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Evaluation of fermentative potential of <Emphasis Type="Italic">Kluyveromyces marxianus</Emphasis> ATCC 36907 in cellulosic and hemicellulosic sugarcane bagasse hydrolysates on xylitol and ethanol production
Authors:Email author" target="_blank">Débora?Danielle?Virgínio?da?SilvaEmail author  Priscila?Vaz?de?Arruda  Fernando?Miron?Corda?Fernandes?Vicente  Luciane?Sene  Silvio?Silvério?da?Silva  Maria?das?Gra?as de Almeida Felipe
Institution:1.Department of Biotechnology, Engineering School of Lorena,University of Sao Paulo,Lorena,Brazil;2.Center of Medical and Pharmaceutical Sciences,Western Paraná State University,Cascavel,Brazil
Abstract:This paper evaluates the fermentative potential of Kluyveromyces marxianus grown in sugarcane bagasse cellulosic and hemicellulosic hydrolysates obtained by acid hydrolysis. Ethanol was obtained from a single glucose fermentation product, whereas xylose assimilation resulted in xylitol as the main product and ethanol as a by-product derived from the metabolism of this pentose. Fermentation performed in a simulated hydrolysate medium with a glucose concentration similar to that of the hydrolysate resulted in ethanol productivity (Qp?=?0.86 g L?1 h?1) that was tenfold higher than the one observed in the cellulosic hydrolysate. However, the use of hemicellulosic hydrolysate favored xylose assimilation in comparison with simulated medium with xylose and glucose concentrations similar to those found in this hydrolysate, without toxic compounds such as acetic acid and phenols. Under this condition, xylitol yield was 53.8 % higher in relation to simulated medium. Thus, the total removal of toxic compounds from the hydrolysate is not necessary to obtain bioproducts from lignocellulosic hydrolysates.
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