Physico-chemical Characterization of Palm Kernel Oil Extracted from the Seeds of Two Varieties of Oil Palm (Elaeis guineensis Jacq.) for Possible Use in Feed or Food
Yapi Amin Paulin, Kouadio Ahou Irène
European Journal of Nutrition & Food Safety · pp. 341–353 · Published 26 Jul 2019
10.9734/ejnfs/2019/v9i430081Abstract
This study was carried out in order to assess the quality of the type of palm kernel oil suitable for the alternative in animal oil in feed or food. To reach this objective, oil D and oil T extracted respectively from the seeds of the varieties Dura and Tenera of oil palm (Elaeis guineensis Jacq.) by the Soxhlet method using hexane as a solvent were analyzed for their physicochemical characteristics. The results obtained show that the values for the physical parameters (Oil yield, density and percentage of impurities) of both oils were similar and fell in those of the standards of Codex Alimentarius 2015. However, for the chemical parameters (Acid value, percentage of free fatty acids, peroxide value, saponification value and ester value), the values obtained for oil D were the highest, but for both oils, the values were above those recommended by the standards of Codex Alimentarius 2015, excepted the Saponification values and the Ester values which were below these standards. The determination of fatty acids composition by Gas Chromatography showed that these oils were not significantly different. Indeed, the totals saturated fatty acids were in amounts of 87.92% ± 0.17 and 87.53% ± 0.24, while the totals unsaturated fatty acids were in amounts of 12.08% ± 0.02 and 12.47% ± 0.02 respectively for oil D and oil T. The predominant fatty acid was lauric acid in amounts of 36.87% and 37.84% respectively for oil D and oil T. Thus, these palm kernel oils could be used as ingredients and preservatives in feed due to their content in lauric acid which is known to possess antimicrobial properties and also to their content in unsaturated fatty acids (oleic and linoleic acids) which are an indicator of oil quality. However, oil T seems to be more suitable for the alternative in animal oil in feed due to its percentage of free fatty acid which is less than that of oil D.
Cited by 6
HAMIDAH RAHMAN, JOHNNER P. SITOMPUL, SURYATI TJOKRODININGRAT · Biodiversitas Journal of Biological Diversity · 2022
Akuzuo Uwaoma Ofoefule, Matthias Nnadozie Ugwu, Jude Chibuike Igweagwu · Trends in Applied Sciences Research · 2023
Chinwe P. Okonkwo, Vincent I. E. Ajiwe, Alexander I. Ikeuba · RSC Advances · 2023
· Feedstocks for Sustainable Biodiesel Production · 2024
Christabel Y.E. Tachie, Daniel Obiri-Ananey, Marcela Alfaro-Cordoba · Food Chemistry · 2024
Ahou Irène Kouadio · Journal of Food Research · 2021
Related research
- Effect of Palm Kernel Oil on Plasma Sodium, Potassium and Chloride in Wistar Rats Induced with Febrile Seizures — shares topic coverage
- Potential Application of Oyster Shell as Adsorbent in Vegetable Oil Refining — shares topic coverage
- Natural Skin-care Products: The Case of Soap Made from Cocoa Pod Husk Potash — shares topic coverage
- Biodiesel Causes Oxidative Damage in Tissues of Clarias gariepinus — shares topic coverage
- Toxicological Evaluation of Palm Kernel Oil (PKO) Biodiesel-Contaminated Catfish on Kidney of Albino Rats — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
6
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.