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Sugars metabolism and ethanol production by different yeast strains from coffee industry wastes hydrolysates

机译:咖啡行业中不同酵母菌株的糖代谢和乙醇生产浪费了水解产物

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摘要

Significant amounts of wastes are generated by the coffee industry, among of which, coffee silverskin (CS) and spent coffee grounds (SCG) are the most abundantly generated during the beans roasting and instant coffee preparation, respectively. This study evaluated the sugars metabolism and production of ethanol by three different yeast strains (Saccharomyces cerevisiae, Pichia stipitis and Kluyveromyces fragilis) when cultivated in sugar rich hydrolysates produced by acid hydrolysis of CS and SCG. S. cerevisiae provided the best ethanol production from SCG hydrolysate (11.7 g/l, 50.2% efficiency). On the other hand, insignificant (⩽1.0 g/l) ethanol production was obtained from CS hydrolysate, for all the evaluated yeast strains, probably due to the low sugars concentration present in this medium (approx. 22 g/l). It was concluded that it is possible to reuse SCG as raw material for ethanol production, which is of great interest for the production of this biofuel, as well as to add value to this agro-industrial waste. CS hydrolysate, in the way that is produced, was not a suitable fermentation medium for ethanol production; however, the hydrolysate concentration for the sugars content increase previous the use as fermentation medium could be an alternative to overcome this problem.
机译:咖啡行业产生了大量的废物,其中咖啡豆烘焙和速溶咖啡制备过程中产生的咖啡银皮(CS)和废咖啡渣(SCG)最多。这项研究评估了在CS和SCG的酸水解产生的富含糖的水解产物中培养时,三种不同的酵母菌株(酿酒酵母,毕赤酵母和脆弱克鲁维酵母)的糖代谢和乙醇产生。酿酒酵母提供了来自SCG水解产物的最佳乙醇产量(11.7 g / l,效率为50.2%)。另一方面,对于所有评估的酵母菌株,从CS水解物中获得的乙醇产量不高(约1.0 g / l),这可能是由于该培养基中糖的浓度较低(约22 g / l)。结论是,可以将SCG用作乙醇生产的原料,这对于生产这种生物燃料非常重要,并且可以增加这种农业工业废料的价值。按照生产的方式,CS水解产物不是用于乙醇生产的合适发酵培养基。但是,在用作发酵培养基之前,糖含量的水解产物浓度会增加,可以克服这一问题。

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