ETHANOL PRODUCTION FROM FRUITS USING MICROBIOLOGICAL METHODS

Authors

  • Bekzod Ulashevich Zokirov Associate Professor, Qarshi State Technical University

DOI:

https://doi.org/10.55640/

Keywords:

Ethanol, fermentation, microbiological methods, fruit substrates, biofuel, microbial strains, substrate optimization, industrial fermentation, renewable energy, fermentation efficiency

Abstract

This study explores ethanol production from various fruits using microbiological methods. The research focuses on optimizing fermentation conditions, selecting effective microbial strains, and analyzing ethanol yield and quality. The findings indicate that controlled microbiological processes can significantly enhance ethanol production from fruit substrates, offering potential applications in sustainable biofuel development and industrial fermentation processes.

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References

1.Singh, A., Kumar, P., & Sharma, R. (2020). Fruit-based ethanol production: Current trends and future perspectives. Journal of Renewable Energy Research, 10(4), 1250–1265.

2.Oliveira, F., Silva, M., & Santos, J. (2019). Optimization of yeast fermentation for bioethanol production from fruit substrates. Bioresource Technology, 288, 121492.

3.Zhao, L., Li, Y., & Wang, X. (2018). Comparative study of ethanol yield from different fruit sources using Saccharomyces cerevisiae. Industrial Crops and Products, 115, 72–80.

4.Chen, H., Zhang, Y., & Liu, Q. (2021). Enhancement of ethanol production through co-fermentation with bacterial strains. Biotechnology Reports, 29, e00574.

5.Das, S., & Bhattacharya, S. (2017). Fermentation kinetics and process optimization for fruit-based ethanol. Applied Microbiology and Biotechnology, 101(11), 4555–4566.

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7.Patel, A., & Joshi, P. (2020). Industrial-scale fermentation systems for ethanol production from renewable fruit substrates. Renewable Energy, 145, 2043–2054.

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Published

2025-10-27

How to Cite

ETHANOL PRODUCTION FROM FRUITS USING MICROBIOLOGICAL METHODS. (2025). Journal of Multidisciplinary Sciences and Innovations, 4(9), 1295-1300. https://doi.org/10.55640/

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