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首页> 外文期刊>Scientific reports. >Comparison of high-titer lactic acid fermentation from NaOH- and NH3-H2O2-pretreated corncob by Bacillus coagulans using simultaneous saccharification and fermentation
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Comparison of high-titer lactic acid fermentation from NaOH- and NH3-H2O2-pretreated corncob by Bacillus coagulans using simultaneous saccharification and fermentation

机译:使用同时糖化和发酵的芽孢杆菌凝固素果原从NaoH-和NH3-H2O2 - 预处理玉米芯片的高滴度乳酸发酵的比较

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Lignocellulose is one of the most abundant renewable feedstocks that has attracted considerable attention as a substrate for biofuel and biochemical production. One such biochemical product, lactic acid, is an important fermentation product because of its great potential for the production of biodegradable and biocompatible polylactic acid. High-titer lactic acid production from lignocellulosic materials has been achieved recently; however, it requires biodetoxification or results in large amounts of waste washing water. In this study, we employed two alkaline pretreatment methods and compared their effects on lactic acid fermentation of pretreated corncob by Bacillus coagulans LA204 using fed-batch simultaneous saccharification and fermentation under non-sterile conditions. The lactic acid titer, yield, and productivity from 16% (w/w) NaOH-pretreated and washed corncob were 122.99?g/L, 0.77?g/g corncob, and 1.37?g/L/h, respectively, and from 16% NH3-H2O2-pretreated and washed corncob were 118.60?g/L, 0.74?g/g corncob, and 1.32?g/L/h, respectively. Importantly, the lactic acid titer, yield, and productivity from 18.4% NH3-H2O2-pretreated and unwashed corncob by using fed-batch simultaneous saccharification and fermentation reached 79.47?g/L, 0.43?g/g corncob, and 1.10?g/L/h, respectively, demonstrating that this method is possible for industrial applications and saves washing water.
机译:木质纤维素是最丰富的可再生原料之一,它引起了广泛的关注作为生物燃料和生物化学生产的基材。一种这样的生物化学产品,乳酸是一种重要的发酵产品,因为其生产可生物降解和生物相容性聚乳酸的巨大潜力。最近实现了木质纤维素材料的高滴度乳酸产生;然而,它需要生物渗透氧化或导致大量的废水。在这项研究中,我们使用了两种碱性预处理方法,并在非无菌条件下使用FED分批同时糖化和发酵进行了芽孢杆菌凝磺酸甘油糖蛋白LA204对预处理玉米饼的乳酸发酵的影响。乳酸滴度,产率和生产率从16%(w / w)naoh-preproeted和洗涤的玉米饼为122.99μl,0.77μl,0.77?g / g corncob,以及1.37?g / l / h, 16%NH 3-H 2 O 2 - 预处理和洗涤的玉米芯片分别为118.60Ω·克/升,0.74 ~g / g Corncob,分别为1.32?G / L / H.重要的是,通过使用FED-分批同时糖化和发酵达到79.47μl,0.43Ω·克/克隆(0.43Ω),乳酸滴度,从18.4%NH3-H2O2-预处理和未洗涤的玉米芯片的乳酸滴度,产率和生产率。 L / H分别证明工业应用可以获得这种方法并节省洗涤水。

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