Chemical and Physicochemical Characteristics of Cakes Made from Blends of Fermented Sorghum Flour, Pigeon Pea Flour, and Wheat Flour

Ernest Eguono Emojorho *

Department of Food Science and Technology, Southern Delta University, Ozoro, Nigeria.

Chioma Cecilia Aniemena

Department of Food Science and Technology, University of Nigeria, Nsukka, Nigeria.

Okoronkwo Ngozi Chioma

Department of Food Science and Technology, University of Nigeria, Nsukka, Nigeria.

Charles Chukwudi Ogboli

Department of Enviromental Systems Engineering, University of Regina, Regina, Canada.

Peter Okechukwu Nwodom

Department of Food Science and Technology, University of Nigeria, Nsukka, Nigeria.

Promise Chizoba Ibekwe

Department of Food Science and Technology, Southern Delta University, Ozoro, Nigeria.

*Author to whom correspondence should be addressed.


Abstract

This study assessed the chemical and physicochemical characteristics of cakes produced from blends of fermented sorghum flour, fermented pigeon pea flour, and wheat flour, with the aim of developing a nutritious wheat-alternative bakery product. The growing interest in composite flours and the need to promote indigenous cereal and legume crops have encouraged the use of fermented sorghum and pigeon pea flours in cake production. Fermentation may improve nutritional quality, functional properties, and nutrient bioavailability while reducing antinutritional factors. Composite flours were prepared at different blending ratios and processed into cakes using standard production procedures. The samples were analysed using standard methods. Carbohydrate content ranged from 35.98% to 49.01%, while moisture content ranged from 12.13% to 16.19%. Crude fibre ranged from 0.20% to 2.40%, crude fat from 24.80% to 29.71%, ash from 1.78% to 2.81%, and protein from 9.83% to 12.91%. The highest protein, fat, fibre, and ash values were recorded in the cake containing 50% pigeon pea flour. Tannin content ranged from 4.01 to 22.71 mg/100 g, whereas alkaloid content ranged from 0.39 to 4.84 mg/100 g. All composite cakes had lower tannin contents and higher alkaloid contents than the wheat-flour control. Flour substitution therefore influenced the proximate, antinutrient, and physicochemical characteristics of the products. The inclusion of fermented sorghum and pigeon pea flours increased the protein and, in selected formulations, the fibre, fat, and ash contents of the cakes. These findings indicate that fermented cereal-legume composite flours may be used to produce nutrient-enriched cakes while encouraging the utilisation of locally available raw materials and reducing dependence on wheat flour.

Keywords: Cake, pigeon pea, sorghum, chemical composition, physicochemical properties 47


How to Cite

Emojorho, Ernest Eguono, Chioma Cecilia Aniemena, Okoronkwo Ngozi Chioma, Charles Chukwudi Ogboli, Peter Okechukwu Nwodom, and Promise Chizoba Ibekwe. 2026. “Chemical and Physicochemical Characteristics of Cakes Made from Blends of Fermented Sorghum Flour, Pigeon Pea Flour, and Wheat Flour”. Asian Journal of Food Research and Nutrition 5 (3):1085-94. https://doi.org/10.9734/ajfrn/2026/v5i3435.

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