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Renewable hydrogen potential for low-carbon retrofit of the building stocks

机译:可再生的氢气潜力可用于建筑材料的低碳改造

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摘要

Energy-related GHG emissions, mainly from fossil fuels combustion, account for around 70% of total emissions. Those emissions are the target of the recent sustainability policies. Indeed, renewables exploitation is considered widely the weapon to deal with this challenge thanks to their carbon neutrality. But, the biggest drawback is represented by the mismatching between their production and users consumption. The storage would be a possible solution, but its viability consists of economic sustainability and energy process efficiency as well. The cutting edge technologies of batteries have not still solved these issues at the same time. So, a paradigm shift towards the identification of an energy carrier as storage option, the so called Power-to-Gas, could be the viable solution. From viability to feasibility, a mandatory step is required: the opportunity to integrate the new solution in the proven infrastructures system. Thus, the recent studies on Hydrogen (H2) enrichment in Natural Gas, demonstrating a lower environmental impact and an increase in energy performance, are the base to build the hydrogen transition in the urban environment. The aim of this paper is to evaluate the environmental benefits at building and district scale.
机译:与能源有关的温室气体排放(主要来自化石燃料燃烧)约占总排放量的70%。这些排放是近期可持续性政策的目标。实际上,由于可再生能源的碳中和,其被广泛认为是应对这一挑战的武器。但是,最大的缺点是其生产与用户消费之间的不匹配。存储将是一个可能的解决方案,但其可行性还包括经济可持续性和能源过程效率。电池的尖端技术仍不能同时解决这些问题。因此,朝着将能源载体识别为存储选项的范式转变,即所谓的“天然气发电”,可能是可行的解决方案。从可行性到可行性,必须执行强制性步骤:有机会将新解决方案集成到经过验证的基础架构系统中。因此,最近对天然气中氢气(H2)富集的研究证明了对环境的较低影响和能源性能的提高,是在城市环境中建立氢过渡的基础。本文的目的是评估建筑和区域规模的环境效益。

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  • 作者

    Nastasi, B Benedetto;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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