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Societal penetration of hydrogen into the future energy system: Impacts of policy, technology and carbon targets

机译:氢在未来能源系统中的社会渗透:政策,技术和碳目标的影响

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Decarbonization of the energy system is a key goal of the Paris Agreements, in order to limit temperature rises to under 2 Celsius. Hydrogen has the potential to play a key role through its versatile production methods, end uses and as a storage medium for renewable energy, engendering the future low-carbon energy system. This research uses a global model cognizant of energy policy, technology learning curves and international carbon reduction targets to optimize the future energy system in terms of cost and carbon emissions to the year 2050. Exploring combinations of four exploratory scenarios incorporating hydrogen city gas blend levels, nuclear restrictions, regional emission reduction obligations and carbon capture and storage deployment timelines, it was identified that hydrogen has the potential to supply approximately two percent of global energy needs by 2050. Irrespective of the quantity of hydrogen produced, the transport sector and passenger fuel cell vehicles are consistently a preferential end use for future hydrogen across regions and modeled scenarios. In addition to the potential contribution of hydrogen, a shift toward renewable energy and a significant role for carbon capture and storage is identified to underpin carbon target achievement by 2050. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:为了将温度上升限制在2摄氏度以下,能源系统的脱碳是《巴黎协定》的主要目标。氢气有潜力通过其多样化的生产方法,最终用途以及作为可再生能源的存储介质而发挥关键作用,从而催生了未来的低碳能源系统。这项研究使用了全球能源政策模型,技术学习曲线和国际减碳目标来优化到2050年的未来能源系统的成本和碳排放量。探索四种结合氢气城市燃气混合水平的探索性方案的组合,根据核限制,区域减排义务以及碳捕集与封存部署时间表,到2050年,氢有潜力满足全球约2%的能源需求。与氢的生产量,运输部门和乘用燃料电池无关车辆一直是未来跨区域和模拟方案使用氢气的优先最终用途。除了氢的潜在贡献外,人们还确定了向可再生能源的转变以及在碳捕获和储存方面的重要作用,以支持到2050年实现碳目标。(C)2019 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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