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首页> 外文期刊>Current Journal of Applied Science and Technology >Determination of Brew Fermentation Rate Using Tithonia diversifolia Catalyst
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Determination of Brew Fermentation Rate Using Tithonia diversifolia Catalyst

机译:使用扁平皂苷促进催化剂测定酿造发酵率

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摘要

The consumption of alcoholic drinks have highly risen recently to a situation whereby there is a deficit in the stores, this is due to the higher demand compared to supply. Due to the high prices of most of the industrialized brews, consumers have opted for locally brewed drinks. Although locally manufactured brews are not recognized and certified by law, most are of good quality and with low cost of production. The use of Tithonia diversifolia can be employed to aid in improvement of the rate of production of local and industrialized brews. The main aim of this project was to improve the rate of fermentation of alcoholic beverage using both Tithonia diversifolia leaves extracts and iron II nanoparticles derived from it. It was observed that the plant catalyst reduced the time taken to produce alcohol. Alcohol fermentation rate in presence of yeast and with a tithonia extract as catalyst was measured, Rates of alcohol production was measured by UV VIS at intervals of one hour and deduced from a calibration curve. From the data, the alcohol content was higher in the sample catalyzed by the complexed extract and the one containing extracts as the catalyst as compared to the one without a catalyst. The percentage ethanol was able to be detected by finding absorbances (beer lambert law A =? e ? l ?c.).
机译:最近,酒精饮料的消费量高度上升到了商店中存在赤字的情况,这是由于与供应相比较高的需求。由于大多数工业化的酿酒价格,消费者选择了当地酿造的饮料。虽然本地制造的酿酒没有被法律认可和认证,但大多数都具有质量优良,生产成本低。可以使用Tithonia Diversifolia来帮助改善当地和工业化酿造啤酒的生产速度。该项目的主要目的是通过衍生自含有其衍生的叶子提取物和铁II纳米粒子来提高酒精饮料发酵率。观察到植物催化剂降低了生产醇的时间。测量酵母和用催化剂存在的酒精发酵速率,用催化剂的催化剂,通过UV Vis以1小时的间隔测量醇产生的速率,并从校准曲线推导出来。根据数据,与没有催化剂的络合提取物催化的样品中的样品中催化的样品中的醇含量较高,与催化剂相比,含有萃取物的样品。通过寻找吸光度(Beer Lambert Law A =ΔE≤C.),能够检测乙醇百分比百分比乙醇。

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