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@INPROCEEDINGS{Jerome:1049775,
      author       = {Jerome, Gbenga},
      title        = {{C}omparative analysis of solid oxide co-electrolysis
                      designs: {S}yngas composition for methanol synthesis and
                      energy optimization using pinch analysis},
      reportid     = {FZJ-2025-05559},
      year         = {2025},
      abstract     = {Solid oxide electrolysis cells (SOECs) operating in
                      co-electrolysis mode risk carbon deposition which degrade
                      system performance and reliability. Careful operation is
                      therefore essential to prevent carbon deposition. This
                      presentation examines two SOEC system designs-a low
                      utilization and high utilization configuration each
                      employing different strategies to mitigate carbon
                      deposition. Both design were optimized to produce
                      methanol-grade synthesis gas (syngas). The study evaluated
                      the impact of operating temperature on system efficiency for
                      each configuration and applies a pinch analysis to identify
                      further opportunity for heat integration and energy
                      recovery. This study provides insight into SOEC system
                      performance and approach for improving the energy efficiency
                      of both designs using pinch analysis tool.},
      month         = {Dec},
      date          = {2025-12-10},
      organization  = {SOC Große Runde, Jülich (Germany),
                       10 Dec 2025 - 10 Dec 2025},
      subtyp        = {Other},
      cin          = {IET-1},
      cid          = {I:(DE-Juel1)IET-1-20110218},
      pnm          = {1232 - Power-based Fuels and Chemicals (POF4-123) /
                      BMBF-03SF0716A - Verbundvorhaben DryHy: Wasserbewusste
                      Erzeugung von Wasserstoff und e-Fuels in trockenen Regionen
                      (Phase 1), Teilvorhaben: Vorbereitung der Demonstationsphase
                      durch Untersuchung und Entwicklung der Einzeltechnologien
                      (BMBF-03SF0716) / HITEC - Helmholtz Interdisciplinary
                      Doctoral Training in Energy and Climate Research (HITEC)
                      (HITEC-20170406)},
      pid          = {G:(DE-HGF)POF4-1232 / G:(DE-Juel1)BMBF-03SF0716 /
                      G:(DE-Juel1)HITEC-20170406},
      typ          = {PUB:(DE-HGF)31},
      url          = {https://juser.fz-juelich.de/record/1049775},
}