[Carbon Reduction Analysis of Life Cycle Prediction Assessment of Hydrogen Fuel Cell Vehiclesï¼Considering Regional Features and Vehicle Type Differences].
Huan Jing Ke Xue
; 45(2): 744-754, 2024 Feb 08.
Article
em Zh
| MEDLINE
| ID: mdl-38471914
ABSTRACT
As one of the important paths for China to achieve the "dual carbon" strategyï¼ developing hydrogen fuel cell vehicles is currently being promoted in various regions across the countryï¼ including passenger carsï¼ coachesï¼ and heavy-duty trucks. Quantifying the carbon reduction potential of hydrogen fuel cell vehicles for different vehicle types and regions has become a hot research topic. Using a life cycle assessment method that considers future vehicle fuel economyï¼ power generation carbon emission factorsï¼ hydrogen production carbon emission factorsï¼ and regional differences in the scale and hydrogen production methodsï¼ this study quantitatively evaluated the life cycle carbon emissions of different types of vehiclesï¼ including fuel cell vehicles ï¼FCVï¼ï¼ traditional fuel vehicles ï¼ICEVï¼ï¼ and battery electric vehicles ï¼BEVï¼. We compared and analyzed the carbon reduction potential of hydrogen fuel cell vehicles at different times and in different regions and conducted an uncertainty analysis on hydrogen consumption per hundred kilometers. The results showed that by 2025ï¼ the life cycle carbon emissions of hydrogen fuel cell coaches would decrease by 36.0% compared to that of traditional fuel coachesï¼ but the reduction in carbon emissions for hydrogen fuel cell heavy-duty trucks was not significant. By 2035ï¼ as the hydrogen energy source structure in China continues to improveï¼ the life cycle carbon emissions of hydrogen fuel cell heavy-duty trucks were predicted to decrease by 36.5% compared to that of traditional fuel heavy-duty trucks. The decarbonization potential was most significant for heavy-duty trucks compared to that of passenger cars and coaches. Taking the Beijing-Tianjin-Hebei demonstration group as an example in 2035ï¼ as the hydrogen consumption per hundred kilometers decreases by 20%ï¼ the carbon reduction potential of FCV passenger carsï¼ coachesï¼ and heavy-duty trucks would increase by 7.29%ï¼ 9.93%ï¼ and 19.57%ï¼ respectively. Thereforeï¼ it is recommended to prioritize the promotion of hydrogen fuel cell coaches in the short termï¼ heavy-duty trucks in the long termï¼ and passenger cars as a supplement. Promoting hydrogen fuel cell vehicles in different regions and stages will help advance the low-carbon development of the automotive industry in China.
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01-internacional
Base de dados:
MEDLINE
Idioma:
Zh
Revista:
Huan Jing Ke Xue
Ano de publicação:
2024
Tipo de documento:
Article