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Biotechnological recycling of byproducts in the rice soft beverage industry: a preliminary research

机译:水稻软饮料行业副产品的生物技术回收:初步研究

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The use of industrial waste as the secondary raw materials is relevant all over the world. The rice sediment is a byproduct of the rice soft beverage industry. The rice mash was obtained by the rice sediment fermentation with α-amylase and ethanol yeast Saccharomyces cerevisiae . The rice wort fermentation efficiency was estimated by rice mash ethanol concentration, the visible mass concentration of mash dry substances, mash acidity, total yeast number and yeast budding, yeast cell area. The most intensive fermentation was in the sample with α-amylase. On the 7th day of fermentation, the alcohol concentration in this sample was 5.28volume (%), which is 5 times more than in the sample without α-amylase. Digital morphometric characteristics of yeast correlated with actual fermentation parameters, reflecting yeast adaptive reactions at various ethanol technological stages. The rice mash can be used in the rectification process to obtain new products - ethanol distillate or bioethanol. New methods and expanding technologies for biotechnological rice sediment recycling are required in this field of research.
机译:作为辅助原料,利用工业废弃物是有关世界各地。大米沉积物大米软饮料工业的副产品。由稻沉积物发酵α淀粉酶和乙醇酵母酿酒酵母获得的大米醪。水稻麦汁中的发酵效率通过水稻醪乙醇浓度,麦芽浆干燥物质可见质量浓度,醪酸度,总酵母数和酵母出芽,酵母细胞面积来估计。最密集的发酵是用α淀粉酶于样品中。对发酵的第7天,在该样品中的醇浓度为5.28volume(%),这是更比没有α淀粉酶在样品中的5倍。酵母的数字形态特征与实际发酵参数相关,反映在各个乙醇技术阶段酵母自适应反应。大米醪可以在精馏过程中使用,以获得新的产品 - 乙醇馏出物或生物乙醇。新方法和新技术,扩大对生物技术大米沉淀回收,需要在这一领域的研究。

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