首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >EFFECT OF MICRO-AERATION ON THE GROWTH OF CANDIDA PSEUDOTROPICALIS AND PRODUCTION OF ETHANOL DURING BATCH FERMENTATION OF CHEESE WHEY
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EFFECT OF MICRO-AERATION ON THE GROWTH OF CANDIDA PSEUDOTROPICALIS AND PRODUCTION OF ETHANOL DURING BATCH FERMENTATION OF CHEESE WHEY

机译:奶酪乳清分批发酵过程中微曝气对拟南芥假单胞菌生长和乙醇生产的影响

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Four pilot-scale batch reactors of 5 l volume each were used to study the effect of micro-aeration (240-720 ml/min or 0.05-0.15 v/v/min) on the cell growth rate, substrate utilization and ethanol production during cheese whey batch fermentation using the yeast Candida pseudotropicalis at lactose concentrations ranging from 50 to 200 g/l. The results indicated that micro-aeration had a significant effect on the maximum cell concentration and the specific growth rate. It improved the viability of the yeast cells and enhanced the substrate utilization rate and the ethanol yield. The optimum micro-aeration level was found to be 0.1 v/v/min; further increases in the rate of micro-aeration resulted in an increased biomass concentration and decreased ethanol production as more lactose was utilized for biomass synthesis. The maximum ethanol yield (98.3%) was obtained with the micro-aeration rate of 0.1 v/v/min and the 150 g/l initial substrate concentration. The ethanol productivity (g/l/h) under these conditions was 35% higher than that obtained at 150 g/l initial substrate concentration with no aeration. [References: 44]
机译:使用四个每个5 l体积的中试规模反应器来研究微曝气(240-720 ml / min或0.05-0.15 v / v / min)对细胞生长速率,底物利用率和乙醇生产过程的影响使用酵母假丝酵母念珠菌在乳糖浓度为50至200 g / l的范围内进行干酪乳清分批发酵。结果表明,微曝气对最大细胞浓度和比生长速率有显着影响。它提高了酵母细胞的活力,并提高了底物利用率和乙醇产量。发现最佳微通气水平为0.1 v / v / min;随着更多的乳糖用于生物质合成,微通气速率的进一步提高导致生物质浓度增加和乙醇产量降低。在0.1 v / v / min的微通气速率和150 g / l的初始底物浓度下获得最大乙醇收率(98.3%)。在这些条件下,乙醇的生产率(g / l / h)比不充气的初始底物浓度150 g / l的乙醇生产率高35%。 [参考:44]

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