首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Bio-utilization of cheese manufacturing wastes (cheese whey powder) for bioethanol and specific product (galactonic acid) production via a two-step bioprocess
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Bio-utilization of cheese manufacturing wastes (cheese whey powder) for bioethanol and specific product (galactonic acid) production via a two-step bioprocess

机译:生物利用奶酪制造废物(奶酪乳清粉)用于生物乙醇和特异性产品(半乳糖酸)通过两步生物过程生产

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摘要

Cheese whey, produced from coagulation of milk during cheese manufacture, is a major environmental pollutant. The most abundant component in cheese whey is lactose, which is a potential resource for various value-added chemicals. Here, a two-step bioprocess using Saccharomyces cerevisiae and Gluconobacter oxydans to bioconvert cheese whey into ethanol and galactonic acid was first proposed. First, the lactose in cheese whey powder was pretreated with beta-galactosidase to obtain glucose and galactose. Subsequently, the glucose was selectively fermented to ethanol by S. cerevisiae to enable G. oxydans-mediated biooxidation of galactose to galactonic acid. Finally, approximately 110 g ethanol, 320 g galactonate, and 150 g mixed protein (residual cheese whey protein and cell protein) was produced from 1 kg CWP. These results are suggestive of alternative methods for management of cheese whey, which may reduce its impact on the environment and result in production of value-added biochemicals.
机译:奶酪乳清,奶酪制造过程中挤奶生产,是一种主要的环保污染物。奶酪乳清中最丰富的组分是乳糖,这是各种增值化学品的潜在资源。在这里,首先提出使用使用酿酒酵母和氧化酸盐的两步生物处理和奥昔氨酸乳清乳清乳清乳清。首先,用β-半乳糖苷酶预处理乳酪乳清粉的乳糖,得到葡萄糖和半乳糖。随后,通过S.Cerevisiae选择性地将葡萄糖发酵给乙醇,以使G.氧氧氧化物介导半乳糖的生物氧化至苯乙烯酸。最后,从1kg CWP制备了大约110g乙醇,320g丙酸酯和150g混合蛋白(残留的奶酪乳清蛋白和细胞蛋白)。这些结果暗示了乳酪乳清的替代方法,这可能会降低其对环境的影响,导致生产增值生化。

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