Effect of alkaline treatments at various temperatures on cellulase and biomass production using submerged sugarcane bagasse fermentation with Trichoderma reesei QM 9414

被引:46
作者
Aiello, C
Ferrer, A
Ledesma, A
机构
[1] UNIV ZULIA,FAC CIENCIAS EXPT,DEPT QUIM,LAB ALIMENTOS,MARACAIBO 4011,ESTADO ZULIA,VENEZUELA
[2] UNIV ZULIA,FAC INGN,DEPT QUIM,MARACAIBO 4011,ESTADO ZULIA,VENEZUELA
关键词
cellulase; biomass; sugarcane bagasse; T-reesei; fermentation;
D O I
10.1016/0960-8524(96)00012-0
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Trichoderma reesei QM 9414 was cultured to produce cellulase and biomass using as substrates untreated bagasse (non-alkali-treated bagasse washed with distilled water), and bagasse alkali-treated at room temperature and at 100 degrees C, washed with water at pH 2. Avicel (microcrystalline cellulose) was used as a control substrate. When untreated bagasse and bagasse alkali-treated at room temperature were used, appreciable cellulase activity was found (0.085 and 0.090 IU/ml, respectively), but activity was lower than when Avicel was used (0.163 IU/ml). Enzyme yields were 16, 19 and 22 IU/g cellulose consumed, respectively. Cellulase activity was not detected when bagasse alkali-treated at 100 degrees C was used. The biomass yield was about 30% lower when bagasse was used as a substrate than when Avicel was used. The yield was higher wizen bagasse was alkali-treated than when untreated bagasse was used although the difference was small. The biomass yield was 0.78 g biomass per g cellulose consumed for alkali-treated bagasse at room temperature versus 0.50 g/g for bagasse alkali-treated at 100 degrees C, 0.57 g/g for untreated bagasse and 0.67 g/g for Avicel. It was concluded that untreated bagasse is as good a substrate for cellulase and biomass production as bagasse alkali-treated at room temperature. Copyright (C) 1996 Elsevier Science Ltd.
引用
收藏
页码:13 / 18
页数:6
相关论文
共 41 条
[31]  
MILFORD R, 1966, P 11 INT GRASSL C BR, P814
[32]   USE OF DINITROSALICYLIC ACID REAGENT FOR DETERMINATION OF REDUCING SUGAR [J].
MILLER, GL .
ANALYTICAL CHEMISTRY, 1959, 31 (03) :426-428
[33]  
Molina O E, 1983, Acta Cient Venez, V34, P59
[34]  
PATHAK AN, 1973, PROCESS BIOCHEM, V8, P35
[35]  
PEITERSEN N, 1975, BIOTECHNOL BIOENGNG, V3, P139
[36]  
ROLZ C, 1987, PROCESS BIOCHEM, V22, P17
[37]  
STUART R, 1988, REV CUBANA CIENC AGR, V22, P55
[38]  
Sutcliffe R, 1986, BIOTECHNOL BIOENG S, V17, P749
[39]   ENHANCED PRODUCTION OF CELLULASE, HEMICELLULASE, AND BETA-GLUCOSIDASE BY TRICHODERMA-REESEI (RUT C-30) [J].
TANGNU, SK ;
BLANCH, HW ;
WILKE, CR .
BIOTECHNOLOGY AND BIOENGINEERING, 1981, 23 (08) :1837-1849
[40]  
VANSOEST PJ, 1963, J ASSOC OFF AGR CHEM, V46, P829