China’s iron and steel sector is pivotal to global industrial decarbonization, yet near-zero transition pathways under heterogeneous regional resource endowments remain poorly understood. Here we develop a plant-resolved, spatially explicit framework that integrates a facility-level emission database, a cost-minimizing...
Yan Yan, Xin-Yuan Liu, Hancheng Dai et al.· Nature Communications· 0 citations
City-scale, source-resolved methane (CH4) inventories are needed in China because prefecture-level cities differ in energy systems, agricultural activities, and waste management. These differences lead to divergent dominant sources and mitigation needs. Yet city-level CH4 inventories across the energy, agriculture, and...
Li Zhang, Yifan Chen, Ke Wang et al.· Environmental Science and Te...· 0 citations
China is the world's largest source of methane (CH4) emissions and has signalled its intention to incorporate methane into its climate commitments. Designing effective methane-mitigation strategies requires robust estimates of up-to-date emissions, particularly when the pronounced spatial heterogeneity and temporal var...
Pengcheng Wu, Ke Wang, Jing Guo et al.· Scientific Data· 0 citations
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