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Adobe PDF - 2,0 MB - MD5: 61a5a7be222d63b1309752a09e28ab51
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Jul 17, 2025 - Green hydrogen production from waste biomass pyrolysis fractions by auto-thermal reforming in a membrane reactor BIOWASTETOH2
MEGIA, Pedro J.; Rocha, Cláudio; Vizcaíno, Arturo; CARRERO, ALICIA; Calles, Jose A; Madeira, Luis Miguel; Soria, Miguel Angel, 2025, "A thermodynamic comparison between conventional, autothermal, and sorption-enhanced bio-oil steam reforming", https://doi.org/10.21950/7DRNUI, e-cienciaDatos, V1
This study presents a comprehensive thermodynamic analysis comparing three bio-oil steam reforming processes: traditional steam reforming, autothermal reforming, and sorption-enhanced steam reforming. Using Aspen Plus V12.1 software, simulations were performed to evaluate the hydrogen production, energy requirements, and the influence of key proces...
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Jul 16, 2025Universidad Rey Juan Carlos
The project (BiowastetoH2) aims to contribute to the decarbonisation of the European energy system by producing green hydrogen from waste streams. This, the main objective of the project is the production of renewable hydrogen from residual streams from biomass pyrolysis by means of autothermal steam reforming integrated in a membrane reactor. Focu...
Jul 15, 2025 - Universidad de Alcalá
Rahmani, Milad; pourmadadi, mehrab; Abdouss, Majid; Rahdar, Abbas; Diez Pascual, Ana Maria, 2025, "Gelatin/Polyethylene glycol/g-C3N4 hydrogel with olive oil as a sustainable and biocompatible nanovehicle for targeted delivery of 5-fluorouracil", https://doi.org/10.21950/6ODJOP, e-cienciaDatos, V1
In this project, a novel, sustainable and pH-sensitive nanocomposite was designed for the targeted delivery of 5-fluorouracil (5-FU) against breast cancer cells. The nanodelivery system is based on graphitic carbon nitride (g-C3N4) coated with Gelatin (G)/Polyethylene glycol (PEG) biopolymers, and was prepared by W/O/W double emulsion technique usi...
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