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http://hdl.handle.net/11189/10641| Title: | Bambara groundnut starch-soluble dietary fibre nanocomposite stabilised emulsions: Optimisation of emulsion stability and studies on time-dependent rheological properties | Authors: | Maphosa, Yvonne Adeyi, Oladayo IKHU-OMOREGBE, DANIEL IMWANSI Jideani, Victoria |
Keywords: | Bambara groundnut;Emulsion;Nanocomposite;Optimisation;Rheology;Stability | Issue Date: | 2025 | Publisher: | Elsevier | Source: | Maphosa, Y. etal. 2025. Bambara groundnut starch-soluble dietary fibre nanocomposite stabilised emulsions: Optimisation of emulsion stability and studies on time-dependent rheological properties. South African Journal of Chemical Engineering, 51: 86-94. [https://doi.org/10.1016/j.sajce.2024.11.004] | Journal: | South African Journal of Chemical Engineering | Abstract: | Due to their inherent thermodynamic instability, emulsions require stabilisers to maintain their integrity and prevent destabilisation. The effect of emulsion components (Bambara groundnut starch-soluble dietary fibre nanocomposite (STASOL), orange oil and water) on the rheological and stability properties of STASOL-stabilised emulsions was optimised. A randomised d-optimal exchange mixture design was used to determine the ratio of STASOL, orange oil and water required for a stable emulsion. The stability of these emulsions was evaluated using the initial mean backscattering index (BSAVO), Turbiscan stability index (TSI) and hysteresis loop area (HLA). The BSAVO (%), TSI and HLA of the emulsions ranged from 50.73 % (14:30:56 STASOL:oil:water) to 70.47 % (20:30:50 STASOL:oil:water), 0.0005 (20:30:50 STASOL:oil:water) to 0.1000 (8:42:50 STASOL:oil:water) and 0.37 Pas-1 (10:32:58 STASOL:oil:water) to 5.69 Pas-1 (20:30:50 STASOL:oil:water), respectively. Emulsions exhibited a direct relationship between STASOL concentration and stability metrics, with the highest stability achieved at 20 % STASOL concentration, 30 % orange oil and 50 % water. An increase in STASOL concentration coupled with a decrease in oil concentration results in a stable emulsion. Numerical optimisation and experimental validation confirmed the effectiveness of the selected formulation, demonstrating STASOL's potential as a natural stabiliser in beverage emulsions and its ability to enhance stability compared to synthetic alternatives. | URI: | http://hdl.handle.net/11189/10641 | ISSN: | 1026-9185 (Online) | DOI: | https://doi.org/10.1016/j.sajce.2024.11.004 |
| Appears in Collections: | Eng - Journal articles (DHET subsidised) |
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| Bambara_groundnut.pdf | 1.98 MB | Adobe PDF | View/Open |
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