Microwave-assisted extraction and optimization of pectin from Aegle marmelos using response surface methodology and metaheuristic algorithms

The present study aimed to evaluate the microwave-assisted extraction (MAE) of pectin from Aegle marmelos peel. The response surface methodology (RSM), genetic algorithm (GA), and particle swarm optimization (PSO) were used to optimize the process parameters to obtain a higher pectin yield. The effect of irradiation time (5–25 min), solid-to-liquid ratio (5–25 mL g −1 ), microwave power (150–750 W), and pH (1.0–3.0) was investigated. The results showed that the RSM, GA, and PSO models provided the best predicted optimum yields of pectin, namely 13.52%, 18.12%, and 17.97%, respectively. The optimum conditions were experimentally validated, showing good agreement with predictions ( p > 0.05). Comprehensive characterization confirmed the preserved structural and physicochemical properties of the pectin, with a galacturonic acid content of 72.0 ± 0.22%. Functional evaluation revealed strong emulsifying activity (89.21%), oil-holding capacity (1.56 g g −1 ), and water-holding capacity (0.48 g g −1 ). Antioxidant and antinutritional analyses supported its potential for food and pharmaceutical applications, while its structural, physicochemical, and functional properties demonstrated similarity to commercial pectin, highlighting its sustainability.

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Publication Details

Journal
npj Science of Food
Published
2026-09-15
DOI
https://doi.org/10.1038/s41538-026-01128-4
Primary Topic
Polysaccharides and Plant Cell Walls
Type
article
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article

Microwave-assisted extraction and optimization of pectin from Aegle marmelos using response surface methodology and metaheuristic algorithms

Snigdha Satabdi Dixit, Ganesh Moorthy I, Muruganandam L
npj Science of Food
Polysaccharides and Plant Cell Walls
article

Microwave-assisted extraction and optimization of pectin from Aegle marmelos using response surface methodology and metaheuristic algorithms

Snigdha Satabdi Dixit, Ganesh Moorthy I, Muruganandam L
article en

Abstract

The present study aimed to evaluate the microwave-assisted extraction (MAE) of pectin from Aegle marmelos peel. The response surface methodology (RSM), genetic algorithm (GA), and particle swarm optimization (PSO) were used to optimize the process parameters to obtain a higher pectin yield. The effect of irradiation time (5–25 min), solid-to-liquid ratio (5–25 mL g −1 ), microwave power (150–750 W), and pH (1.0–3.0) was investigated. The results showed that the RSM, GA, and PSO models provided the best predicted optimum yields of pectin, namely 13.52%, 18.12%, and 17.97%, respectively. The optimum conditions were experimentally validated, showing good agreement with predictions ( p > 0.05). Comprehensive characterization confirmed the preserved structural and physicochemical properties of the pectin, with a galacturonic acid content of 72.0 ± 0.22%. Functional evaluation revealed strong emulsifying activity (89.21%), oil-holding capacity (1.56 g g −1 ), and water-holding capacity (0.48 g g −1 ). Antioxidant and antinutritional analyses supported its potential for food and pharmaceutical applications, while its structural, physicochemical, and functional properties demonstrated similarity to commercial pectin, highlighting its sustainability.

npj Science of Food
Vellore Institute of Technology University (IN)
Zero hunger
Openalex Percentile: Top 13%
Polysaccharides and Plant Cell Walls
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