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Lactic acid production using waste generated from sweet potato processing

机译:利用甘薯加工产生的废物生产乳酸

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摘要

Organic waste generated from industrial sweet potato canning is estimated to be 30% of incoming raw material with significant residual carbohydrate content. The purpose of this study was to evaluate the potential of waste generated from sweet potato processing material to support the growth of lactic acid bacteria and the production of lactic acid. The waste was comprised of 16.5% solids consisting of 18.5% ash, 4.4% protein, 20.5% simple sugars and 19% soluble starch. Following a screening of three lactic acid bacteria strains, Lactobacillus rhamnosus was deemed the best candidate for lactic acid production. The potential of various dilutions of the enzyme-hydrolysed waste, with and without pH control, as a fermentation substrate was evaluated. Lactic acid production was highest in hydrolysed waste (without dilution) at pH set point 5.0, yielding 10 g L~(-1) in 72 h. Thus, lactic acid, a valuable organic compound, can be generated from sweet potato waste.
机译:工业红薯罐头产生的有机废物估计占进料的30%,残留碳水化合物含量高。这项研究的目的是评估甘薯加工材料产生的废物支持乳酸菌生长和乳酸生产的潜力。废物由16.5%的固体组成,其中包括18.5%的灰分,4.4%的蛋白质,20.5%的单糖和19%的可溶性淀粉。在筛选了三种乳酸菌菌株之后,鼠李糖乳杆菌被认为是生产乳酸的最佳人选。评估在有和没有pH调节的情况下,各种稀释的酶水解废液作为发酵底物的潜力。在pH设定值5.0时,水解废液(不稀释)中的乳酸产量最高,在72小时内产生10 g L〜(-1)。因此,可以从甘薯废料中产生乳酸,一种有价值的有机化合物。

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