对脂质采购价格和蔗糖百分比的联合分析表明,15%的碱性采购价格(0.536 / kg)的碱性脂质导致阳性NPV。当甘蔗脂价格较高时(> 0.80 / kg),应考虑20%的脂质含量以达到阳性NPV。在20%的甘蔗脂质中,通过分析三个最重要的参数的相互作用来评估最坏情况和最佳情况,最佳场景显示任何流程计划下的最低NPV可能会产生超过1亿美元(或MSP:0.80 / L),最坏情况分析表明,该工厂所产生的损失可能高达8000万美元(MSP:$ 1.36 / L)。蒙特卡洛模拟表明,工厂有利可图的70%几率(NPV> 0)。

著录项

  • 来源
    《Applied Energy》 |2020年第15期|115933.1-115933.17|共17页
  • 作者

    Arora Amit; Singh Vijay;

  • 作者单位

    Indian Inst Technol Mumbai 400076 Maharashtra India|Univ Illinois Ctr Adv Bioenergy & Bioprod Innovat CABBI Urbana IL 61801 USA;

    Univ Illinois Dept Agr & Biol Engn 1304 W Penn Ave Urbana IL 61801 USA|Univ Illinois Ctr Adv Bioenergy & Bioprod Innovat CABBI Urbana IL 61801 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biofuels; Biodiesel; Techno-economic analysis; Engineered sugarcane; Monte Carlo;

    机译:生物燃料;生物柴油;技术经济分析;工程甘蔗;蒙特卡罗;

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