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Inhibition of Microbial Xylitol Production by Acetic Acid and Its Relation with Fermentative Parameters

机译:乙酸对微生物木糖醇产生的抑制作用及其与发酵参数的关系

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Precipitated sugarcane bagasse hemicellulosic hydrolysate containing acetic acid was fermented by Candida guilliermondii FTI 20037 under different operational conditions (pH 4.0 and 7.0, three aeration rates). At pH 7.0 and k_L a of 10 (0.75 vvm) and 22.5/h (3.0 vvm) the acetic acid had not been consumed until the end of the fermentations, whereas at the same pH and k_L a of 35/h (4.5 vvm) the acid was rapidly consumed and acetic acid inhibition was not important. On the other hand, fermentations at an initial pH of 4.0 and k_L a of 22.5 and 35/h required less time for the acid uptake than fermentations at k_L a of 10/h. The acetic acid assimilation by the yeast indicates the ability of this strain to ferment in partially detoxified medium, making possible the utilization of the sugarcane bagasse hydrolysate in this bioprocess. The effects on xylitol yield and production are reported.
机译:在不同的操作条件(pH 4.0和7.0,三种曝气速率)下,使用Candida guilliermondii FTI 20037发酵含乙酸的甘蔗渣半纤维素水解产物。在pH 7.0和k_L a为10(0.75 vvm)和22.5 / h(3.0 vvm)时,乙酸直到发酵结束才消耗完,而在相同的pH和k_L a为35 / h(4.5 vvm)的情况下酸被迅速消耗掉,而乙酸的抑制作用并不重要。另一方面,在初始pH为4.0且k_L a为22.5和35 / h的条件下发酵所需的酸吸收时间少于在k_L a为10 / h的条件下发酵所需的时间。酵母对乙酸的同化作用表明该菌株在部分解毒的培养基中发酵的能力,这使得在此生物过程中利用甘蔗渣水解物成为可能。报道了对木糖醇产量和产量的影响。

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