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Optimal transition pathways toward carbon neutrality in Chinese power sector: Considering regional heterogeneity and technological change

Dequn Zhou, Siqi Zhao, Hao Ding, Qunwei Wang

2023Computers & Industrial Engineering21 citationsDOIOpen Access PDF

Abstract

Carbon emission reduction, cost-affordability and supply-reliability are all important for the power system transition. This study searches for optimal transition pathways toward carbon neutrality in Chinese power sector with a high spatial resolution model, coordinating deployments of power generation, transmission, and storage. It analyzes the impacts of regional heterogeneity, technological change, and low-carbon policies on the optimal transitions. The results show that renewable energy generation technologies, especially photovoltaic, might dominate the market in the latter planning period. With technological change and low-carbon policies, offshore wind and nuclear might replace fossil energy in coastal regions. Future electricity consumption would be dominated by local absorption and guaranteed by long-distance transmission. Storage capacity would be necessary to balance intermittent output with high penetration of renewable energy. This study also provides several policy implications related to improvement of grid flexibility, reprogramming of electricity transmissions, coordinated deployments of energy storage technologies, and implementation of low-carbon policies.

Topics & Concepts

Energy transitionRenewable energyEnvironmental economicsFlexibility (engineering)Natural resource economicsPhotovoltaic systemCarbon capture and storage (timeline)Greenhouse gasElectricity generationElectricityVariable renewable energyGridEnergy storageEconomicsClimate changeEngineeringPower (physics)Electrical engineeringPathologyManagementPanacea (medicine)EcologyMathematicsMedicineQuantum mechanicsAlternative medicinePhysicsGeometryBiologyIntegrated Energy Systems OptimizationClimate Change Policy and EconomicsSocial Acceptance of Renewable Energy
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