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A review on the current developments in continuous lactic acid fermentations and case studies utilising inexpensive raw materials

机译:回顾连续乳酸发酵的最新发展和使用廉价原料的案例研究

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The numerous applications of lactic acid have made it one of the most important platform chemicals and, for many years, its biotechnological production has been the topic of intensive research. Currently, most of the lactic acid is manufactured in batch mode; however, continuous mode could offer various advantages, especially in terms of productivity. This review provides a summary of the most recent studies on continuous lactic acid production. Potential advantages of continuous over batch mode, the improvements that high cell densities can represent, utilisation of low cost substrates and some economic aspects of continuous mode are discussed. The review is complemented by 3 experimental case studies utilising inexpensive substrates: tapioca starch hydrolysate, molasses combined with rapeseed meal hydrolysate and acid whey. In all cases, continuous cultivation was coupled with cell recycling using hollow-fibre membranes for L- or D-lactic acid production. Lactic acid productivities higher than 5 g l(-1) h(-1) and substrate conversion yields above 80% were achieved for all the cases. Final lactic acid concentrations were 50.3, 59.6 and 45.9 g l(-1) for the tapioca starch hydrolysate, molasses and acid whey respectively. These results support the claim that continuous cultivation using cell recycling is a promising approach for high lactic acid productivities.
机译:乳酸的众多应用使其成为最重要的平台化学品之一,多年来,其生物技术生产一直是深入研究的主题。目前,大多数乳酸是以分批方式生产的。但是,连续模式可以提供各种优势,特别是在生产率方面。这篇综述总结了有关连续乳酸生产的最新研究。讨论了连续模式优于批处理模式的潜在优势,高电池密度可以代表的改进,低成本基板的利用以及连续模式的一些经济方面。通过3个使用廉价底物的实验案例研究对本综述进行了补充:木薯淀粉水解物,糖蜜配菜籽粕水解物和酸乳清。在所有情况下,连续培养与使用中空纤维膜生产L-或D-乳酸的细胞回收相结合。在所有情况下,均可实现高于5 g l(-1)h(-1)的乳酸生产率和80%以上的底物转化率。木薯淀粉水解物,糖蜜和酸乳清的最终乳酸浓度分别为50.3、59.6和45.9 g l(-1)。这些结果支持这样的主张,即利用细胞再循环进行连续培养是提高乳酸生产率的一种有前途的方法。

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