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Data envelopment analysis approach to targeting in sustainable chemical process design: Application to liquid fuels

机译:可持续化学工艺设计中瞄准的数据包络分析方法:液体燃料的应用

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摘要

This article presents a framework for combining data envelopment analysis with process systems engineering tools, aiming to improve the sustainability of chemical processes. Given a set of chemical processes, each characterized by performance indicators, the framework discriminates between efficient and inefficient processes in regard to these indicators. We develop an approach to quantifying the closest targets for an inefficient process to become efficient, while preventing unrealistic targets by accounting for thermodynamic limitations represented as mass and energy flow constraints. We demonstrate the capabilities of the framework by assessing a methanol production process with captured CO2 and fossil-based H-2, in comparison to 10 alternatives. The methanol fuel is found to be suboptimal in comparison with other fuels. Making it competitive would require a significant (unrealistic in the short term) reduction in H-2 price. Alternatively, the methanol fuel could become competitive upon combining fossil-based H-2 with sustainably produced H(2)via wind-powered electrolysis. (c) 2018 American Institute of Chemical Engineers AIChE J, 65: e16480 2019
机译:本文介绍了与过程系统工程工具相结合的数据包络分析,旨在提高化学过程的可持续性。给定一套化学过程,每个化学过程都以性能指标为特征,该框架在这些指标方面有效和低效的过程之间判断。我们开发一种方法来定量最接近的目标,以使效率低下的过程变得有效,同时通过算用于表示为质量和能量流量限制的热力学限制来防止不现实的目标。我们通过评估与捕获的二氧化碳和基于化石的H-2的甲醇生产过程来证明框架的能力,与10种替代品相比。与其他燃料相比,发现甲醇燃料是次优。使其具有竞争力将需要重大(短期内的不切实际)H-2价格降低。或者,在通过风力电解的可持续生产的H(2)将基于化石的H-2组合,甲醇燃料可能变得竞争。 (c)2018年美国化学工程师AICHE J,65:E16480 2019

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