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Yeast screening and cell immobilization on inert supports for ethanol production from cheese whey permeate with high lactose loads

机译:酵母筛查和细胞固定在惰性载体上以高乳糖负荷的干酪乳清渗透液生产乙醇

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摘要

Eight yeast strains of the genera Saccharomyces and Kluyveromyces were screened to ferment high lactose-load cheese whey permeate (CWP) (>130 g/L lactose) without nutrient supplementation. The fermentation conditions (temperature, pH and time) were optimized to maximize the fermentation performance (ethanol titer, ethanol yield and lactose consumption) for the two preselected strains, K. marxianus DSM 5422 and S. cerevisiae Ethanol Red, using a response surface methodology (RSM). Under optimized conditions, K. marxianus DSM 5422 attained ethanol titers of 6% (v/v) in only 44 h. Moreover, the feasibility of immobilizing this strain on four different inorganic supports (plastic, glass and Tygon silicone Raschig rings and alumina beads) was assessed. Glass Raschig rings and alumina beads showed a more stable performance over time, yielding ethanol titers of 60 g/L during 1,000 hours, which remarkably reduces yeast cultivation costs. Results demonstrate the feasibility of using CWP for successful ethanol production in a simple and economical process, which represents an attractive alternative for waste treatment in dairy industries.
机译:筛选了八个酵母属和克鲁维酵母属的菌株,以发酵高乳糖含量的干酪乳清渗透液(CWP)(> 130 g / L乳糖)而不添加营养。优化了发酵条件(温度,pH和时间),以使用响应面方法最大化两个预选菌株马克斯克鲁维酵母DSM 5422和啤酒酵母乙醇红的发酵性能(乙醇滴度,乙醇产量和乳糖消耗) (RSM)。在优化的条件下,K。marxianus DSM 5422在仅44小时内即可达到6%(v / v)的乙醇滴度。此外,评估了将该菌株固定在四种不同的无机载体(塑料,玻璃和Tygon有机硅Raschig环和氧化铝珠)上的可行性。玻璃拉西环和氧化铝珠随着时间的推移表现出更稳定的性能,在1000小时内产生60 g / L的乙醇滴度,从而显着降低了酵母培养成本。结果表明,使用CWP以简单,经济的方法成功生产乙醇的可行性,这代表了乳制品行业废物处理的有吸引力的替代方法。

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