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首页> 外文期刊>Engineering in Life Sciences >Formation of ethyl acetate by Kluyveromyces marxianus on whey: Influence of aeration and inhibition of yeast growth by ethyl acetate
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Formation of ethyl acetate by Kluyveromyces marxianus on whey: Influence of aeration and inhibition of yeast growth by ethyl acetate

机译:马克斯克鲁维酵母对乳清的乙酸乙酯形成:通气和乙酸乙酯抑制酵母生长的影响

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摘要

The ability of the yeast Kluyveromyces marxianus to convert lactose into ethyl acetate offers good opportunities for the economical reuse of whey. The formation of ethyl acetate as a bulk product depends on aerobic conditions. Aeration of the bioreactor results in discharge of the volatile ester with the exhaust gas that allows its process-integrated recovery. The influence of aeration (varied from 10 to 50 L/h) was investigated during batch cultivation of K. marxianusDSM 5422 in 0.6 L whey-borne medium using a stirred reactor. With lower aeration rates, the ester accumulated in the bioreactor and reached higher concentrations in the culture medium and the off gas. A high ester concentration in the gas phase is considered beneficial for ester recovery from the gas, while a high ester concentration in the medium inhibited yeast growth and slowed down the process. To further investigate this effect, the inhibition of growth by ethyl acetate was studied in a sealed cultivation system. Here, increasingester concentrations caused a nearly linear decrease of the growth rate with complete inhibition at concentrations greater than 17 g/L ethyl acetate. Both the cultivation process and the growth rate depending on ethyl acetate were described by mathematical models. The simulated processes agreed well with the measured data.
机译:酵母马克斯克鲁维酵母将乳糖转化成乙酸乙酯的能力为经济地再利用乳清提供了良好的机会。乙酸乙酯作为散装产品的形成取决于有氧条件。生物反应器的充气会导致挥发性酯与废气一起排出,从而实现过程综合回收。在使用搅拌反应器的0.6 L乳清培养基中分批培养K. marxianusDSM 5422的过程中,研究了通气的影响(从10到50 L / h不等)。曝气速率较低时,酯会积聚在生物反应器中,并在培养基和废气中达到较高浓度。气相中的高酯浓度被认为有利于从气相中回收酯,而培养基中的高酯浓度则抑制了酵母的生长并减慢了该过程。为了进一步研究该效果,在密封培养系统中研究了乙酸乙酯对生长的抑制作用。在此,增加的酯浓度会导致生长速率几乎呈线性下降,而在浓度大于17 g / L的乙酸乙酯时会被完全抑制。数学模型描述了取决于乙酸乙酯的培养过程和生长速率。模拟过程与实测数据吻合良好。

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