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Optimization of fermentation conditions for high L-lactic acid production from cellobiose by entercoccus mundtii QU 25: Impact of pH control and temperature on cell growth and changes in metabolites

机译:通过Entcoccus MundTii Qu 25:PH控制和温度对细胞生长的影响和代谢物的影响,优化来自纤维生物糖的发酵条件

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Optimization of L -(+)-lactic acid production from cellobiose, one of the main cellulase inhibitors during saccharifaying process, was studied. Fermentation runs pH-controlled at 7.0 provided the highest lactic acid produced (18.6 g/L) and maximum lactic acid productivity (2.1 g/L/h) which were increased by 376% and 346%, respectively in comparison to non pH-controlled batches. Moreover, the maximum L-lactic acid yield and optical purity were obtained at pH 7.0 with 0.94 g/g and 100%, respectively. The optimum temperature was found to be 43°C, at which the lactic acid yield and maximum productivity were 1.0 g/g and 3.44 g/L/h, respectively. This study provides an encouraging means for economic production of optically pure L-lactic acid from pre-hydrolyzed cellulosic materials.
机译:研究了L - (+) - 来自纤维素糖的L - (+) - 乳酸产生,糖果酶的一种主要纤维素酶抑制剂在糖果过程中。在7.0时,发酵在7.0时进行pH控制,提供了产生的最高乳酸(18.6g / L)和最大乳酸生产率(2.1g / L / h),分别与非pH控制相比,分别增加376%和346%批次。此外,在pH7.0下,分别以0.94g / g和100%获得最大L-乳酸产率和光学纯度。发现最佳温度为43°C,其中乳酸产量和最大生产率分别为1.0g / g和3.44g / L / h。本研究提供了来自预水解纤维素材料的光学纯L-乳酸的经济生产的令人鼓舞的手段。

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