Matilde Cais, Matteo Nicoli, Marta Gandiglio, M. Bracco, Marco Breschi, Lorenzo Cavallucci, Stefania Farinon, Antonio Macchiagodena, Giovanni Mangiulli, Riccardo Musenich, Laura Maria Borges Savoldi
Hydrogen is a key vector for energy-sector decarbonization by 2050, yet large-scale transmission options are limited. This study evaluates the cost-competitiveness of a hybrid SuperConducting Energy Pipeline (SCEP) simultaneously delivering electricity and liquid hydrogen, firstly introduced in a scenario-based capacity expansion analysis within a multi-vector energy system model. A multi-region optimization model of the Italian power and hydrogen sectors is developed using the open-source TEMOA-Italy framework. Multiple scenarios to 2050 explore emission targets, hydrogen generation options, and techno-economic parameters to assess SCEP deployment relative to conventional transmission lines. Results show the specific SCEP configuration becomes cost-effective below a capital cost around 610 M€/km/MW, or 1430 M€/km/MW if conventional line costs double. When adopted, SCEP promotes centralized hydrogen generation in high-renewable regions, increasing 2050 electrolysis output in Sardegna by ∼10 times. Findings highlight SCEP's potential role in the Italian energy transition under specific economic and policy conditions. • A hybrid superconducting pipeline is assessed for power and hydrogen transport. • A multi-region model of Italy evaluates future power and hydrogen infrastructure. • The pipeline is cost-effective with a specific investment cost below 610 €/km/MW. • Competitiveness occurs at 1430 €/km/MW if traditional line costs double. • Deployment encourages centralized hydrogen production in renewable-rich areas.