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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Growth of Pichia guilliermondii A9, an osmotolerant yeast, in waste brine generated from kimchi production
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Growth of Pichia guilliermondii A9, an osmotolerant yeast, in waste brine generated from kimchi production

机译:泡菜生产中产生的废盐水中渗透渗酵母Guilloermondii A9的生长

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摘要

The possibility of culturing an osmotolerant yeast using waste brine from a kimchi factory as a substrate for the production of single cell protein was investigated. Pichia guilliermondii A9 was selected from 70 isolates of yeast demonstrating substantial growth in the waste brine. The growth of P. guilliermondii A9 in waste brine was not inhibited by NaCl concentrations of up to 10% (w/v). However, it was reduced drastically at concentrations greater than 12% (w/v). Approximately 90% of BOD was removed from the waste brine by culturing of P. guilliermondii A9 for 24 h. The maximum cell yield was 0.69 g of dry cells per liter, containing 40% of protein. When the waste brine was enriched with cabbage juice from waste cabbage, the final cell mass increased proportionally with the amount of added organic material. Salt stressed cells of P. guilliermondii A9 grown in waste brine are shown in scanning electron micrographs. In conclusion, the large amounts of waste brine generated from kimchi production could be used directly for the culture of the osmotolerant yeast P. guilliermondii A9.
机译:研究了使用泡菜工厂的废盐水培养渗透渗酵母的可能性,作为生产单细胞蛋白的基质。圭亚那毕赤酵母(Pichia guilliermondii)A9选自70株酵母菌,表明在废盐水中大量生长。高达10%(w / v)的NaCl浓度不会抑制废盐水中的guilliermondii A9的生长。但是,当浓度大于12%(w / v)时,它会急剧减少。通过培养古希腊毕赤酵母A9 24小时,从废盐水中去除了约90%的BOD。最大细胞产量为每升0.69 g干细胞,其中包含40%的蛋白质。当废盐水中富含废白菜中的白菜汁时,最终细胞质量随所添加的有机物质的量成比例增加。扫描电子显微照片显示了在废盐水中生长的盐胁迫的古希腊对虾A9细胞。总之,从泡菜生产中产生的大量废盐水可直接用于培养耐渗透性酵母guilliermondii A9。

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