Please use this identifier to cite or link to this item: http://repo.lib.jfn.ac.lk/ujrr/handle/123456789/12838
Title: Development and Nutritional Evaluation of Date-Based Energy Bar Formulated with Dehydrated Banana Chips
Authors: Sahana, A.S.F.
Sinthuja, L.P.
Ratnayaka, R.M.R.N.K.
Sewwandi, S.M.V.K.
Keywords: Date paste;Dehydrated banana chips;Energy bars;Physiochemical properties;Proximate composition
Issue Date: 2026
Publisher: University of Jaffna
Abstract: Most commercial energy bars contain high levels of added sugars, refined syrups, and fats. Regular consumption of such products contributes to excessive calorie intake and increases the risk of non-communicable diseases. This study aimed to developed a date-based energy bar incorporated with dehydrated banana chips without the addition of sugar and salt. Dates, bananas, rice flakes, pumpkin seeds, sesame seeds, peanuts, mung beans, coconut oil, and banana flavor were used as ingredients. Three formulations were developed by varying the proportion of date paste and dehydrated banana chips and other ingredients were kept constant across all treatments. The formulations were evaluated for proximate composition, color parameters, microbial safety, and sensory attributes. According to the results, crude protein, crude fat, and dietary fiber contents ranged from 9.99-10.06%, 6.71-6.75%, and 6.99-7.165 respectively. However, ash and sugar contents showed significant differences among the treatments, ranging from 1.58-1.68% and 17.20-19.00% respectively. Moisture content, color and total plate count (TPC) were monitored throughout 21 days of the storage period room temperature (28±2 °C). Moisture content and color values increased significantly during storage. However, T1 exhibited the lowest moisture increase (12.24-13.37%) compared to T2 (15.13-19.03%) and T3 (12.72%-14.86%). T1 demonstrated the stable physiochemical properties, retaining the redness (a*) value (7.36 ± 0.19) by the third week of storage. T1 remained microbiologically safe during storage, with a final TPC of 1.0 × 104 CFU/g, well below the acceptable limit of 1.0 × 106 CFU/g. Sensory evaluation concluded that the T1 formulation provides favorable physical stability and sensory acceptability.
URI: http://repo.lib.jfn.ac.lk/ujrr/handle/123456789/12838
Appears in Collections:ICDA 2026



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