Effects of Ca(OH)2 treatments (“overliming”) on the composition and toxicity of bagasse hemicellulose hydrolysates
- 5 September 2000
- journal article
- research article
- Published by Wiley in Biotechnology & Bioengineering
- Vol. 69 (5) , 526-536
- https://doi.org/10.1002/1097-0290(20000905)69:5<526::aid-bit7>3.0.co;2-e
Abstract
Hemicellulose syrups from dilute sulfuric acid hydrolysates of hemicellulose contain inhibitors that prevent efficient fermentation by yeast or bacteria. It is well known that the toxicity of these hydrolysate syrups can be ameliorated by optimized “overliming” with Ca(OH)2. We have investigated the optimization of overliming treatments for sugar cane bagasse hydrolysates (primarily pentose sugars) using recombinant Escherichia coli LY01 as the biocatalyst. A comparison of composition before and after optimal overliming revealed a substantial reduction in furfural, hydroxymethylfurfural, and three unidentified high-performance liquid chromatography (HPLC) peaks. Organic acids (acetic, formic, levulinic) were not affected. Similar changes have been reported after overliming of spruce hemicellulose hydrolysates (Larsson et al., 1999). Our studies further demonstrated that the extent of furan reduction correlated with increasing fermentability. However, furan reduction was not the sole cause for reduced toxicity. After optimal overliming, bagasse hydrolysate was rapidly and efficiently fermented (>90% yield) by LY01. During these studies, titration, and conductivity were found to be in excellent agreement as methods to estimate sulfuric acid content. Titration was also found to provide an estimate of total organic acids in hydrolysate, which agreed well with the sum of acetic, levulinic, and formic acids obtained by HPLC. Titration of acids, measurement of pH before and after treatment, and furan analyses are proposed as relatively simple methods to monitor the reproducibility of hydrolysate preparations and the effectiveness of overliming treatments. © 2000 John Wiley & Sons, Inc. Biotechnol Bioeng 69: 526–536, 2000.Keywords
This publication has 32 references indexed in Scilit:
- Detoxification of wood hydrolysates with laccase and peroxidase from the white-rot fungus Trametes versicolorApplied Microbiology and Biotechnology, 1998
- Comparison of aromatic monomers in lignocellulosic biomass prehydrolysatesJournal of Industrial Microbiology & Biotechnology, 1998
- Metabolic engineering of bacteria for ethanol productionBiotechnology & Bioengineering, 1998
- Advanced Bioethanol Production Technologies: A PerspectivePublished by American Chemical Society (ACS) ,1997
- An improvement in Pichia stipitis fermentation of acid-hydrolysed hemicellulose achieved by overliming (calcium hydroxide treatment) and strain adaptationWorld Journal of Microbiology and Biotechnology, 1996
- Ethanol production from hemicellulose hydrolysates of agricultural residues using genetically engineeredEscherichia coli strain KO11Journal of Industrial Microbiology & Biotechnology, 1996
- Process parameters and environmental factors affecting d-xylose fermentation by yeastsEnzyme and Microbial Technology, 1994
- Conversion of hydrolysates of corn cobs and hulls into ethanol by recombinantEscherichia coli B containing integrated genes for ethanol productionBiotechnology Letters, 1992
- The effects of furfural on ethanol production by saccharomyces cereyisiae in batch cultureBiomass and Bioenergy, 1992
- Wood hydrolyzate treatments for improved fermentation of wood sugars to 2,3-butanediolBiomass, 1989