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Economic analysis of a second-generation ethanol and electricity biorefinery using superstructural optimization

机译:使用超现结构优化的第二代乙醇和电生物术的经济学分析

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摘要

This paper investigates the economic feasibility of expanding a first-generation sugarcane distillery into a biorefinery by producing second-generation ethanol and increasing electricity production. Both products compete for using the same biomass by-products, sugarcane bagasse and straw, as raw-material. Two pathways for electricity generation were considered: a Rankine Cycle and a Biomass Integrated Gasification Combined Cycle. Also, the feasibility of producing biogas from anaerobic digestion of vinasse was assessed. Superstructural optimization was employed to evaluate the optimal fraction of bagasse that should be addressed for either ethanol or electricity product and to define the most economic route for generating electricity. The objective function was based on the benefit-cost ratio (BCR) criterion for investment A Monte-Carlo method was used to quantify the level of uncertainty associated with the preliminary cost estimations and varying selling prices of products. In all scenarios, the optimal conditions were the hydrolysis of all available bagasse and the combustion of sugarcane straw, lignin, and biogas in a Rankine Cycle. With actual values, the expansion would cost US$ 535.2 million. Even in more favourable scenarios, the expansion of the distillery was considered economically unattractive with a BCR of 0.6209 due to high investment and operating costs.
机译:本文通过生产第二代乙醇和增加电力生产,调查将第一代甘蔗酿酒厂扩展到生物颗粒中的经济可行性。两种产品竞争使用相同的生物量副产品,甘蔗甘蔗和稻草,为原料。考虑了两种发电的途径:朗肯循环和生物质综合气化联合循环。此外,评估了从厌氧消化的vinasse产生沼气的可行性。使用超结构优化来评估应该针对乙醇或电力产品寻址的甘蔗渣的最佳部分,并限定发电的最经济途径。目标函数基于益处 - 成本比(BCR)投资标准,用于量化与初步成本估算相关的不确定性水平,并改变产品的不同销售价格。在所有情况下,最佳条件是所有可用的甘蔗渣和甘蔗秸秆,木质素和沼气燃烧的水解。凭借实际价值,扩张将花费5.352亿美元。即使在更有利的情景中,由于高投资和运营成本,酿酒厂的扩展被认为是0.6209的BCR。

著录项

  • 来源
    《Energy》 |2020年第1期|117988.1-117988.11|共11页
  • 作者单位

    Department of Chemistry Biotechnology and Bioprocess Engineering Federal University of Sao Joao Del-Rey Campus Alto Paraopeba Rod. MG 443 Km 7 Ouro Branco-MG 36420-000 Brazil;

    Department of Chemical Engineering State University of Maringa Av. Colombo 5790 Jardim Universitario Maringa-PR 87020-900 Brazil;

    Department of Chemical Engineering Federal University of Sao Carlos Rod. Washington Luis Km 235 Sao Carlos-SP 13565-905 Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sugarcane; Bagasse; Vinasse; Cogeneration; Gasification; Biodigestion;

    机译:甘蔗;渣;vinasse;热电联产;气化;生物消化;

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