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首页> 外文期刊>Journal of Scientific & Industrial Research >Application Of Box-benhken Experimental Design For Optimization Of Laccase Production By Coriolus Versicolor Mtcc138 In Solid-state Fermentation
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Application Of Box-benhken Experimental Design For Optimization Of Laccase Production By Coriolus Versicolor Mtcc138 In Solid-state Fermentation

机译:Box-benhken实验设计在固态发酵中优化云芝Mtcc138产漆酶的应用

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摘要

Ligninocellulosic waste and cyanobacterial bloom was used for production of laccase by Coriolus versicolor MTCC138 using Box- Benhken design method. Empirical model developed through RSM (Response surface methodology) in terms of effective operational factors of medium pH, temperature, moisture content, inducers, groundnut shell and cyanobacterial biomass was found adequate to describe production of laccase by C. versicolor MTCC 138 in solid state fermentation. Correlation coefficient (0.9758) for laccase production indicated a good agreement between experimental and predicted values. Optimal physico-chemical factors for laccase production were found to be: cyanobacterial biomass, 2.55 g; pH, 4.94; temperature, 29.96 C; moisture content, 70.96 % and CuSO_4, 1.58 mM. Due to high potentiality of laccase, C. versicolor can be exploited industrially for developing a novel technology using inexpensive renewable resources. Box-Benhken approach appeared potential in process application.
机译:使用Box-Benhken设计方法,使用云芝MTCC138将木质纤维素废料和蓝细菌花粉用于生产漆酶。发现通过RSM(响应表面方法)在培养基pH值,温度,水分含量,诱导剂,花生壳和蓝细菌生物质的有效运行因子方面建立的经验模型足以描述固态发酵中杂色梭菌MTCC 138产生漆酶。 。漆酶生产的相关系数(0.9758)表明实验值和预测值之间有很好的一致性。发现产生漆酶的最佳物理化学因素是:蓝细菌生物量2.55 g; pH值4.94;温度29.96℃;水分含量为70.96%,CuSO_4为1.58 mM。由于漆酶的巨大潜力,杂色衣藻可以在工业上利用廉价的可再生资源开发新技术。 Box-Benhken方法在过程应用中似乎具有潜力。

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