Kinetics of biomass and polyhydroxyalkanoates synthesis using sugar industry waste as carbon substrate by Alcaligenes sp. NCIM 5085

IF 0.6 Q4 ENVIRONMENTAL SCIENCES
R. Kanzariya, A. Gautam, S. Parikh, S. Gautam
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引用次数: 0

Abstract

Aim: o optimize the operating parameters and further determine the kinetics of biomass and polyhydroxyalkanoate synthesis using sugar industry waste as a carbon substrate by Alcaligenes sp. NCIM 5085. Methodology: Molasses, clarified and pretreated with sulphuric acid, was taken in a batch reactor for fermentation to generate biomass and further for polyhydroxyalkanoate synthesis where Alcaligenes sp. NCIM 5085 was used as a culture. A number of parameters were observed during fermentation experiments to optimize the biomass and PHA namely: initial substrate concentration, incubation period, C/N ratio, inoculum concentration and pH. Fermented solution was filtered to account the yield of biomass from the solution at each time interval decided for each experiment and polyhydroxyalkanoate was extracted from the biomass by chloroform and methanol extraction. Growth kinetics of biomass was modeled by Monod and Logistic models whereas Luedeking-Piret model was used for polyhydroxyalkanoate production rates. Results: From the fermentation experiments, it was found that for 40 g l-1 of molasses at neutral pH, 4.48 g l-1 of biomass was synthesized when fermentation was observed for 48 hr. One percent of cell dry weight of biomass was extracted as polyhydroxyalkanoate. Logistic model for growth kinetics and Luedeking-Piret model for polyhydroxyalkanoate production rate were found in agreement with the experiments where regression coefficient was maximum with minimum error. Interpretation: The PHA growth kinetics and PHA production kinetics done in this work can be utilized to design a bioreactor for PHA production at industrial scale. Key words: Alcaligenes sp., Biomass, Cane molasses, Growth kinetics, Polyhydroxyalkanoates
Alcaligenes sp.NIM 5085以食糖工业废料为碳底物合成生物质和聚羟基烷酸酯的动力学
目的:优化操作参数,进一步确定Alcaligenes sp.NIM 5085以糖工业废料为碳底物合成生物质和聚羟基烷酸酯的动力学。方法:将澄清并用硫酸预处理的糖蜜放入分批反应器中进行发酵以产生生物质,并进一步用于合成聚羟基烷酸酯,其中使用Alcaligenes sp.NIM 5085作为培养物。在发酵实验中观察了许多优化生物质和PHA的参数,即:初始底物浓度、培养期、C/N比、接种物浓度和pH。过滤发酵溶液以计算在每个实验决定的每个时间间隔从溶液中获得的生物质的产量,并通过氯仿和甲醇提取从生物质中提取聚羟基烷酸酯。生物质的生长动力学由Monod和Logistic模型建模,而Luedeking-Piret模型用于聚羟基烷酸酯的生产速率。结果:从发酵实验中发现,在中性pH条件下,当发酵48小时时,对于40g l-1的糖蜜,可合成4.48g l-1生物质。1%的生物质以聚羟基烷酸酯的形式提取。生长动力学的Logistic模型和聚羟基烷酸酯产率的Luedeking-Piret模型与实验结果一致,回归系数最大,误差最小。解释:本工作中所做的PHA生长动力学和PHA生产动力学可用于设计用于工业规模PHA生产的生物反应器。关键词:Alcaligenes sp.,生物质,甘蔗糖蜜,生长动力学,聚羟基烷酸酯
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来源期刊
Journal of environmental biology
Journal of environmental biology ENVIRONMENTAL SCIENCES-
CiteScore
1.70
自引率
0.00%
发文量
92
审稿时长
3 months
期刊介绍: Information not localized
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