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Optimization Lactic Acid Production from Molasses Renewable Raw Material through Response Surface Methodology with Lactobacillus Casei M-15

机译:优化乳酸从糖蜜通过乳酸乳酪杆菌M-15通过响应表面方法产生乳酸生产

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Lactic acid is one of the functional and valuable compounds utilized in food, pharmaceutical and chemical industries while Poly lactic acid (PLA) is a biodegradable polymer that has a variety of applications. In recent years, microbial conversion of renewable raw materials has become an important objective in industrial biotechnology. Sugarcane molasses can be considered as potential renewable raw materials in PLA production. The objective of this study is to optimized fermentation medium and conditions to obtain maximum lactic acid production and Colony Forming Unit (log CFU/mL) through response surface methodology (RSM). The maximum lactic acid production (38.33%) and log CFU/mL (8.30) by Lactobacillus casei M-15 was under 3.82% of molasses and 8.02% of inoculum level within 24 hr at 37 °C respectively. This process will be advantageous for increasing yields of lactic acid and enhancing productivity by optimization technique. Moreover, it can reduce waste disposal and pollution and can selectively produce by sustainable agriculture such as agriculture material. In addition, the high-performance of lactic acid-producing microorganisms, qualified renewable raw materials and effective fermentation processes will be benefit for bioplastic technologies.
机译:乳酸是在食品,制药和化学工业利用,同时聚乳酸(PLA)是具有多种应用的可生物降解的聚合物的功能和有价值的化合物中的一个。近年来,可再生原料的微生物转化成为工业生物技术的一个重要目标。甘蔗糖蜜可视为解放军的生产潜力的可再生原料。本研究的目的是优化的发酵培养基和条件以获得最大的乳酸生产和菌落形成单位通过响应面分析法(RSM)(对数CFU / mL)中。最大乳酸产量(38.33%)和干酪乳杆菌M-15登录CFU /毫升(8.30)分别为下糖蜜3.82%和24小时内接种量8.02%,在37℃。这个过程将是用于提高乳酸的产率和通过优化技术提高生产率是有利的。此外,它可以减少废物处理和污染,并且可以选择性地通过可持续农业如农业材料产生。此外,生产乳酸的微生物,合格的可再生原料和有效发酵工艺的高性能将成为生物塑料的技术好处。

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