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dc.contributor.advisorNur, Taufiq Bin
dc.contributor.authorSyah, Muhammad Ibrahim
dc.date.accessioned2025-07-21T08:36:28Z
dc.date.available2025-07-21T08:36:28Z
dc.date.issued2025
dc.identifier.urihttps://repositori.usu.ac.id/handle/123456789/106047
dc.description.abstractThe growing demand for energy has encouraged the development of renewable energy technologies, including the utilization of biomass waste such as Empty Fruit Bunches (EFB). This study aims to analyze the thermodynamic conversion process of EFB into hydrogen-rich syngas through a pyrolysis system connected with gasification and a Steam Methane Reformer (SMR), using Aspen Plus simulation software. The simulation was conducted under varying gasification reactor pressures (1–10 atm) and temperatures (600–1000 °C) to determine their effects on syngas composition. Simulation results were validated against experimental data from the literature, with syngas composition errors below 6%. The optimal condition was achieved at 850 °C and 1 atm, producing 38.3% H₂ and 35.72% CO. After passing through the SMR and Water Gas Shift (WGS), the hydrogen content increased to 59.26%. The system also produced biochar and bio-oil as byproducts, with a syngas mass fraction efficiency of 73%. This study contributes to the advancement of biomass conversion technology through simulation and demonstrates the potential of EFB as a sustainable and environmentally friendly energy source.en_US
dc.language.isoiden_US
dc.publisherUniversitas Sumatera Utaraen_US
dc.subjectEmpty Fruit Bunchesen_US
dc.subjectPyrolysisen_US
dc.subjectGasificationen_US
dc.subjectSteam Methane Reformeren_US
dc.subjectAspen Plusen_US
dc.subjectSyngasen_US
dc.subjectHydrogenen_US
dc.titleAnalisa Termodinamika Proses Konversi Tandan Kosong Kelapa Sawit (TKKS) Menjadi Syngas Kaya Hidrogen Melalui Sistem Pirolisis yang Terkoneksi Gasifikasi Menggunakan Simulasi Aspen Plusen_US
dc.title.alternativeThermodynamic Analysis of The Conversion Process of Palm Empty Fruit Bunches (EFB) Into Hydrogen Rich Syngas Through a Pyrolysis System Connected to Gasification Using Aspen Plus Simulationen_US
dc.typeThesisen_US
dc.identifier.nimNIM200401091
dc.identifier.nidnNIDN0018077507
dc.identifier.kodeprodiKODEPRODI21201#Teknik Mesin
dc.description.pages73 Pagesen_US
dc.description.typeSkripsi Sarjanaen_US
dc.subject.sdgsSDGs 7. Affordable And Clean Energyen_US


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