Near-Net-Zero Offshore Gas-to-Wire for CO2-Rich Natural Gas: Lost Power and Marginal Abatement Cost Analyses

Natural gas combined cycles with carbon capture and utilization represent reliable alternatives for decarbonized power generation with approximately net-zero emissions. This is valid even for offshore gas and oil rigs situated at remote deepwater locations where high-depth gas pipelines are costly. For such rigs, gas-to-shore is unfeasible and is often replaced by gas-to-wire analogues, wherein gas energy is exported to shore as electricity through high-voltage direct-current subsea cables. This study investigates the thermodynamic and marginal abatement cost (MAC) performances of decarbonized-gas-to-wire offshore plants firing CO2-rich natural gas, whose decarbonization was accomplished through post-combustion aqueous-monoethanolamine absorption. Thermodynamic analysis evaluated maximum work, equivalent work, lost work, and thermodynamic efficiency, with consistency guaranteed through two independent lost work calculations with only 1.14% discrepancy. The decarbonized-gas-to-wire achieved 37.7% thermodynamic efficiency with 543.4 MW lost work, while the carbon-emitting counterpart attained 53.5% efficiency and 433 MW lost work, wherein capture penalties respond for the former performance losses. The power generation and aqueous-monoethanolamine subsystems of decarbonized gas-to-wire were the major lost work sinks attaining, respectively, 72.5% and 14.4% of total lost work, being the units with greater potential for better thermodynamic performance through technology upgrading. Meanwhile, MAC analysis unveils that the decarbonized gas-to-wire environmental–economic performance can be dramatically improved through carbon utilization for enhanced oil recovery, even outperforming the carbon-emitting counterpart.

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Publication Details

Journal
Methane
Published
2026-10-01
DOI
https://doi.org/10.3390/methane5040032
Primary Topic
Offshore Engineering and Technologies
Type
article
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article

Near-Net-Zero Offshore Gas-to-Wire for CO2-Rich Natural Gas: Lost Power and Marginal Abatement Cost Analyses

José Luiz de Medeiros, Ofélia de Queiroz Fernandes Araújo, Júlio Lemos Garcia
Methane
Offshore Engineering and Technologies
article

Near-Net-Zero Offshore Gas-to-Wire for CO2-Rich Natural Gas: Lost Power and Marginal Abatement Cost Analyses

José Luiz de Medeiros, Ofélia de Queiroz Fernandes Araújo, Júlio Lemos Garcia
article en

Abstract

Natural gas combined cycles with carbon capture and utilization represent reliable alternatives for decarbonized power generation with approximately net-zero emissions. This is valid even for offshore gas and oil rigs situated at remote deepwater locations where high-depth gas pipelines are costly. For such rigs, gas-to-shore is unfeasible and is often replaced by gas-to-wire analogues, wherein gas energy is exported to shore as electricity through high-voltage direct-current subsea cables. This study investigates the thermodynamic and marginal abatement cost (MAC) performances of decarbonized-gas-to-wire offshore plants firing CO2-rich natural gas, whose decarbonization was accomplished through post-combustion aqueous-monoethanolamine absorption. Thermodynamic analysis evaluated maximum work, equivalent work, lost work, and thermodynamic efficiency, with consistency guaranteed through two independent lost work calculations with only 1.14% discrepancy. The decarbonized-gas-to-wire achieved 37.7% thermodynamic efficiency with 543.4 MW lost work, while the carbon-emitting counterpart attained 53.5% efficiency and 433 MW lost work, wherein capture penalties respond for the former performance losses. The power generation and aqueous-monoethanolamine subsystems of decarbonized gas-to-wire were the major lost work sinks attaining, respectively, 72.5% and 14.4% of total lost work, being the units with greater potential for better thermodynamic performance through technology upgrading. Meanwhile, MAC analysis unveils that the decarbonized gas-to-wire environmental–economic performance can be dramatically improved through carbon utilization for enhanced oil recovery, even outperforming the carbon-emitting counterpart.

MethaneVol. 5(4)
Universidade Federal do Rio de Janeiro (BR)
Openalex Percentile: Top 16%
Offshore Engineering and Technologies
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Near-Net-Zero Offshore Gas-to-Wire for CO2-Rich Natural Gas: Lost Power and Marginal Abatement Cost Analyses — José Luiz de Medeiros, Ofélia de Queiroz Fernandes Araújo, et al. · Methane (2026) | TGRS Research Map | TGRS