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Bureau-specific spatiotemporal carbon footprints and decarbonization pathways of China's railways
Xiaofan Wang1, Junjie Li1,2, Yulong Yan1
1Engineering Research Center of Clean and Low-carbon Technology for Intelligent Transportation, Ministry of Education, School of Carbon Neutrality and Environment, Beijing Jiaotong University, Beijing 100044, China.
Abstract:
China's industrialization and urbanization have driven differentiated railway development across regions, necessitating refined carbon footprint (CF) accounting at the bureau scale to address spatiotemporal heterogeneity beyond national-level analysis. Here we developed a bureau-specific CF model incorporating energy mix, technological efficiency, fleet structure, and transport capacity, paired with driver and efficiency identification models. Results show China's operational railway emissions dropped 25.5% during 2010-2022 but concentrated in northern bureaus, with Taiyuan (2.78 Mt CO2-eq), Shenyang (2.75 Mt CO2-eq), and Zhengzhou (2.52 Mt CO2-eq) as top emitters in 2022, primarily driven by energy intensity and transport volume variations. Electrification reduced emission intensity (electric locomotives outperforming diesel ones) but relies on low-carbon electricity. Emission efficiency improved alongside declining emissions, with Taiyuan railway bureau ranked first in both total CF and efficiency. These findings emphasize region-specific decarbonization strategies integrating renewable energy, technological upgrading, and operational optimization.