OPTIMALISASI SEL Saccharomyces cerevisiae UNTUK MENINGKATKAN PRODUKTIVITAS DAN EFISIENSI INDUSTRI ETANOL [Optimization of Saccharomyces cerevisiae Cell to Increase Productivity and Efficiency of Ethanol Industry]

Banon Rustiaty
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引用次数: 1

Abstract

The development of bioethanol as fuel substitution is believed to overcome the potency of the world energy crisis including Indonesia. The bioethanol development can be done by increasing the production capacity of the existing bioethanol factory plant by improving yeast culture for enhancing the performance of the fermentation process. This study was aimed at obtaining a method of optimizing the ability of Saccharomyces cerevisiae fermentation that can be applied by the alcohol industry in Indonesia for increasing factory productivity, thereby reducing the cost of producing alcohol. In this study, the adaptation of Saccharomyces cerevisiae Watei and Saccharomyces cerevisiae Hakken I were adopted in environment condition with high ethanol content up to 13%. The results showed that the yeast was able to grow in environments with high ethanol content with higher specific growth rate and larger cell size than those within the original yeast. This condition showed that adapted strains can overcome stress caused by high ethanol. These results promise the good performance yeasts with ability in growing and performing metabolic activities in high alcohol-containing environment conditions
OPTIMALISASI SEL酿酒酵母UNTUK MENINGKATKAN PRODUKTIVITAS DAN EFISENSI INDUSTRI ETANOL[优化酿酒酵母细胞以提高乙醇工业的生产力和效率]
生物乙醇作为替代燃料的开发被认为可以克服包括印度尼西亚在内的世界能源危机的威力。生物乙醇的开发可以通过改进酵母培养来提高现有生物乙醇工厂的生产能力,从而提高发酵过程的性能。本研究旨在获得一种优化酿酒酵母发酵能力的方法,该方法可用于印度尼西亚的酒精工业,以提高工厂生产率,从而降低生产酒精的成本。本研究采用酿酒酵母(Saccharomyces cerevisiae Watei)和酿酒酵母(Saccharomyces cerevisiae Hakken I)在乙醇含量高达13%的环境条件下进行适应。结果表明,与原酵母相比,该酵母在高乙醇含量的环境中生长,具有更高的特定生长速率和更大的细胞尺寸。这表明适应菌株可以克服高乙醇引起的应激。这些结果预示着在高含醇环境条件下具有生长和代谢能力的优良酵母
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