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Life Cycle Assessment and Water Footprint of Hydrogen Production Methods: From Conventional to Emerging Technologies

机译:氢气生产方法的生命周期评估和水足迹:从传统技术到新兴技术

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A common sustainability issue, arising in production systems, is the efficient use of resources for providing goods or services. With the increased interest in a hydrogen (H 2 ) economy, the life-cycle environmental performance of H 2 production has special significance for assisting in identifying opportunities to improve environmental performance and to guide challenging decisions and select between technology paths. Life cycle impact assessment methods are rapidly evolving to analyze multiple environmental impacts of the production of products or processes. This study marks the first step in developing process-based streamlined life cycle analysis (LCA) of several H 2 production pathways combining life cycle impacts at the midpoint (17 problem-oriented) and endpoint (3 damage-oriented) levels using the state-of-the-art impact assessment method ReCiPe 2016. Steam reforming of natural gas, coal gasification, water electrolysis via proton exchange membrane fuel cell (PEM), solid oxide electrolyzer cell (SOEC), biomass gasification and reforming, and dark fermentation of lignocellulosic biomass were analyzed. An innovative aspect is developed in this study is an analysis of water consumption associated with H 2 production pathways by life-cycle stage to provide a better understanding of the life cycle water-related impacts on human health and natural environment. For water-related scope, Water scarcity footprint (WSF) quantified using Available WAter REmaining (AWARE) method was applied as a stand-alone indicator. The paper discusses the strengths and weaknesses of each production pathway, identify the drivers of environmental impact, quantify midpoint environmental impact and its influence on the endpoint environmental performance. The findings of this study could serve as a useful theoretical reference and practical basis to decision-makers of potential environmental impacts of H 2 production systems.
机译:生产系统中出现的一个常见的可持续性问题是有效利用资源来提供商品或服务。随着人们对氢(H 2)经济的兴趣日益浓厚,H 2生产的生命周期环境绩效对协助发现改善环境绩效的机会,指导具有挑战性的决策以及在技术路径之间进行选择具有特殊意义。生命周期影响评估方法正在迅速发展,以分析产品或过程生产的多种环境影响。这项研究标志着开发基于H2生产途径的基于流程的简化生命周期分析(LCA)的第一步,该流程结合了使用状态-最先进的影响评估方法ReCiPe2016。天然气的蒸汽重整,煤气化,通过质子交换膜燃料电池(PEM)进行水电解,固体氧化物电解槽(SOEC),生物质气化和重整以及木质纤维素的黑暗发酵生物量进行了分析。本研究开发的一个创新方面是按生命周期阶段分析与H 2生产途径相关的耗水量,以更好地了解生命周期中与水有关的对人类健康和自然环境的影响。对于与水有关的范围,将使用可用剩余水量(AWARE)方法量化的缺水足迹(WSF)用作独立指标。本文讨论了每种生产途径的优缺点,确定环境影响的驱动因素,量化中点环境影响及其对端点环境绩效的影响。这项研究的结果可以为决策者对H 2生产系统的潜在环境影响提供有用的理论参考和实践基础。

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