SUSTAINABLE EXTRACTION AND COMPARATIVE ANALYSIS OF OIL FROM MORINGA AND SOYBEAN SEEDS USING PETROLEUM ETHER: AN ECONOMIC COST ANALYSIS
DOI:
https://doi.org/10.58471/ju-komi.v4i01.747Keywords:
: Moringa, Seed, Soya, Sustainable, Extract, Cost.Abstract
The increase demand and application for oils have engendered more searches for vegetable and seed oil that are of high quality. In this work, extraction and phytochemical analysis and physiochemical characterization of moringa seed and soya bean seed oil was carried out. The seed oil of the plants were extracted using solvent (petroleum ether), standard method was adopted to extract the oil. The parameters of both were determined by physiochemical analysis and calculation. 382g of grounded moringa seed and soya bean seed powder were weighed, and mixed with 1000ml of the petroleum ether in a round bottom flask of soxhlet extraction unit. The extraction process was carried out for three hours (180mins) for the seed powders respectively. The pH of moringa seed oil and soya bean seed oil were recorded as 5.8pH and 5.9pH respectively. The moringa seed yielded 185ml oil which represent 48.4% yield while soya bean seed yielded 61ml of oil which represent 16% yield. The density of both oils in the study research; 0.8363g/ml for moringa seed oil and 0.904g/ml, represent low and medium density food grade oil respectively. Density of oil > 0.92g/ml are regards as high density oil (Abbas A, et al, 2020).The phytochemical analysis showed that both seed oils are healthy plants based oils for human, domestic and industrial application.
References
Abbas A, Mahmound, A, hamza Y,& salvin Y, (2020). Extraction and physiochemical characterization of seed oil from terminalia seed.IntJRes Innov Appl Scl. 60.64
Abdelaziz, A.I.M., Elamin, I.H.M., Gasmelseed, G.A. and Abdalla, B.K. (2014). Extraction, refining and characterization of Sudanese castor seed oil. Journal of Chemical Engineering, 2(1):1-4.
Abdulelah, H. A, & Al-Kaf, H. A., et al. (2017) moringaoleifera seed aqueous extract
Akpan et al. (2006) employed the solvent extraction method to extract castor seed oil from castor bean paste using Soxhlet extractor.
Anjali, T. G., &Basavaraj, M. G. (2018). Influence of pH and salt concentration on pickering emulsions stabilized by colloidal peanuts. Langmuir, 34(44), 13312-13321.
Bhuiya, M.M.K., Rasul, M.G., Khan, M.M.K; Ashwath, N; Azad, A.K. and Mofijur, M. (2015). Optimization of oil extraction process from Australian Native Beauty Leaf Seed. (Calophylluminnophyllum). 7 th International Conference on Applied EnergyICAE2015. Energy Procedia, 75:56-61
Buenrostro, M. And Lopez-Munguia, C. (1986). Enzymatic extraction of avocado oil. Biotechnology Letters, 8:505-506.
Choudhary, M. K., Kataria, J., Bhardwaj, V. K., & Sharma, S. (2019). Green biomimetic preparation of efficient Ag–ZnOheterojunctions with excellent photocatalytic performance under solar light irradiation: a novel biogenic-deposition-precipitation approach. Nanoscale Advances, 1(3), 1035-1044.
Cilgin Erdal investigation of the usability of essential oils in diesel engines as a new biodiesel source. Gumushane Universitesi Fen Bilmlen Dergisi, ii(2),pp573-583
Dawidowicz, A. L., Rado, E., Wianowska, D., Mardarowicz, M., &Gawdzik, J. (2008). Application of PLE for the determination of essential oil components from Thymus vulgaris L. Talanta, 76(4), 878-884.
Del Valle, J.M. and Aguilera, J.M. (1999). Extraction con CO2 a attar presion. Fundamentosyaplicaciomes el naindustria de alimentos. Food Science and Technology International. 5:1-24.
Derived Vegetation Condition Index (VCI) and Standardized Precipitation Index (SPI). The Egyptian Journal of Remote Sensing and Space Science, 18(1), 53-63. (Muzenda et al., 2012; Takadas and Doker, 2017
Dutta, D., Kundu, A., Patel, N. R., Saha, S. K., & Siddiqui, A. R. (2015). Assessment of agricultural drought in Rajasthan (India) using remote sensing.
Gibbins, R.D., Aksoy, H.A. and Ustun, G. (2012). Enzyme-assisted aqueous extraction of safflower oil: optimization by response surface methodology. International Journal of Food Science and Technology, 47(5):1055 -1062
Ikya, J.K., Umenger, L.N. and Iorbee, A. (2013). Effects of extraction methods on the yield and quality characteristics of oils from shea nut. Journal of Food Resource Science, 2:1-12.
Islam, M. S., Sujan, M. S. H., Tasnim, R., Sikder, M. T., Potenza, M. N., & Van Os, J. (2020). Psychological responses during the COVID-19 outbreak among university students in Bangladesh. PloS one, 15(12), e0245083
Kumar, K. S., Dahms, H. U., Won, E. J., Lee, J. S., & Shin, K. H. (2015). Microalgae–a promising tool for heavy metal remediation. Ecotoxicology and environmental safety, 113, 329-352.
Manzoor M, Anwar F, Igbal, T, & Bhanger M.I (2007). Physic – chemical characterization of moringa concanensis seeds and seed oil. Journal of the American oil chemists society 84,413 – 419.
Muzenda, E., Kabuba, J., Mdletye, P. And Belaid, M. (2012). Optimization of process parameters for castoroil production. Proceedings of the World Congress on Engineering 2012 Vol. III WCE 2012, July, 4-6, 2012, London, U.K.
Ogunniyi, D.S. (2006). Castor Oil: a vital industrial raw material. Bioresource Technology, 97:1086 – 1091
Onwueme, I. C., and T. D. Sinha. "Field crop production." Tropical Africa Technical Centre for Agriculture and Rural Cooperation (CTA) (1999).
[NSRL. (2002).]
Rassem, T. H., Makbol, N. M., &Khoo, B. E. (2016, October). Performance evaluation of RDWT-SVD and DWT-SVD watermarking schemes. In AIP Conference Proceedings (Vol. 1774, No. 1). AIP Publishing.
Singh, S., Tripathi, D. K., Singh, S., Sharma, S., Dubey, N. K., Chauhan, D. K., &Vaculík, M. (2017). Toxicity of aluminium on various levels of plant cells and organism: a review. Environmental and Experimental Botany, 137, 177-193.








