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An urban techno-economic hydrogen penetration scenario analysis for Burdur, Turkey

机译:土耳其布德尔的城市经济氢渗透情景分析

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In this paper, the current energy mix and the power generation infrastructure of Turkey have been analyzed and two different hydrogen based alternative scenarios applied on Burdur TIMES energy model to foresee the economic and environmental results in the 2016-2031 time period.An improved RES was created to illustrate the current energy network of Burdur city and to determine the relationships between energy carriers and the respective technologies, and then this structure is specified by the relevant data, including fuel cell-powered land vehicle technologies integrated into the land transportation demand side.This paper analyses the feasibility of hydrogen as an alternative energy carrier in the fuel mix for electricity generation in Burdur City to achieve sustainable economic growth, to improve the energy security by minimizing respective environmental emissions and indicate the possible implications of the introduction of the hydrogen supply chain and respective fuel cell end-use technologies in a city level energy modelling perspective. Burdur is selected as the target city to implement the designated level of land transport passenger demand by hydrogen technologies; and after implementation of hydrogen cars in 2020; it has been evaluated that only 0.09 PJ of hydrogen car activity prevents a total of 43.44 kT CO2 emission in Burdur, addressing the 8% of the total emission in the base scenario between the analysis time horizon. Finally, hydrogen has been evaluated as a clean, dependable option to diversify the energy mix on the current energy supply system of Burdur. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,已经分析了土耳其的能量混合和发电基础设施,并应用了两种不同的氢基替代情景,适用于奶油赛时能源模型,以预见到2016 - 2016年时间段的经济和环境结果。改进的RES创建以说明班尔市的当前能量网络,并确定能量载波与各自技术之间的关系,然后该结构由相关数据指定,包括集成到陆路运输需求方面的燃料电池供电的土地车辆技术。本文分析了氢气作为燃料混合中的替代能源载体的可行性,以实现可持续的经济增长,以通过最大限度地减少环保排放来提高能源安全,并表明氢气引入的可能影响链条和相应的燃料电池最终使用城市级能源建模视角中的echnologies。 Burdur被选为目标城市,通过氢技术实施土地运输乘客需求的指定水平;在2020年实施氢气之后;已经评估,只有0.09pj的氢气活动可防止在Brandur中共有43.44千克的二氧化碳排放,解决了分析时间范围之间基础情景中总排放量的8%。最后,氢已被评估为清洁,可靠的选择,以使能源混合物在挤压箱的当前能量供应系统上多样化。 (c)2019氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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