Comparative Quality Evaluation of Plain, Turmeric- and Palm Oil - Enriched Garri Produced
Authors
Department of Food Science and Technology, The Gateway (ICT) Polytechnic, Saapade, Ogun State. (Nigeria)
Department of Food Science and Technology, The Gateway (ICT) Polytechnic, Saapade, Ogun State. (Nigeria)
Department of Food Science and Technology, The Gateway (ICT) Polytechnic, Saapade, Ogun State. (Nigeria)
Department of Science Laboratory Technology (Biochemistry Option), The Gateway (ICT) Polytechnic, Saapade, Ogun State (Nigeria)
Article Information
DOI: 10.51244/IJRSI.2026.1309000044
Subject Category: Food science
Volume/Issue: 13/9 | Page No: 558-575
Publication Timeline
Submitted: 2026-09-09
Accepted: 2026-09-15
Published: 2026-10-03
Abstract
This study comparatively evaluated the nutritional and anti-nutritional composition of conventional garri and garri enriched with palm oil and turmeric powder. Garri samples were formulated as plain garri (GUS), garri enriched with 3% palm oil (GFP), and garri enriched with 3% turmeric powder (GFT). The samples were evaluated for proximate composition, cyanide content, functional properties, antioxidant activity, starch composition, carotenoid content, physicochemical properties, heavy metals, sensory characteristics, colour, anti-nutritional factors and mineral composition. Results showed that GFT recorded higher ash (2.08%), protein (1.82%), fibre (2.14%), antioxidant activity, total phenolic content (72.46 mg GAE/100 g), total flavonoid content (34.84 mg QE/100 g), vitamin C (12.68 mg/100 g) and resistant starch (2.64%) than GUS. GFT also exhibited improved water absorption, swelling capacity, dispersibility and mineral composition. GFP recorded the highest fat (3.84%), energy value (368.64 kcal/100 g) and overall sensory acceptability (8.36). Turmeric enrichment also enhanced the colour characteristics and antioxidant potential of garri while reducing phytate and oxalate contents. Overall, turmeric enrichment demonstrated considerable potential for improving the nutritional, functional and bioactive properties of garri while maintaining good sensory acceptability.
Keywords
Garri, turmeric, nutritional composition, antioxidant activity, anti-nutritional factors, functional properties.
Downloads
References
1. Adewusi, S. R. A., & Akindahunsi, A. A. (1994). Cassava processing, consumption, and cyanide toxicity. Journal of Toxicology and Environmental Health, 43(1), 13–23.https://doi.org/10.1080/15287399409531900. (PubMed) [Google Scholar] [Crossref]
2. Burns, A., Gleadow, R., Cliff, J., Zacarias, A., & Cavagnaro, T. (2010). Cassava: The drought, war and famine crop in a changing world. Sustainability, 2(11), 3572–3607. [Google Scholar] [Crossref]
3. Cardoso, A. P., Mirione, E., Ernesto, M., Massaza, F., Cliff, J., Haque, M. R., & Bradbury, J. H. (2005). Processing of cassava roots to remove cyanogens. Journal of Food Composition and Analysis, 18(5), 451–460. [Google Scholar] [Crossref]
4. El-Sharkawy, M. A. (2004). Cassava biology and physiology. Plant Molecular Biology, 56, 481–501. [Google Scholar] [Crossref]
5. Hewlings, S. J., & Kalman, D. S. (2017). Curcumin: A review of its effects on human health. Foods, 6(10), 92. https://doi.org/10.3390/foods6100092. [Google Scholar] [Crossref]
6. Kemdirim, O. C., Chukwu, O. A., & Achinewhu, S. C. (1995). Effect of traditional processing of cassava on the cyanide content of gari and cassava flour. Plant Foods for Human Nutrition, 48(4), 335–339. https://doi.org/10.1007/BF01088492. [Google Scholar] [Crossref]
7. Montagnac, J. A., Davis, C. R., & Tanumihardjo, S. A. (2009). Nutritional value of cassava for use as a staple food and recent advances for improvement. Comprehensive Reviews in Food Science and Food Safety, 8(3), 181–194. [Google Scholar] [Crossref]
8. Prasad, S., Gupta, S. C., Tyagi, A. K., & Aggarwal, B. B. (2014). Curcumin, a component of golden spice: From bedside to bench and back. Biotechnology Advances, 32(6), 1053–1064. [Google Scholar] [Crossref]
9. Westby, C. A. (2002). Cassava utilization, storage and small-scale processing. Natural Resources Institute, University of Greenwich. [Google Scholar] [Crossref]
10. Momtazi-Borojeni, A. A., Abdollahi, E., Nikfar, B., Chaichian, S., & Ekhlasi-Hundrieser, M. (2023). Antioxidant and anti-inflammatory effects of curcumin/turmeric supplementation in adults: A GRADE-assessed systematic review and dose-response meta-analysis of randomized controlled trials. Cytokine, 166, 156144. https://doi.org/10.1016/j.cyto.2023.156144. [Google Scholar] [Crossref]
Metrics
Views & Downloads
Similar Articles
- Comparative Effects of Oven and Microwave Drying on Nutrient Retention and Consumer Acceptability of Watermelon (Citrullus Lanatus)
- Bamboo Shoots (Bambusa Vulgaris) Bites: A Flavorful Twist On Siomai
- Relevance of Scanning Electron Microscope and Nuclear Magnetic Resonance Technique in Food Research: A Review
- Effect of Drying Conditions on Nutrient Content of Dried ‘Nsukka’ Yellow Pepper (Capsicum Annuum L)
- Analysis of Proximate and Phytomicrobial Properties of Fluted Pumpkin and white Leadwort Obtained from Some Botanical Gardens in Warri South Local Government