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Fermentative production of lactic acid from biomass: an overview on process developments and future perspectives

机译:利用生物质发酵生产乳酸:工艺发展和未来展望的概述

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The concept of utilizing excess biomass or wastes from agricultural and agro-industrial residues to produce energy, feeds or foods, and other useful products is not necessarily new. Recently, fermentation of biomass has gained considerable attention due to the forthcoming scarcity of fossil fuels and also due to the necessity of increasing world food and feed supplies. A cost-effective viable process for lactic acid production has to be developed for which several attempts have been initiated. Fermentation techniques result in the production of eitherD (-) or L (+) lactic acid, or a racemic mixture of both, depending on the type of organism used. The interest in the fermentative production of lactic acid has increased due to the prospects of environmental friendliness and of using renewable resources instead of petrochemicals. Amylolytic bacteria Lactobacillus amylovorus ATCC 33622 is reported to have the efficiency of full conversion of liquefied cornstarch to lactic acid with a productivity of 20 g l(-1) h(-1). A maximum of 35 g l(-1) h(-1) was reported using a high cell density of L. helveticus (27 g l(-1)) with a complete conversion of 55- to 60-g l(-1) lactose present in whey. Simultaneous saccharification and fermentation is proved to be best in the sense of high substrate concentration in lower reactor volume and low fermentation cost. In this review, a survey has been made to see how effectively the fermentation technology explored and exploited the cheaply available source materials for value addition with special emphasis on lactic acid production.
机译:利用农业和农业工业残余物中的过量生物质或废物来生产能源,饲料或食品以及其他有用产品的概念不一定是新的。近来,由于即将到来的化石燃料的稀缺以及由于世界粮食和饲料供应的增加,生物质的发酵已经引起了广泛的关注。必须开发成本有效的可行的乳酸生产方法,为此已经进行了几次尝试。发酵技术可产生D(-)或L(+)乳酸,或两者的外消旋混合物,具体取决于所用生物的类型。由于对环境友好并且使用可再生资源代替石油化工产品的前景,对乳酸发酵生产的兴趣增加了。据报道,淀粉分解菌淀粉乳杆菌ATCC 33622具有将液化玉米淀粉完全转化为乳酸的效率,生产力为20 g l(-1)h(-1)。使用高细胞密度的瑞士乳杆菌(27 gl(-1))且存在55- 60 gl(-1)乳糖的完全转化,报道了最多35 gl(-1)h(-1)在乳清中。在较高的底物浓度,较低的反应器体积和较低的发酵成本的意义上,同时糖化和发酵被证明是最好的。在这篇评论中,我们进行了一项调查,以了解发酵技术如何有效地探索和利用廉价可获得的原材料来增值,特别是强调乳酸的生产。

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