Penggunaan Pelarut Acidified Water dalam Perolehan Antosianin dari Kulit Buah Naga Merah menggunakan Microwave Assisted Extraction (MAE)

Author


Qifni Yasa Ash Shiddiqi(1Mail), Tiara Ariani Putri(2), Andini Hizbiyati(3), Bambang Hari Prabowo(4), Nadiem Anwar(5), Anisya Nurramdhania(6), Fatiha Apriliani(7),
(1) Universitas Jenderal Achmad Yani, Indonesia
(2) ,
(3) ,
(4) ,
(5) ,
(6) ,
(7) ,

Mail Corresponding Author
Article Analytic
  [File Size: 240KB]  Language: en
Available online: 2025-08-04  |  Published : 2025-08-04
Copyright (c) 2025 Qifni Yasa Ash Ash Shiddiqi
Article can trace at:

Article Metrics

Abstract Views: 60 times PDF Downloaded: 36 times

Abstract


Dragon fruit peels are agricultural waste products that weigh 30-35% of the fruit. Dragon fruit peels contain anthocyanin natural dyes which are quite high. Anthocyanins are a class of flavonoid compounds which are widely divided into plant polyphenols. Anthocyanins are stable at pH 3.5 and temperature 50. The purpose of this study is to determine the anthocyanin content of dragon fruit peels and also to know the quality of natural dyes produced from anthocyanin dragon fruit peels. Intake of anthocyanin dyes is carried out by the extraction method followed by a distillation process so that the anthocyanin extract becomes more concentrated and can be applied directly as a natural dye. The extraction technique used is Microwave Assisted Extraction (MAE) with acidified water solvent. The acid used is citric acid 10% with a ratio of aquades: citric acid 10% is 3:1 and 8:1 with extraction time of 1,3,5 minutes at 350 watts of power. The content of anthocyanin was analyzed using a UV-VIS spectrophotometer. The best results of the content of anthocyanin were at the extraction time of 5 minutes with a solvent ratio of 3: 1 with a concentration of 36.40 mg /100 g.

Keywords


Acidified Water, Antosianin, Microwave Assisted Extraction (MAE)

References


Ash Shiddiqi, Q. Y., Nugroho, F. A., Mukhaimin, I., Haldien, S., & Parida, O. (2018). Subcritical Water Extraction Of Anthocyanins From Red Dragonfruit Pericarp (Hylocereus Polyrhizus).

Kang, H. J., Ko, M. J., & Chung, M. S. (2021). Anthocyanin Structure and pH Dependent Extraction Characteristics from Blueberries (Vaccinium corymbosum) and Chokeberries (Aronia melanocarpa) in Subcritical Water State. Foods, 10(3), 527. https://doi.org/10.3390/FOODS10030527

Khoo, H. E., Azlan, A., Tang, S. T., & Lim, S. M. (2017). Anthocyanidins and anthocyanins: colored pigments as food, pharmaceutical ingredients, and the potential health benefits. Food & Nutrition Research, 61(1), 1361779. https://doi.org/10.1080/16546628.2017.1361779

Kiranmai, M. (2022). Review of exotic fruit: Nutritional composition, nutraceutical properties and food application of Dragon fruit (Hylocereus spp.). The Pharma Innovation, 11(6).

Luu, T. T. H., Le, T. L., Huynh, N., & Quintela-Alonso, P. (2021). Dragon fruit: A review of health benefits and nutrients and its sustainable development under climate changes in Vietnam. In Czech Journal of Food Sciences (Vol. 39, Issue 2). https://doi.org/10.17221/139/2020-CJFS

Mattioli, R., Francioso, A., Mosca, L., & Silva, P. (2020). Anthocyanins: A Comprehensive Review of Their Chemical Properties and Health Effects on Cardiovascular and Neurodegenerative Diseases. Molecules 2020, Vol. 25, Page 3809, 25(17), 3809. https://doi.org/10.3390/MOLECULES25173809

MUYASSAROH, A., SUPRIATNA, A., & HERNANI, H. (2024). Extraction of Anthocyanin Pigments from the Peel of Dragon Fruit for Food Coloring. The Eurasia Proceedings of Science Technology Engineering and Mathematics, 28, 167174. https://doi.org/10.55549/EPSTEM.1519420

Nugraheni, K., Putriningtyas, N. D., Fernando, G. S. N., & Bintari, S. H. (2023). The Improvement of Lipid Profiles and Glucose Resistance of Hypercholesterolemic Rats using Tempeh Flour Based-Yoghurt Complemented with Red Pitaya Peel Extract. Biosaintifika, 15(3). https://doi.org/10.15294/biosaintifika.v15i3.47414

Ramli, N. S., Brown, L., Ismail, P., & Rahmat, A. (2014). Effects of red pitaya juice supplementation on cardiovascular and hepatic changes in high-carbohydrate, high-fat diet-induced metabolic syndrome rats. BMC Complementary and Alternative Medicine, 14. https://doi.org/10.1186/1472-6882-14-189

Tena, N., & Asuero, A. G. (2022). Up-To-Date Analysis of the Extraction Methods for Anthocyanins: Principles of the Techniques, Optimization, Technical Progress, and Industrial Application. Antioxidants, 11(2), 286. https://doi.org/10.3390/ANTIOX11020286

Unawahi, S., Widyasanti, A., & Rahimah, S. (2022). Ekstraksi Antosianin Bunga Telang (Clitoria ternatea Linn) dengan Metode Ultrasonik Menggunakan Pelarut Aquades dan Asam Asetat. Jurnal Keteknikan Pertanian Tropis Dan Biosistem, 10(1), 19. https://doi.org/10.21776/UB.JKPTB.2022.010.01.01

Vargas, M. de L. V., Cortez, J. A. T., Duch, E. S., Lizama, A. P., & Mndez, C. H. H. (2013). Extraction and Stability of Anthocyanins Present in the Skin of the Dragon Fruit (<i>Hylocereus undatus</i>). Food and Nutrition Sciences, 04(12). https://doi.org/10.4236/fns.2013.412156

Xue, H., Xu, H., Wang, X., Shen, L., Liu, H., Liu, C., Qin, Q., Zheng, X., & Li, Q. (2018). Effects of Microwave Power on Extraction Kinetic of Anthocyanin from Blueberry Powder considering Absorption of Microwave Energy. Journal of Food Quality, 2018. https://doi.org/10.1155/2018/9680184

Yasa, Q., Shiddiqi, A., Apriyani, R. F., Kusuma, D., & Dwitama Karisma, A. (2021). EKSTRAKSI SENYAWA ANTOSIANIN DARI KULIT BUAH NAGA MERAH (Hylocereus polyrhizus) MENGGUNAKAN METODE MICROWAVE ASSISTED HYDRODISTILLATION (MAHD). Jurnal Chemurgy, 5(1), 3037. https://doi.org/10.30872/CMG.V5I1.5699

Zhou, C., Senadeera, W., Wahia, H., Kabutey, A., Tsholofelo Nthimole, C., Kaseke, T., & Amos Fawole, O. (2024). Exploring the Extraction and Application of Anthocyanins in Food Systems. Processes 2024, Vol. 12, Page 2444, 12(11), 2444. https://doi.org/10.3390/PR12112444


Refbacks

  • There are currently no refbacks.

Creative Commons License
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.