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Biofuels, Bioproducts and Biorefining(2)
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Balance and saving of GHG emissions in thermochemical biorefineries
ArticleAbstract: In this study, a simplified methodology for the calculation of the balance of greenhouse gas (GHG) ePalabras claves:Balance of GHG emissions, Bio-CCS, Multiproduction, Saving of GHG emissions, Thermochemical biorefineryAutores:Aracil C., Ollero P., Pedro Haro, Vidal-Barrero F.Fuentes:scopusRewarding of extra-avoided GHG emissions in thermochemical biorefineries incorporating Bio-CCS
ArticleAbstract: The incorporation of Bio-CCS, which involves an increase in investment and operating costs, would noPalabras claves:Bio-CCS, CO allowances 2, European Emissions Trading Scheme, Thermochemical biorefineryAutores:Aracil C., Ollero P., Pedro Haro, Vidal-Barrero F.Fuentes:scopusPotential routes for thermochemical biorefineries
ArticleAbstract: This critical review focuses on potential routes for the multi-production of chemicals and fuels inPalabras claves:Acetic anhydride, Butanol, DME, ethanol, methanol, Thermochemical biorefineryAutores:Ollero P., Pedro Haro, Vidal-Barrero F., Villanueva Perales A.L.Fuentes:scopusProving the climate benefit in the production of biofuels from municipal solid waste refuse in Europe
ArticleAbstract: The non-recyclable fraction of municipal solid waste (MSW refuse) represents over half of the totalPalabras claves:bioenergy, Climate Change mitigation, Dynamic LCA, Emission reduction, Municipal solid waste (MSW)Autores:Aracil C., Giuntoli J., Ollero P., Pedro HaroFuentes:scopusTechnoeconomic assessment of an innovative thermochemical route to produce ethanol from lignocellulosic biomass
Conference ObjectAbstract: This paper presents a techno-economic assessment of a BTL plant that processes 2140 dry tonne/day ofPalabras claves:Autores:Antonio Redondo J., Caraballo J., Ollero P., Pedro Haro, Reyes C., Villanueva A.Fuentes:scopusTechnoeconomic assessment of lignocellulosic ethanol production via DME (dimethyl ether) hydrocarbonylation
ArticleAbstract: In this study, a new thermochemical route to produce lignocellulosic ethanol based on DME (dimethylPalabras claves:2nd generation biofuels, BIOMASS, ECONOMICS, ethanol, Indirect routes, ThermochemicalAutores:Ollero P., Pedro Haro, Reyes Valle C., Villanueva Perales A.L.Fuentes:scopusTechnoeconomic assessment of potential processes for bio-ethylene production
ArticleAbstract: The use of biomass in the production of plastics can contribute to the depletion of greenhouse gas (Palabras claves:1st generation bioethanol, 2nd generation bioethanol, BIOMASS, Ethylene, Technoeconomic assessment, Thermochemical processingAutores:Ollero P., Pedro Haro, Trippe F.Fuentes:scopusThermochemical biorefineries with multiproduction using a platform chemical
ArticleAbstract: Multiproduction is a promising option for thermochemical biorefineries in order to reduce the risk oPalabras claves:Platform chemical, Process design, Sustainability, Thermochemical biorefineryAutores:Arjona R., Ollero P., Pedro Haro, Villanueva Perales A.L.Fuentes:scopusThermochemical biorefinery based on dimethyl ether as intermediate: Technoeconomic assessment
ArticleAbstract: Thermochemical biorefinery based on dimethyl ether (DME) as an intermediate is studied. DME is convePalabras claves:BIOMASS, DME, ethanol, Methyl acetate, Technoeconomic assessment, Thermochemical biorefineryAutores:Gomez-Barea A., Ollero P., Pedro Haro, Villanueva Perales A.L.Fuentes:scopus