Modifying the cooling and control system for a BAERC Bio Ethanol Micro Distillery can significantly improve efficiency, reduce energy consumption, and enhance overall system reliability. The cooling and control systems are crucial in optimizing the distillation process, which involves controlling temperature and heat exchange during fermentation and distillation. The improved and tested batch system micro distillery-based ethanol production from molasses was successfully operated by firewood and produced ethanol at the alcoholic levels of 60-93%. Though the system was not operated at its full capacity, it made 10 to 12 liters from 80 to 100 liters of the substrate with various sources and brix. The average boiling point of the substrate takes about 1 hour and 30 minutes, on average, to reach the boiling point of ethanol when a wood fuel gasifier stove is used as a heat source. The micro-distillery paved the way for small-scale ethanol production from molasses and to produce clean-burning ethanol, mainly for household cook stoves. So that individual Farmers’ Youth and Women micro-enterprises can use it and make income from the technology. Additionally, if a scaled-up micro-distillery is established in a village, individual farmers can be the supply of input and make additional income out of it.
Published in | International Journal of Energy and Environmental Science (Volume 10, Issue 3) |
DOI | 10.11648/j.ijees.20251003.11 |
Page(s) | 42-48 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2025. Published by Science Publishing Group |
Condenser, Ethanol, Formation, Heat Exchanger, Micro Distillery, Substrate
Usedkg of molasses | Liters of solution | Adjusted sugar brix | Measured and adjusted the pH of solution | Ferment, room & buckets body temperature |
---|---|---|---|---|
10 | 100 | 18 | 7.1, 4.5 | 25°C, 35°C |
8 | 80 | 22 | 7.8, 5.5 | 26°C, 33°C |
8 | 80 | 20 | 7.2, 4.5 | 25°C, 32°C |
8 | 80 | 19 | 6.8, 5.2 | 25°C, 32°C |
Fuel wood/distillation per batch (kg) | Distillation temp at bottom and top (°C) | Distillation time (hrs) | Alcohol /100 liters | Alcohol level (%) |
---|---|---|---|---|
18 | 62 | 1: 32 | 12 | 72-90 |
19 | 67 | 1: 43 | 9 | 60-91 |
22 | 65 | 1: 15 | 11 | 75-90 |
BAERC | Bako Agricultural Engineering Research Center |
CER | Carbon Emission Reduction |
EQA | Environmental Quality Act |
LPG | Liquid Petroleum Gas |
Vb | Vitamin B Complex |
VLE | Vapor-liquid Equilibrium |
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APA Style
Tesfaye, D., Mideksa, G. (2025). Modification of the Cooling and Control System of BAERC Bio Ethanol Micro Distillery. International Journal of Energy and Environmental Science, 10(3), 42-48. https://doi.org/10.11648/j.ijees.20251003.11
ACS Style
Tesfaye, D.; Mideksa, G. Modification of the Cooling and Control System of BAERC Bio Ethanol Micro Distillery. Int. J. Energy Environ. Sci. 2025, 10(3), 42-48. doi: 10.11648/j.ijees.20251003.11
@article{10.11648/j.ijees.20251003.11, author = {Duresa Tesfaye and Gemechis Mideksa}, title = {Modification of the Cooling and Control System of BAERC Bio Ethanol Micro Distillery }, journal = {International Journal of Energy and Environmental Science}, volume = {10}, number = {3}, pages = {42-48}, doi = {10.11648/j.ijees.20251003.11}, url = {https://doi.org/10.11648/j.ijees.20251003.11}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijees.20251003.11}, abstract = {Modifying the cooling and control system for a BAERC Bio Ethanol Micro Distillery can significantly improve efficiency, reduce energy consumption, and enhance overall system reliability. The cooling and control systems are crucial in optimizing the distillation process, which involves controlling temperature and heat exchange during fermentation and distillation. The improved and tested batch system micro distillery-based ethanol production from molasses was successfully operated by firewood and produced ethanol at the alcoholic levels of 60-93%. Though the system was not operated at its full capacity, it made 10 to 12 liters from 80 to 100 liters of the substrate with various sources and brix. The average boiling point of the substrate takes about 1 hour and 30 minutes, on average, to reach the boiling point of ethanol when a wood fuel gasifier stove is used as a heat source. The micro-distillery paved the way for small-scale ethanol production from molasses and to produce clean-burning ethanol, mainly for household cook stoves. So that individual Farmers’ Youth and Women micro-enterprises can use it and make income from the technology. Additionally, if a scaled-up micro-distillery is established in a village, individual farmers can be the supply of input and make additional income out of it.}, year = {2025} }
TY - JOUR T1 - Modification of the Cooling and Control System of BAERC Bio Ethanol Micro Distillery AU - Duresa Tesfaye AU - Gemechis Mideksa Y1 - 2025/07/15 PY - 2025 N1 - https://doi.org/10.11648/j.ijees.20251003.11 DO - 10.11648/j.ijees.20251003.11 T2 - International Journal of Energy and Environmental Science JF - International Journal of Energy and Environmental Science JO - International Journal of Energy and Environmental Science SP - 42 EP - 48 PB - Science Publishing Group SN - 2578-9546 UR - https://doi.org/10.11648/j.ijees.20251003.11 AB - Modifying the cooling and control system for a BAERC Bio Ethanol Micro Distillery can significantly improve efficiency, reduce energy consumption, and enhance overall system reliability. The cooling and control systems are crucial in optimizing the distillation process, which involves controlling temperature and heat exchange during fermentation and distillation. The improved and tested batch system micro distillery-based ethanol production from molasses was successfully operated by firewood and produced ethanol at the alcoholic levels of 60-93%. Though the system was not operated at its full capacity, it made 10 to 12 liters from 80 to 100 liters of the substrate with various sources and brix. The average boiling point of the substrate takes about 1 hour and 30 minutes, on average, to reach the boiling point of ethanol when a wood fuel gasifier stove is used as a heat source. The micro-distillery paved the way for small-scale ethanol production from molasses and to produce clean-burning ethanol, mainly for household cook stoves. So that individual Farmers’ Youth and Women micro-enterprises can use it and make income from the technology. Additionally, if a scaled-up micro-distillery is established in a village, individual farmers can be the supply of input and make additional income out of it. VL - 10 IS - 3 ER -