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  4. Navigating Ambition and Equity: Systemic Codependency in China’s Carbon Neutrality Pathways
 
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2026
Journal Article
Title

Navigating Ambition and Equity: Systemic Codependency in China’s Carbon Neutrality Pathways

Abstract
Translating global climate targets into national decarbonization roadmaps is profoundly uncertain. To navigate this uncertainty for China, we employ a national-scale energy system model developed in the MESSAGEix framework─calibrated to China's energy balances─that uniquely combines provincial-level resolution for key sectors with a high-granularity representation of intra-annual (48 time slices) power system dynamics. Across three temperature targets (1.5, 1.6, 2.0 °C) and six allocation principles, our analysis reveals that wind and solar consistently emerge as "no-regret" pillars, CCS is essential for heavy-industry abatement, and hydrogen's sourcing shifts with budget stringency. A critical systemic codependency exists across scenarios with stringent emissions constraints: the power sector must transform into a net carbon sink to enable the decarbonization of heavy industry, creating stark path dependencies across technology choices. The 1.6 °C pathway under the Grandfathering principle presents a pragmatic alignment with China's 2060 neutrality pledge and offers a detailed blueprint for this transition. Our provincial-level analysis distinguishes high-stakes decisions from robust "no-regret" investments, offering a framework to guide China's journey to carbon neutrality.
Author(s)
Yu, Songmin  orcid-logo
Fraunhofer-Institut für System- und Innovationsforschung ISI  
Zhao, Fu
China Electric Power Planning & Engineering Institute, Beijing
Yang, Lingyu
Hunan University, Business School
Yao, Xing
Beihang University, School of Economics and Management
Li, Zezheng
Peking University, College of Urban and Environmental Sciences
Wei, Ning
Chinese Academy of Sciences, Institute of Rock and Soil Mechanics
Duan, Hongbo
University of the Chinese Academy of Sciences, School of Economics and Management
Journal
Environmental science and technology  
DOI
10.1021/acs.est.5c15542
Language
English
Fraunhofer-Institut für System- und Innovationsforschung ISI  
Keyword(s)
  • 1.6 °C target

  • Allocation principles

  • Carbon budget

  • China

  • Decarbonization pathways

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