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Optimizing site selection for hydrogen production in Iceland

机译:优化冰岛制氢的选址

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While the world energy demand is steadily growing, the concern for the environmental aspects of energy use and natural resource exploitation has increased. A new market has emerged for renewable energy, often referred to as "green energy". This paper presents an optimization model developed as part of a feasibility study on the idea of exporting renewable energy in the form of hydrogen, from Iceland to the continent of Europe. The goal is to find the most economical ways of producing hydrogen solely via electrolysis from water, using electricity from hydro and geothermal power. The mixed integer programming model presented here facilitates the search for optimal choices from the 23 potential power plants, 11 of which are based on geothermal sources, and 12 are hydropower stations. The best locations for hydrogen production are in the southwest region of Iceland and the least expensive hydrogen production is at energy demand between 2 and 4TWh/yr. At lower demand, the cost of energy is relatively higher, due to inefficient use of power plants and transfer lines. At higher demand, the cost of constructing new power transfer lines increases, leading to higher overall energy costs.
机译:在世界能源需求稳定增长的同时,对能源使用和自然资源开发的环境问题的关注也增加了。可再生能源的新市场已经出现,通常被称为“绿色能源”。本文提出了一种优化模型,该模型是对从冰岛到欧洲大陆以氢的形式输出可再生能源的想法进行可行性研究的一部分。目标是找到最经济的方式,仅使用水能和地热能的电能通过水的电解生产氢。这里介绍的混合整数规划模型有助于从23个潜在发电厂中寻找最佳选择,其中11个是基于地热源的,而12个是水力发电厂。制氢的最佳地点在冰岛的西南地区,最便宜的制氢需求在2至4TWh /年之间。在较低的需求下,由于发电厂和输电线路的使用效率低,能源成本相对较高。在更高的需求下,建造新的电力传输线的成本增加,导致总的能源成本更高。

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