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Model-based techno-economic evaluation of an electricity storage system based on Liquid Organic Hydrogen Carriers

机译:基于模型的液态有机氢载体储电系统的技术经济评价

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A techno-economic evaluation and feasibility study of a stationary electricity storage system is conducted for an application in an industrial plant. The analysis is based on a model that includes both technological and economic components. It assumes that electricity is produced through wind turbines and photovoltaic systems. The produced electricity can be stored by conversion to hydrogen through electrolysis and reconversion through thermal energy converters. The system stores the produced hydrogen using Liquid Organic Hydrogen Carriers (LOHC). As carrier material, dibenzyltoluene is selected. The model includes investment costs and calculations to conduct economic analysis. It is used to create economically optimized systems that give realistic cost estimations. Technical and economic data are taken from in-house experiments, quotes from manufacturers and literature. The application is evaluated for the electricity supply to a BMW Group production site located in Germany. Results show that at present, converting excess energy to heat is a more economical option than electricity storage using LOHC. However, if the goal is to provide a majority (>75%) of the needed electricity with on-site renewable energy, an energy storage system becomes economical to use today. Based on assumptions for the year 2030 a completely self-sufficient energy supply system built in 2030 is competitive to the electricity purchase from the grid. (C) 2016 Elsevier Ltd. All rights reserved.
机译:进行了固定式蓄电系统的技术经济评估和可行性研究,以用于工业厂房。该分析基于包含技术和经济成分的模型。它假定电力是通过风力涡轮机和光伏系统产生的。产生的电能可以通过电解转化为氢并通过热能转换器进行再转化来存储。该系统使用液态有机氢载体(LOHC)储存产生的氢。作为载体材料,选择二苄基甲苯。该模型包括投资成本和进行经济分析的计算。它用于创建可进行实际成本估算的经济优化系统。技术和经济数据来自内部实验,制造商的报价和文献资料。该应用程序经过评估,可以为位于德国的宝马集团生产基地供电。结果表明,与使用LOHC进行电能存储相比,目前将多余的能量转换为热量是更经济的选择。但是,如果目标是为现场所需的大部分电能(> 75%)提供可再生能源,那么如今的储能系统将变得经济实用。根据2030年的假设,到2030年建立的完全自给自足的能源供应系统与从电网购买电力相比具有竞争力。 (C)2016 Elsevier Ltd.保留所有权利。

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