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Assessing the environmental impacts of wind-based hydrogen production in the Netherlands using ex-ante LCA and scenarios analysis

机译:使用前蚂蚁LCA和情景分析评估荷兰荷兰氢生产的环境影响

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Two electrolysis technologies fed with renewable energy sources are promising for the production of CO2-free hydrogen and enabling the transition to a hydrogen society: Alkaline Electrolyte (AE) and Polymer Electrolyte Membrane (PEM). However, limited information exists on the potential environmental impacts of these promising sustainable innovations when operating on a large-scale. To fill this gap, the performance of AE and PEM systems is compared, using ex-ante Life Cycle Assessment (LCA), technology analysis and exploratory scenarios for which a refined methodology has been developed to study the effects of implementing large-scale sustainable hydrogen production systems. Ex-ante LCA allows modelling the environmental impacts of hydrogen production, exploratory scenario analysis allows modelling possible upscaling effects at potential future states of hydrogen production and use in vehicles in the Netherlands in 2050. A bridging tool for mapping the technological field has been created enabling the combination of quantitative LCAs with qualitative scenarios. This tool also enables diversity for exploring multiple sets of visions. The main results from the paper show, with an exception for the "ozone depletion" impact category, (1) that large-scale AE and PEM systems have similar environmental impacts with variations lower than 7% in all impact categories, ( 2) that the contribution of the electrolyser is limited to 10% of all impact categories results, and (3) that the origin of the electricity is the largest contributor to the environmental impact contributing to more than 90% in all impact categories, even when renewable energy sources are used. It is concluded that the methodology was applied successfully and provides a solid basis for an ex-ante assessment framework that can be applied to emerging technological systems. (C) 2021 The Authors. Published by Elsevier Ltd.
机译:通过可再生能源供给的两种电解技术是对生产二氧化碳氢的产生,并能够过渡到氢气社会:碱性电解质(AE)和聚合物电解质膜(PEM)。然而,在大规模操作时,这些有希望的可持续创新的潜在环境影响存在有限的信息。为了填补这种差距,使用EX-Ante生命周期评估(LCA),技术分析和探索性情景来进行比较,用于研究实施大规模可持续氢气的影响,实现AE和PEM系统的性能。生产系统。 ex-ante lca允许建模氢气产生的环境影响,探索性情景分析允许在2050年在荷兰的潜在未来氢气生产状态下建模的升高效应和在荷兰的车辆中使用。用于绘制技术领域的桥接工具已启用启用技术领域定量LCA与定性情景的组合。该工具还可以实现多样性来探索多组愿景。纸张显示的主要结果,“臭氧耗尽”影响类别例外,(1)大规模AE和PEM系统具有类似的环境影响,各种影响范围低于7%,(2)电解仪的贡献限制在所有影响类别结果的10%,(3)即使在可再生能源时,电力的起源是对环境影响的最大贡献者贡献的环境影响超过90%,即使是可再生能源使用。得出结论,该方法成功应用,并为可以应用于新兴技术系统的前蚂蚁评估框架提供了坚实的基础。 (c)2021作者。 elsevier有限公司出版

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