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Well-to-wheel analysis of hydrogen fuel-cell electric vehicle in Korea

机译:韩国氢燃料电池电动汽车的全轮驱动分析

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This study provides methodologies, data collection and results of well-to-wheel greenhouse gas analysis of various H-2 production pathways for fuel-cell electric vehicle (FCEV) in Korea; naphtha cracking, steam methane reforming, electrolysis and coke oven gas purification. The well-to-wheel (WTW) greenhouse gas emissions of FCEV are calculated as 32,571 to 249,332 g-CO2 eq./GJ or 50.7 to 388.0 g-CO2 eq./km depending on the H-2 production pathway. The landfill gas (on-site) pathway has the lowest GHG emissions because the carbon credit owing to use landfill gas. The electrolysis with Korean grid mix (on-site) pathway has the highest GHG emissions due to its high emission factor of the power generation process. Furthermore, the results are compared with other powertrain vehicles in Korea such as internal combustion engine vehicle (ICEV), hybrid electric vehicle (HEV) and electric vehicle (EV). The averaged WTW result of FCEV is 35% of ICEV, is 47% of HEV, and is 63% of EV. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究提供了韩国燃料电池电动汽车(FCEV)的各种H-2生产途径的轮转温室气体分析的方法,数据收集和结果;石脑油裂解,甲烷蒸汽重整,电解和焦炉煤气净化。根据H-2的生产路径,FCEV的轮转(WTW)温室气体排放量计算为32,571至249,332 g-CO2当量/ GJ或50.7至388.0 g-CO2当量/ km。垃圾填埋气(现场)路径的GHG排放量最低,因为使用垃圾填埋气产生了碳信用。带有韩国电网混合(现场)途径的电解由于其发电过程中的高排放因子而具有最高的温室气体排放量。此外,将结果与韩国的其他动力总成汽车(如内燃机汽车(ICEV),混合动力电动汽车(HEV)和电动汽车(EV))进行了比较。 FCEV的平均WTW结果为ICEV的35%,HEV的47%和EV的63%。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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