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Polygeneration-Annex: Integrating hydrogen into syngas-based gasoline production

机译:Polygeneration-Annex:将氢气整合到基于合成气的汽油生产中

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As a result of the rising share of renewable energy in Germany, suitable energy storage solutions are needed. At the same time, existing base-load lignite-fired power plants suffer from low capacity utilization and frequent load changes. In combination with a Coal-to Liquids (CTL) facility, the power generation utilization might increase. By using the existing power plant infrastructure, investment costs for the CTL facility can be reduced. Such combined polygeneration concepts, called 'Annex', have been developed at TU Bergakademie Freiberg. Previously, polygeneration concepts based on Methanol - to - Gasoline (MTG), Methanol - to - Olefins and Fischer - Tropsch synthesis have been analyzed. In addition, the Annex CTL plant can be used to store energy by incorporating renewable hydrogen from electrolysis into the synthesis step. Such a concept offers the advantage to lower CO2 emissions and could be used to store renewable excess power. In the current study, concepts based on entrained-flow gasification and MTG synthesis are analyzed. This concept is compared to a stand-alone synthesis route. Linking a 52 MWel alkaline water electrolysis to the synthesis plant, hydrogen can be integrated in the CTL plant. Four different concepts for hydrogen integration are investigated. Fluctuations in hydrogen supply could be counter-balanced through storage tanks or Demand Side Management in the CTL Annex plant. A techno-economic study is conducted using the commercial software package Aspen Plus. An analysis of efficiencies, carbon emissions and production costs is provided. An overall system efficiency of 36.5-37.6% is determined. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:由于德国可再生能源的份额不断上升,因此需要合适的储能解决方案。同时,现有的基本负荷褐煤发电厂的产能利用率低且负荷变化频繁。与煤制油(CTL)设施结合使用时,发电利用率可能会提高。通过使用现有的发电厂基础设施,可以降低CTL设施的投资成本。这种联合的多代发电概念,称为“附件”,已经在弗莱贝格工业大学开发。以前,已经分析了基于甲醇制汽油(MTG),甲醇制烯烃和费-托合成的多联产概念。此外,通过将电解过程中产生的可再生氢结合到合成步骤中,可以使用附件CTL工厂存储能量。这种概念具有降低二氧化碳排放量的优势,可用于存储可再生的多余电力。在当前的研究中,分析了基于气流床气化和MTG合成的概念。将此概念与独立的合成路线进行了比较。通过将52 MWel的碱性水电解与合成装置连接,可以将氢整合到CTL装置中。研究了氢集成的四个不同概念。氢供应的波动可以通过CTL附件工厂的储罐或需求侧管理来抵消。使用商业软件包Aspen Plus进行技术经济研究。提供了效率,碳排放和生产成本的分析。确定的整体系统效率为36.5-37.6%。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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