Enhancing pectin extraction from orange peel through citric acid-assisted optimization based on a dual response
- ,
- José Juan Pablo Pizaña-Aranda,
- Diana Ramírez-Gamboa,
- Claudia Angélica Ramírez-Herrera,
- Rafael G. Araújo,
- Elda A. Flores-Contreras
- Instituto Tecnologico de Estudios Superiores de Monterrey,
- Tecnologico de Monterrey,
- School of Engineering and Sciences
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Abstract
Pectin is widely used in several products in the industry. Conventionally, strong and harmful acids are used for its extraction. This study optimized the extraction of orange peel's pectin using citric acid, considering yield and degree of esterification (DE) as response variables. Proximal analyses were performed, and the samples were subjected to a Box-Behnken design on three central points, considering as variables the temperature, time, and pH. The results of proximate analyses of the orange peels revealed 11.76 % moisture content, 87.26 % volatiles, 0.09 % ash, 50.45 % soluble carbohydrates, 70.60 % total carbohydrates, 0.89 % fixed carbon, 5.35 % lipids, and 36.75 mg GAE/g of phenolic compounds. The resulting second-order polynomial model described the relation of the input and output variables related to each other. The best performance to obtain a higher yield (18.18 %) of high methoxyl pectin (DE 50 %) was set at 100 °C/30 min/pH 2.48. Pectin showed antioxidant properties by ABTS and DPPH assays and similar thermal properties to the commercial polymer. Its equivalent weight was 1219.51 mol/g, and the methoxyl and anhydrouronic acid were 2.23 and 67.10 %, respectively. Hence, pectin extraction with citric acid results in a high-quality polymer and could be used as a gelling agent, stabilizer, or texturizer in food products.
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Original language
EnglishArticle number
130230Journal (Volume, Issue Number)
International Journal of Biological Macromolecules (Volume 263)Publication milestones
- Published - 04/2024
Publication status
ISSN
0141-8130Publication IDs
- Scopus: 85185566822
- PubMed: 38373564
