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Alcohols and bioalcohols : characteristics, production, and by Angelo Basile, Francesco Dalena

By Angelo Basile, Francesco Dalena

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Extra info for Alcohols and bioalcohols : characteristics, production, and uses

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Optimization of steam explosion as method for increasing susceptibility of sugarcane bagasse to enzymatic saccharification‖. Biotechnol. Bioeng; 29: 733–741. [45] P. Alvira, E. Tomás-Pejó, M. J. Negro. (2010) ―Pretreatment technologies for an efficient bioethanol production process based on enzymatic hydrolysis: A review‖. , (2008). ―From plant materials to ethanol by means of supercritical fluid technology‖. J. Supercrit. Fluids; 46: 299–321. T. (1998). ―Pretreatment for cellulose hydrolysis by carbon dioxide explosion‖.

Some can also be metabolically engineered for either autofermentative ethanol production or for photoethanol, based on their carbohydrate reserve or photosynthetic efficiency respectively. Since the pyruvate is fermented to several different fermentation end products, as mentioned earlier in this section, there exists competition for ethanol production. Presence of these pathways competing for both pyruvate and reductant (NAD(P)H)), provide ample opportunity to metabolically engineer the cyanobacteria and algae to redirect the availability of both reductant and pyruvate towards ethanol biosynthesis pathway.

Biotechnol. – Part A Enzyme Eng. Biotechnol; 124: 1069–1079. , (1987). ―Optimization of steam explosion as method for increasing susceptibility of sugarcane bagasse to enzymatic saccharification‖. Biotechnol. Bioeng; 29: 733–741. [45] P. Alvira, E. Tomás-Pejó, M. J. Negro. (2010) ―Pretreatment technologies for an efficient bioethanol production process based on enzymatic hydrolysis: A review‖. , (2008). ―From plant materials to ethanol by means of supercritical fluid technology‖. J. Supercrit. Fluids; 46: 299–321.

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