Response surface methodology for optimization studies of hydro-distillation of essential oil from pixie mandarin (Citrus reticulata Blanco) peels

Author:

Dao Tan Phat123,Quyen Ngo Thi Cam123,Nhi Tran Thi Yen123,Nguyen Chi Cuong4,Nguyen Trung Thanh56,Le Xuan Tien67

Affiliation:

1. Institute of Environmental Technology and Sustainable Development , Nguyen Tat Thanh University , Ho Chi Minh City , Vietnam

2. Faculty of Environmental and Food Engineering , Nguyen Tat Thanh University , Ho Chi Minh City , Vietnam

3. Graduate University of Science and Technology Vietnam Academy of Science and Technology , Ha Noi City , Vietnam

4. Faculty of Food Science and Technology , Nong Lam University , Ho Chi Minh City , Vietnam

5. Nanomaterial Laboratory , An Giang University , An Giang Province , Vietnam

6. Vietnam National University Ho Chi Minh City , Ho Chi Minh City , Vietnam

7. Faculty of Chemical Engineering , Ho Chi Minh City University of Technology , Ho Chi Minh City , Vietnam

Abstract

Abstract Essential oil extraction technique from mandarin pixie peels by hydro-distillation is optimized by response surface methodology (RSM). Mathematical techniques were used in experimental design to evaluate the impacts of factors that affect the extraction process and improve the yield of the extraction process. A central mixed design based on influencing variables such as water ratio (3–5 mL/g), temperature (110–130 °C) and extraction time (90–150 min) was adopted with essential oil yield as the target function. Correlation analysis of the mathematical regression model showed that the quadratic polynomial model can be used to optimize hydro-distillation of pixie mandarin oil. The results showed that under the optimum extraction conditions, the highest quantity of essential oils was achieved (7.28 mL/100 g materials). In terms of statistical analysis, the significance levels (p-value <0.05) of the model showed that the experimental results had a good impact between factors. The coefficient of determination indicating the match between the experimental value and the predicted value of the model was high (R2>0.9). The chemical composition of the essential oil was analyzed by Gas Chromatography-Mass Spectrometry, revealing the dominance of limonene content (97.667%), which implies that the essential oil of pixie mandarin could be an alternative source of limonene.

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering,General Chemistry,Biotechnology

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