The selection and the Growth Condition Optimization of Ethanol‐Producing Microbes Isolated from Ragi Tapai

Q4 Agricultural and Biological Sciences Journal of Tropical Life Science Pub Date : 2023-05-25 DOI:10.11594/jtls.13.02.12
Ida Bagus, Wayan Gunam, Gede Arya Sujana, I. Made, Mahaputra Wijaya, Y. Setiyo, Wayan Arnata, Wayan Wisma, Pradnyana Putra
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Abstract

Ethanol is a biofuel produced from renewable resources, which potentially plays an important role in solving future fuel problems. This study aimed to select the highest ethanol-producing isolate from candidates obtained from previously isolated candidates from ragi and cassava tapai. The selection process was conducted in 2 stages, namely: 1) Selection of the highest ethanol-producing isolate from seven isolate candidates using PYG media containing peptone, yeast extract, and glucose at 0.75%, 0.75%, and 15%, respectively and was followed by: 2) Optimization of the growth conditions of the highest ethanol-producing isolate, which was conducted at various temperatures of 27, 30, 33, 35, 37, and 40°C with the combination of various pH of 3.5, 4.5, 5.5, and 6.5. The experimental results showed that the R5I3 isolate was the highest ethanol-producing performance isolate, which yielded approximately 4.69±0.25% (v/v). Following the temperature and pH optimization of the fermentation processes, the optimum growth conditions were at 35°C and pH 5.5, where the ethanol produced was increased to 8.63 ± 0.04% (v/v). With these results, this new strain has the potential to be used in bioethanol production processes and other industrial applications.
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龙葵产乙醇菌的筛选及生长条件优化
乙醇是一种由可再生资源生产的生物燃料,在解决未来的燃料问题中具有潜在的重要作用。本研究旨在从先前从ragi和木薯tapai中分离得到的候选物中筛选出乙醇产量最高的分离物。筛选过程分为2个阶段,即:1)在含蛋白胨、酵母浸膏和葡萄糖的PYG培养基中,分别以0.75%、0.75%和15%的浓度从7个候选分离物中筛选出产乙醇率最高的分离物;2)优化产乙醇率最高的分离物的生长条件,分别在27、30、33、35、37、40℃的温度和3.5、4.5、5.5、6.5的pH组合条件下进行。实验结果表明,分离物R5I3产乙醇性能最高,产乙醇率约为4.69±0.25% (v/v)。对发酵过程进行温度和pH优化后,最佳生长条件为35℃,pH为5.5,乙醇产量提高到8.63±0.04% (v/v)。根据这些结果,这种新菌株有可能用于生物乙醇生产过程和其他工业应用。
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来源期刊
Journal of Tropical Life Science
Journal of Tropical Life Science Environmental Science-Ecology
CiteScore
1.00
自引率
0.00%
发文量
46
审稿时长
12 weeks
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