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Statistical optimization of process conditions for cellulase production by liquid state bioconversion of domestic wastewater sludge

机译:对生活污水污泥进行液态生物转化生产纤维素酶工艺条件的统计优化

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摘要

A two-level fractional factorial design (FFD) was used to determine the effects of six factors, i.e. substrate (domestic wastewater sludge - DWS) and co-substrate concentration (wheat flour - WF), temperature, initial pH, inoculum size and agitation rate on the production of cellulase enzyme by Trichoderma harzianum in liquid state bioconversion. On statistical analysis of the results from the experimental studies, optimum process conditions were found to be temperature 32.5 degrees C, substrate concentration (DWS) 0.75% (w/w), co-substrate (WF) concentration 2% (w/w), initial pH 5, inoculum size 2% (v/w) and agitation 175 rpm. Analysis of variance (ANOVA) showed a high coefficient of determination (R-2) of 0.975. Cellulase activity reached 10.2 FPU/ml at day 3 during the fermentation process which indicated about 1.5-fold increase in production compared to the cellulase activity obtained from the results of design of experiment (6.9 FPU/ml). Biodegradation of DWS was also evaluated to verify the efficiency of the bioconversion process as a waste management method. (C) 2007 Elsevier Ltd. All rights reserved.
机译:使用二级分级因子设计(FFD)来确定六个因素的影响,即底物(家庭废水污泥-DWS)和共底物浓度(小麦粉-WF),温度,初始pH,接种量和搅拌哈茨木霉在液态生物转化中纤维素酶产生的速率根据对实验研究结果的统计分析,发现最佳工艺条件为温度32.5摄氏度,底物浓度(DWS)0.75%(w / w),共底物(WF)浓度2%(w / w) ,初始pH 5,接种量2%(v / w),搅拌175 rpm。方差分析(ANOVA)显示0.975的高确定系数(R-2)。在发酵过程的第3天,纤维素酶活性达到10.2 FPU / ml,这表明与从实验设计结果获得的纤维素酶活性(6.9 FPU / ml)相比,产量增加了约1.5倍。还评估了DWS的生物降解,以验证生物转化过程作为废物管理方法的效率。 (C)2007 Elsevier Ltd.保留所有权利。

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