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Power sector decarbonization increases construction phase embodied emissions in China

Zewen Ge, Jiayi Zhang, Mufan Zhuang, Yan-Shen Yang, Kjell Kühne, Francesco Vladimiro Segala

Peer-reviewed journalReal-world use

In the authors' words

Aligning power system expansion with stringent climate targets requires rapid deployment of low-carbon generation and grids, yet the construction-phase emissions embodied in this build-out remain weakly constrained. Here, we develop a province-level framework to quantify these emissions from China’s power infrastructure expansion from 2025 to 2050 under a business-as-usual pathway and two mitigation pathways consistent with limiting warming to 2 °C and achieving carbon neutrality. We find that cumulative construction-phase embodied emissions from power generation infrastructure reach 4.10 Gt CO₂ under business as usual and 6.53-7.03 Gt CO₂ under the mitigation pathways, with national annual emissions peaking at 0.23-0.32 Gt CO₂ in the 2030 s. More than 70% of cumulative construction-phase embodied emissions are concentrated in ten provinces, with Inner Mongolia and Xinjiang consistently leading. Stricter climate constraints increase construction-phase embodied emissions. Demand-side measures, together with material efficiency and circular economy strategies, are therefore needed alongside supply-side decarbonization to align power sector expansion with stringent carbon budgets. Construction phase embodied emissions from China’s power infrastructure increase under more stringent power sector climate targets, according to a study combining power system modeling with material flow and input output analyses.

Main resultThe abstract does not state a limitation.

Appeared: Thursday, September 24. Communications Earth & Environment. Peer-reviewed journal.

DOI: 10.1038/s43247-026-04095-6