Adaptation of Scheffersomyces Stipitis Cells as a Strategy to the Improvement of Ethanol Production from Sugarcane Bagasse Hemicellulosic Hydrolysate

被引:13
|
作者
Silva, Debora D. V.
Arruda, Priscila V.
Dussan, Kelly J.
Felipe, Maria G. A.
机构
[1] Department of Biotechnology, Engineering College of Lorena, University of São Paulo, Lorena/SP, Estrada Municipal do Campinho - s/n
来源
IBIC2014: 4TH INTERNATIONAL CONFERENCE ON INDUSTRIAL BIOTECHNOLOGY | 2014年 / 38卷
关键词
XYLOSE-FERMENTING YEAST; SACCHAROMYCES-CEREVISIAE; PICHIA-STIPITIS; FERMENTATION; GLYCEROL; XYLITOL; STRAINS; ACID;
D O I
10.3303/CET1438072
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Sugarcane bagasse, a co-product from sugar mills in Brazil, is a biomass constituted by cellulose and hemicellulose, rich in carbohydrates like pentoses (xylose and arabinose) and hexose (glucose, manose and galactose). Acid hydrolysis with diluted H2SO4 has been used to the release of sugars, resulting also in the generation of by-products such as acetic acid, furfural, hydroxymethylfurfural, phenols that are potential fermentation inhibitors and affect the growth rate of Scheffersomyces stipitis. The inhibition may occur by the action of multiple factors, such as interference in enzymatic activities, since these compounds can act synergistically or alone. Detoxification strategies have been evaluated to remove these inhibitory compounds, but they usually result in sugar and hydrolysate volume loss besides adding costs to the process. Therefore, the adaptation techniques of microorganisms could be used as a strategy to increase the fermentability of hydrolysates. In this context, the current study aims to evaluate the adaptation of Scheffersomyces stipitis cells in different ratios (25 %, 50 %, 75 % and 100 %) of non-detoxified sugarcane bagasse hemicellulosic hydrolysate and subsequently to use this adapted cells in detoxified hydrolysate for ethanol production. Inoculum adaptation was accomplished by sequential transfer of culture samples to adaptation media containing concentrations of non-detoxified hydrolysate from 25 to 100 % (25, 50, 75 and 100 %). The adapted and non-adapted cells were cultured in hydrolysate detoxified by flocculation with vegetal polymer and supplemented at 30 degrees C, 200 rpm for 72h in a 125 mL Erlenmeyer flasks containing 50 mL medium. The cell adaptation technique improved the bioconversion of xylose to ethanol. During the fermentation of detoxified hydrolysate using adapted cells with 50% of non-detoxified hydrolysate it can be observed a xylose consumption (98 %) and ethanol production (14.97 g L-1) with values of yield (Y-P/S), productivity (Q(P)) and conversion efficiency of 0.33 g g(-1), 0.21 g L-1 h(-1) and 64.38 %, respectively. These values of Y-P/S and Q(P) were about 22 and 49% higher when compared with not-adapted cells. The adapted S. stipitis cells in 50 % of non-detoxified hydrolysate was able to ferment the detoxified sugarcane bagasse hemicellulosic hydrolysate improving ethanol production and presenting a good strategy to overcome the problems caused by the presence of toxic compounds in the hydrolysate.
引用
收藏
页码:427 / 432
页数:6
相关论文
共 50 条
  • [21] Evaluation of ethanol production by a new isolate of yeast during fermentation in synthetic medium and sugarcane bagasse hemicellulosic hydrolysate
    Hande, Aparna
    Mahajan, Siddharth
    Prabhune, Asmita
    ANNALS OF MICROBIOLOGY, 2013, 63 (01) : 63 - 70
  • [22] Ethanol production from selected lignocellulosic hydrolysates by genome shuffled strains of Scheffersomyces stipitis
    Bajwa, Paramjit K.
    Phaenark, Chetsada
    Grant, Nicola
    Zhang, Xiao
    Paice, Michael
    Martin, Vincent J. J.
    Trevors, Jack T.
    Lee, Hung
    BIORESOURCE TECHNOLOGY, 2011, 102 (21) : 9965 - 9969
  • [23] Ethanol production from N-acetyl-D-glucosamine by Scheffersomyces stipitis strains
    Inokuma, Kentaro
    Hasunuma, Tomohisa
    Kondo, Akihiko
    AMB EXPRESS, 2016, 6
  • [24] Repeated batches as a feasible industrial process for hemicellulosic ethanol production from sugarcane bagasse by using immobilized yeast cells
    Antunes, F. A. F.
    Santos, J. C.
    Chandel, A. K.
    Carrier, D. J.
    Peres, G. F. D.
    Milessi, T. S. S.
    da Silva, S. S.
    CELLULOSE, 2019, 26 (06) : 3787 - 3800
  • [25] Sugarcane Syrup Improves Xylitol Bioproduction from Sugarcane Bagasse and Straw Hemicellulosic Hydrolysate
    Andrés Felipe Hernández-Pérez
    Alejandra Camila Chaves-Villamil
    Priscila Vaz de Arruda
    Júlio César dos Santos
    Maria das Graças de Almeida Felipe
    Waste and Biomass Valorization, 2020, 11 : 4215 - 4224
  • [26] The Influence of Initial Xylose Concentration, Agitation, and Aeration on Ethanol Production by Pichia stipitis from Rice Straw Hemicellulosic Hydrolysate
    Silva, Joao Paulo A.
    Mussatto, Solange Ines
    Roberto, Ines C.
    APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2010, 162 (05) : 1306 - 1315
  • [27] Microbial oil production in sugarcane bagasse hemicellulosic hydrolysate without nutrient supplementation by a Rhodosporidium toruloides adapted strain
    Bonturi, Nemailla
    Crucello, Aline
    Carvalho Viana, Americo Jose
    Miranda, Everson Alves
    PROCESS BIOCHEMISTRY, 2017, 57 : 16 - 25
  • [28] Improvement of ethanol and biogas production from sugarcane bagasse using sodium alkaline pretreatments
    Nosratpour, Mohammad Javad
    Karimi, Keikhosro
    Sadeghi, Morteza
    JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2018, 226 : 329 - 339
  • [29] Evaluation of novel xylose-fermenting yeast strains from Brazilian forests for hemicellulosic ethanol production from sugarcane bagasse
    Martiniano, Sabrina E.
    Chandel, Anuj K.
    Soares, Luma C. S. R.
    Pagnocca, Fernando C.
    da Silva, Silvio S.
    3 BIOTECH, 2013, 3 (05) : 345 - 352
  • [30] Enhancing ethanol production from cellulosic sugars using Scheffersomyces (Pichia) stipitis
    Okonkwo, C. C.
    Azam, M. M.
    Ezeji, T. C.
    Qureshi, N.
    BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2016, 39 (07) : 1023 - 1032