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Methodology for the optimal design of an integrated first and second generation ethanol production plant combined with power cogeneration

机译:结合热电联产的第一代和第二代乙醇综合生产装置的优化设计方法

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The application of methodologies for the optimal design of integrated processes has seen increased interest in literature. This article builds on previous works and applies a systematic methodology to an integrated first and second generation ethanol production plant with power cogeneration. The methodology breaks into process simulation, heat integration, thermo-economic evaluation, exergy efficiency vs. capital costs, multi-variable, evolutionary optimization, and process selection via profitability maximization. Optimization generated Pareto solutions with exergy efficiency ranging between 39.2% and 44.4% and capital costs from 210 M$ to 390 M$. The Net Present Value was positive for only two scenarios and for low efficiency, low hydrolysis points. The minimum cellulosic ethanol selling price was sought to obtain a maximum NPV of zero for high efficiency, high hydrolysis alternatives. The obtained optimal configuration presented maximum exergy efficiency, hydrolyzed bagasse fraction, capital costs and ethanol production rate, and minimum cooling water consumption and power production rate. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在集成过程的最佳设计中应用方法论已经引起了人们越来越多的兴趣。本文以先前的工作为基础,并将系统的方法论应用于具有热电联产的综合第一代和第二代乙醇生产装置。该方法分为过程模拟,热集成,热经济评估,火用效率与资本成本,多变量,进化优化以及通过获利最大化的过程选择。优化产生了帕累托解决方案,其有效效率在39.2%至44.4%之间,资本成本从2.1亿美元至3.9亿美元。对于两种情况以及低效率,低水解点,净现值均为正。为了获得高效率,高水解替代品,寻求最低纤维素乙醇销售价格以获得最大NPV为零。所获得的最佳配置呈现出最大的火用效率,水解的蔗渣分数,资金成本和乙醇生产率,以及最低的冷却水消耗和功率生产率。 (C)2016 Elsevier Ltd.保留所有权利。

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