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| Título : | Study of process configuration and catalyst concentration in integrated alkaline extrusion of barley straw for bioethanol pro |
| Autor : | Duque, Aleta Manzanares, Paloma Ballesteros, Ignacio Negro, María José Oliva, José Miguel Sáez, Felicia Ballesteros, Mercedes |
| Palabras clave : | Lignocellulose Extrusion Alkaline treatment Enzymatic hydrolysis Ethanol production |
| Fecha de publicación : | 15-oct-2014 |
| Editorial : | Fuel (Elsevier) |
| Citación : | A. Duque, P. Manzanares, I. Ballesteros, M.J. Negro, J.M. Oliva, F. Saez, M. Ballesteros, Study of process configuration and catalyst concentration in integrated alkaline extrusion of barley straw for bioethanol production, Fuel, Volume 134, 2014, Pages 448-454, ISSN 0016-2361, https://doi.org/10.1016/j.fuel.2014.05.084. |
| Resumen : | Barley straw was pretreated with alkali (NaOH) at increasing NaOH/DM ratios (6–10%) and neutralized in a twin-screw extruder, obtaining a substrate ready for the incubation with enzymes. Two process configurations were evaluated: with and without filtration inside the extruder. The enzymatic digestibility of the pretreated substrates was evaluated and filtration was proved to be beneficial for the enzymatic hydrolysis. A maximum enzymatic hydrolysis yield of 71% was attained for the barley straw pretreated with 8g NaOH/100g dry barley straw and filtration inside the extruder. The ethanol production was evaluated on this substrate for increasing solid loadings, 2.5, 15 and 20% (w/v). A global process yield based on ethanol production, including hydrolysis and fermentation, was calculated over the pretreated material in experiments at 20% (w/v) solids, reaching 53% of the maximum theoretical. The concentration of ethanol reached up to 29g/l in these conditions. |
| URI : | https://hdl.handle.net/20.500.14855/5593 |
| ISSN : | 0016-2361 |
| Aparece en las colecciones: | Artículos de Energía
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