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Testing of n-Butanol and Eucalyptus Essential Oil as Additivities of Cottonseed Biodiesel-Diesel Blends


Affiliations
1 Baku State University, Faculty of chemistry, Z. Khalilov 23, Baku, Azerbaijan
2 Satbayev University, Chemical and Biochemical Engineering department, Almaty, Kazakhstan
 

The B10 fuel blend in the presence (or absence) of n-butyl alcohol and eucalyptus essential oil additivities by the ASTM standards has been tested. As seen our results, these oxygenated compounds can be successfully used in B10 fuel blends as additives to improve exploitation properties. Methanol-based biodiesel has been synthesized by the transesterification reaction of technical cottonseed oil in the presence of potassium hydroxide, with a maximum yield of 64% at a molar ratio of oil to alcohol of 1:3, at 65°C. The oxidizing stability of the B10 fuel blends with (or without) additivities has been evaluated using the NMR spectroscopy method. Our experimental results demonstrated that investigated B10 fuel blend with oxygenated compounds has a high potential for diesel engines than B100 and petroleum diesel. The best results demonstrate the B10+n-Butanol fuel blend.

Keywords

Biofuel, Eucalyptus Essential Oil, n-Butanol, Transesterification.
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  • Testing of n-Butanol and Eucalyptus Essential Oil as Additivities of Cottonseed Biodiesel-Diesel Blends

Abstract Views: 122  |  PDF Views: 92

Authors

Ibrahim Mamedov
Baku State University, Faculty of chemistry, Z. Khalilov 23, Baku, Azerbaijan
Zulfiya Abasova
Baku State University, Faculty of chemistry, Z. Khalilov 23, Baku, Azerbaijan
Ofelia Javadova
Baku State University, Faculty of chemistry, Z. Khalilov 23, Baku, Azerbaijan
Rinat Iskakov
Satbayev University, Chemical and Biochemical Engineering department, Almaty, Kazakhstan

Abstract


The B10 fuel blend in the presence (or absence) of n-butyl alcohol and eucalyptus essential oil additivities by the ASTM standards has been tested. As seen our results, these oxygenated compounds can be successfully used in B10 fuel blends as additives to improve exploitation properties. Methanol-based biodiesel has been synthesized by the transesterification reaction of technical cottonseed oil in the presence of potassium hydroxide, with a maximum yield of 64% at a molar ratio of oil to alcohol of 1:3, at 65°C. The oxidizing stability of the B10 fuel blends with (or without) additivities has been evaluated using the NMR spectroscopy method. Our experimental results demonstrated that investigated B10 fuel blend with oxygenated compounds has a high potential for diesel engines than B100 and petroleum diesel. The best results demonstrate the B10+n-Butanol fuel blend.

Keywords


Biofuel, Eucalyptus Essential Oil, n-Butanol, Transesterification.

References