Carbon mitigation potential of metro-based underground urban logistics under operational constraints

Rising urban freight and decarbonization pressures raise an increasingly pressing question: can metros provide green freight mobility without harming passengers? We develop a policy-evaluation framework for metro-based underground logistics (MUL) that integrates multi-task demand forecasting, capacity-constrained freight realization, and emissions accounting under passenger-priority operations. Shanghai's empirical results have showed that freight demand peaks tend to occur outside passenger peaks, while high-volume freight OD flows are less concentrated along major passenger commuting corridors. Under our baseline setting, MUL realizes 66.69% of metro-replaceable demand on weekdays and 92.28% on weekends, with estimated net CO 2 reductions of 14.86% and 24.32%, respectively, after accounting for feeder travel, detours, and unrealized demand. The weekend estimate is more sensitive to freight-demand prediction uncertainty. Scenario comparisons identify station-proximate eligibility, direct routing, off-peak operation, and freight capacity allocation as the main operational levers shaping mitigation.

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Publication Details

Journal
Transportation Research Part D Transport and Environment
Published
2026-10-05
DOI
https://doi.org/10.1016/j.trd.2026.105658
Primary Topic
Urban and Freight Transport Logistics
Type
article
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article

Carbon mitigation potential of metro-based underground urban logistics under operational constraints

刘志钢, Chengcheng Yu, Xiang Liu, Bing Yan
Transportation Research Part D Transport and Environment
Urban and Freight Transport Logistics
article

Carbon mitigation potential of metro-based underground urban logistics under operational constraints

刘志钢, Chengcheng Yu, Xiang Liu, Bing Yan
article en

Abstract

Rising urban freight and decarbonization pressures raise an increasingly pressing question: can metros provide green freight mobility without harming passengers? We develop a policy-evaluation framework for metro-based underground logistics (MUL) that integrates multi-task demand forecasting, capacity-constrained freight realization, and emissions accounting under passenger-priority operations. Shanghai's empirical results have showed that freight demand peaks tend to occur outside passenger peaks, while high-volume freight OD flows are less concentrated along major passenger commuting corridors. Under our baseline setting, MUL realizes 66.69% of metro-replaceable demand on weekdays and 92.28% on weekends, with estimated net CO 2 reductions of 14.86% and 24.32%, respectively, after accounting for feeder travel, detours, and unrealized demand. The weekend estimate is more sensitive to freight-demand prediction uncertainty. Scenario comparisons identify station-proximate eligibility, direct routing, off-peak operation, and freight capacity allocation as the main operational levers shaping mitigation.

Transportation Research Part D Transport and EnvironmentVol. 161
Tongji University (CN), Shanghai Tunnel Engineering Rail Transit Design & Research Institute (CN)
Openalex Percentile: Top 15%
Urban and Freight Transport Logistics
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Carbon mitigation potential of metro-based underground urban logistics under operational constraints — 刘志钢, Chengcheng Yu, et al. · Transportation Research Part D Transport and Environment (2026) | TGRS Research Map | TGRS