Biotechnology Progress · 2015 · 17 citations · 43 references
EngineeringBioenergyLignocellulosic Waste BiomassChemical EngineeringBiomass ConversionIonic LiquidsBiochemical EngineeringBiomassHealth SciencesBiomass UtilizationFermentable SugarsIonic Liquid 1‐Butyl‐3‐methylimidazoliumBiomanufacturingBiorefinery ProductBiomass ResourceSoybean HullBiotechnologySoybean Hull BiomassFood EngineeringBiomass Characterization
Optimized hydrolysis of lignocellulosic waste biomass is essential to achieve the liberation of sugars to be used in fermentation process. Ionic liquids (ILs), a new class of solvents, have been tested in the pretreatment of cellulosic materials to improve the subsequent enzymatic hydrolysis of the biomass. Optimized application of ILs on biomass is important to advance the use of this technology. In this research, we investigated the effects of using 1-butyl-3-methylimidazolium acetate ([bmim][Ac]) on the decomposition of soybean hull, an abundant cellulosic industrial waste. Reaction aspects of temperature, incubation time, IL concentration, and solid load were optimized before carrying out the enzymatic hydrolysis of this residue to liberate fermentable glucose. Optimal conditions were found to be 75°C, 165 min incubation time, 57% (mass fraction) of [bmim][Ac], and 12.5% solid loading. Pretreated soybean hull lost its crystallinity, which eased enzymatic hydrolysis, confirmed by Fourier Transform Infrared analysis. The enzymatic hydrolysis of the biomass using an enzyme complex from Penicillium echinulatum liberated 92% of glucose from the cellulose matrix. The hydrolysate was free of any toxic compounds, such as hydroxymethylfurfural and furfural. The obtained hydrolysate was tested for fermentation using Candida shehatae HM 52.2, which was able to convert glucose to ethanol at yields of 0.31. These results suggest the possible use of ILs for the pretreatment of some lignocellulosic waste materials, avoiding the formation of toxic compounds, to be used in second-generation ethanol production and other fermentation processes. © 2015 American Institute of Chemical Engineers Biotechnol. Prog., 32:312-320, 2016.
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Dissolution of Cellose with Ionic Liquids
Richard P. Swatloski, Scott K. Spear, John D. Holbrey et al. · Journal of the American Chemical Society · 2002 · 4.6K citations
Materials Science, Chemical Engineering, Initial Results +13
Dissolution of cellulose with ionic liquids and its application: a mini-review
Shengdong Zhu, Yuanxin Wu, Qiming Chen et al. · Green Chemistry · 2006 · 1.2K citations