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Chemical storage of wind energy by renewable methanol production: Feasibility analysis using a multi-criteria decision matrix

机译:可再生甲醇生产中的风能化学存储:使用多准则决策矩阵的可行性分析

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This study is for the technoeconomic analysis of an integral facility consisting of wind energy-based electrolytic hydrogen production, bioethanol-based carbon dioxide capture and compression, and direct methanol synthesis. ASPEN Plus was used to simulate the facility producing 97.01 mt (metric tons) methanol/day using 138.37 mt CO2/day and 18.56 mt H-2/day. A discounted cash flow diagram for the integral facility is used for the economic analysis at various hydrogen production costs and methanol selling prices. The feasibility analysis is based on a multi-criteria decision matrix consisting of economic and sustainability indicators comparing renewable and non-renewable methanol productions. The overall energy efficiency for the renewable methanol is around 58%. Fixation of carbon reduces the CO2 equivalent emission by around -1.05 CO(2)e/kg methanol. The electrolytic hydrogen production cost is the largest contributor to the economics of the integral facility. The feasibility analysis based on multi-criteria shows that renewable methanol production may be feasible. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究是对一个整体设施的技术经济分析,该设施包括基于风能的电解氢生产,基于生物乙醇的二氧化碳捕获和压缩以及直接甲醇合成。 ASPEN Plus用于模拟每天生产97.01公吨(公吨)甲醇的设施,使用138.37公吨二氧化碳/天和18.56公吨H-2 /天。对于各种氢气生产成本和甲醇销售价格,使用集成设施的现金流量折现图进行经济分析。可行性分析基于包含经济和可持续性指标的多标准决策矩阵,该指标将可再生和不可再生的甲醇生产进行比较。可再生甲醇的整体能源效率约为58%。固定碳可减少约-1.05 CO(2)e / kg甲醇的CO2当量排放量。电解氢的生产成本是整体设备经济性的最大贡献。基于多标准的可行性分析表明,可再生甲醇生产可能是可行的。 (C)2015 Elsevier Ltd.保留所有权利。

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