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Development of a nutritious snack bar using superfine string hopper flour by- product and horse gram (Macrotyloma uniflorum) flour

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dc.contributor.author Galgamuwa, G.M.K.A.
dc.contributor.author Weerasinghe, T.M.A.N.
dc.contributor.author Kirushanthan, S.
dc.date.accessioned 2026-09-15T05:01:05Z
dc.date.available 2026-09-15T05:01:05Z
dc.date.issued 2026
dc.identifier.uri http://repo.lib.jfn.ac.lk/ujrr/handle/123456789/13054
dc.description.abstract The growing global concern for sustainable food systems has encouraged the utilization of agro-industrial by-products and underexploited crops in functional food development. This study aimed to formulate a nutritious snack bar using superfine string hopper flour by-product, an underutilized rice-based processing fraction, and horse gram (Macrotyloma uniflorum) flour, a protein and fiber rich legume. Three flour combinations (50:30:20, 40:40:20, and 30:50:20 of string hopper by-product, horse gram flour, and wheat flour, respectively) were prepared and evaluated for nutritional (moisture, protein, fat, fiber, ash, and carbohydrate content), sensory, and storage characteristics (pH, color, sugar, moisture, microbial quality, and sensory stability). The formulations were standardized using guar gum (1%) as a binder, margarine (8%) as a fat source, and date paste (40%) as a natural sweetener. Sensory evaluation was conducted using a five-point hedonic scale, and data were analyzed using the Friedman test (95% confidence). The blend containing 40% string hopper by-product, 40% horse gram flour, and 20% wheat flour achieved the highest acceptability. After optimizing sweetness enhancement using a date paste-groundnut mixture, 40% date paste incorporation by direct mixing was the most preferred, while coconut milk improved texture and mouth feel. The optimized snack bar contained 14.75±0.63% moisture, 8.83±0.26% protein, 6.94 ± 0.07% fat, 3.20 ± 0.55% fiber, 2.85 ± 0.80% ash, and 63.43 ± 1.11% carbohydrates. Shelf-life evaluation over four weeks showed superior quality retention under refrigeration (4 ± 1 °C), while ambient samples (28 ± 2 °C) developed mold after 16 days. Overall, the findings reveal the potential of this flour blend in developing sustainable, nutrient-enriched, and shelf-stable snack foods. en_US
dc.language.iso en en_US
dc.publisher Research and Development Centre, National Institute of Post- Harvest Management en_US
dc.subject Functional food en_US
dc.subject Horse gram en_US
dc.subject Nutrient enriched snack bar en_US
dc.subject String hopper flour by- product en_US
dc.subject Waste valorization en_US
dc.title Development of a nutritious snack bar using superfine string hopper flour by- product and horse gram (Macrotyloma uniflorum) flour en_US
dc.type Conference paper en_US


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