A feasibility study of using renewable-based hydrogen in off-grid domestic energy systems: a case study in Italy

Alessandro Bosisio, A. Morotti, Stefano Penati, A. Berizzi, Caterina Pasetti, G. Iannarelli
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Abstract

Electrification is increasingly the way to reduce greenhouse gas emissions from domestic heating, cooling, and appliance consumption. Especially in rural areas, a potential solution could be to create off-grid housing using green hydrogen produced by building-integrated photovoltaics. In this framework, the paper presents a feasibility study of using renewable-based hydrogen in off-grid domestic energy systems considering several scenarios, from the current to the full electric one, taking into account various household appliances, heating/cooling systems, and buildings’ energy efficiencies. In particular, a robust approach that considers several demands and photovoltaic productions over five years has been implemented to investigate the impact on hydrogen production and consumption from the north to the south of Italy. Energy demand, photovoltaic production, and weather data of a sample house located in three cities, Brescia, Rome, and Palermo, have been used. A significant emphasis is placed on the installed hydrogen storage tank’s size, performance during the year, and recharges to face hydrogen shortage. The outcomes of the analysis highlight that some issues still need to be solved to achieve an off-grid household, especially in the full electric scenario and in buildings with low efficiency.
在离网家庭能源系统中使用可再生氢的可行性研究:以意大利为例
电气化日益成为减少家庭供暖、制冷和家电消费产生的温室气体排放的途径。特别是在农村地区,一个潜在的解决方案可能是利用建筑集成光伏发电产生的绿色氢来建造离网住宅。在此框架下,本文提出了在离网家用能源系统中使用可再生氢的可行性研究,考虑了几种情况,从当前到全电动,考虑到各种家用电器,加热/冷却系统和建筑物的能源效率。特别是,已经实施了一项强有力的方法,考虑了五年内的几种需求和光伏生产,以调查从意大利北部到南部对氢气生产和消费的影响。能源需求、光伏生产和位于布雷西亚、罗马和巴勒莫三个城市的样本房屋的天气数据已经被使用。一个重要的重点放在安装的储氢罐的大小,全年的性能,以及面对氢气短缺的充电。分析结果强调,要实现离网家庭,特别是在全电动场景和低效率建筑中,仍需要解决一些问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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