The Effectiveness of Pineapple Extract (Ananas Comosus) and Kesum Leaves (Polygonus Minus) on the Quality of Coconut Oil (Coconus Nucifera)

Authors

  • Hendra Budi Sungkawa Department of Medical Laboratory Technology, Poltekkes Kemenkes Pontianak, Pontianak, West Kalimantan, Indonesia.
  • Wahdaniah Wahdaniah Department of Medical Laboratory Technology, Poltekkes Kemenkes Pontianak, Pontianak, West Kalimantan, Indonesia.
  • Herlinda Djohan Department of Medical Laboratory Technology, Poltekkes Kemenkes Pontianak, Pontianak, West Kalimantan, Indonesia.

DOI:

https://doi.org/10.31965/infokes.Vol19.Iss2.519

Keywords:

Oil Quality, Coconut Oil, Pineapple, Kesum Leaves

Abstract

The processed oil from the coconut plant is generally understood as coconut oil. A method is required to produce a product with a higher oil extraction rate and is able to reduce the water content and free fatty acids in the coconut oil production. It is also necessary to add substances that can delay or prevent fat oxidation reactions by generating substances in the form of antioxidants. The method that can be implemented is the enzymatic method employing the bromelain enzyme in a pineapple with the addition of an antioxidants substance from the kesum  leaf. The objective of this research is to describe the quality of coconut oil after the addition of pineapple (ananas comosus) and kesum leaves (polygonus minus) extracts. The parameters for describing the quality of the oil are the organoleptic test, the degree of acidity, the oil extract rate, the peroxide number, the saponification number, and the acid number. This research is a quasi-experiment. The samples in this research were coconut oil without the addition of pineapple fruit extract, coconut oil with the addition of pineapple fruit extract without the addition of kesum leaves, and coconut oil with the addition of pineapple fruit extract and kesum leaves as much as 20gr, 30gr and 40gr. Based on the statistical results of the linear regression test, it was discovered that p-value = 0.000 <0.05, so it was concluded that there was an effect of the addition of pineapple fruit and leaves of kesum on acid number content with an effect of 76.4% on the acid number, 71.4% on the peroxide number, and 81.5% to the saponification number. It is recommended to test the water content, free fatty acids, and iodine number.

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References

Ahmad, R., Sahidin, I., Taher, M., Low, C., Noor, N. M., Sillapachaiyaporn, C., … Baharum, S. N. (2018). Polygonumins A, a newly isolated compound from the stem of Polygonum minus Huds with potential medicinal activities. Scientific Reports, 8(1), 1–15. doi: https://doi.org/10.1038/s41598-018-22485-5

Ariono, D., Christian, M., Irfan, P., Suharno, S. M., & Tamara, A. (2017). Pengaruh Penambahan Ekstrak Bahan Alami Terhadap Laju Oksidasi Minyak Kelapa. Reaktor, 17(13), 157–165. doi: https://doi.org/10.14710/reaktor.17.3.157-165

Azman, A. N., Sumarto, & Edison. (2018). Ekstraksi Dan Karakteristik Minyak Ikan Sembilang (Paraplotosus albilabris) Dengan Bahan Pelarut Yang Berbeda. Berkala Perikanan Terubuk, 46(1), 19–27.

Badan Standardisasi Nasional. (2013). SNI 3741. Jakarta: Badan Standarisasi Nasional.

Dewi, S., Asseggaf, S. N., & Natalia, D. (2019). Efek Ekstrak Etanol Daun Kesum (Polygonum minus Huds .) sebagai Antifungi terhadap Trichophyton rubrum. Jurnal Kesehatan Andalas, 8(2), 198–203. doi: https://doi.org/10.25077/jka.v8i2.992

Effendi, A. M., Winarni, & Sumarni, W. (2012). Optimalisasi Penggunaan Enzim Bromelin dari Sari Bonggol Nanas Dalam Pembuatan Minyak Kelapa. Indonesian Journal of Chemical Science, 1(1), 1–6.

Hernawati, D., & Jirana. (2018). Analisis Asam Lemak Bebas dan Kolesterol pada Minyak Kelapa Hasil Fermentasi. Saintifik, 4(2), 194–199. doi: https://doi.org/10.31605/saintifik.v4i2.215

Khoirunnisa, Z., Wardana, A. S., & Rauf, R. (2019). Angka Asam Dan Peroksida Minyak Jelantah Dari Penggorengan Lele Secara Berulang. Jurnal Kesehatan, 12(2), 81–90. doi: https://doi.org/10.23917/jk.v12i2.9764

Kurnianingsih, N. P., Maherawati, M., & Rahayuni, T. (2020). Traditional Coconut Oil Purification Using Activated Charcoal Coconut Shell Adsorbents. Agrisaintifika: Jurnal Ilmu-Ilmu Pertanian, 4(1), 37-45. doi: https://doi.org/10.32585/ags.v4i1.848

Lempang, I. R., Fatimawali, & Pelealu, N. C. (2016). Uji Kualitas Minyak Goreng Curah Dan Minyak Goreng Kemasan Di Manado. PHARMACON, 5(4), 155–161.

Mahmud, N. R. A., Muhammad, N., & Nurhalifah. (2021). Effect of the Adding of Natural Antioxidant in the Stored Traditional Coconut Oil on the Free Fatty Acid Value. Proc. Internat. Conf. Sci. Engin, 4(February), 76–79.

Male, K. S., Nuryanti, S., & Rahmawati, S. (2014). Ekstrak Enzim Protease Dari Daun Palado (Agave Angustifolia) Dan Pemanfaatannya Dalam Proses Pembuatan Virgin Coconut Oil. Jurnal Akademika Kimia, 3(3), 111–120.

Ngatemin, Nurrahman, & Isworo, J. T. (2013). Pengaruh Lama Fermentasi Pada Produksi Minyak Kelapa Murni (Virgin Coconut Oil) Terhadap Sifat Fisik, Kimia, dan Organik. Jurnal Pangan Dan Gizi, 4(2), 9–18.

Novitriani, K., & Sapitri, N. (2014). Efektivitas Air Perasan Buah Nanas (Ananas comocus) Pada Peningkatan Nilai Mutu Minyak Kelapa (Coconus nucifera). Jurnal Kesehatan Bakti Tunas Husada, 11(1), 24–29. doi: http://dx.doi.org/10.36465/jkbth.v11i1.41

Palilingan, S., & Pungus, M. (2018). Produksi Enzimatis Virgin Coconut Oil ( VCO ) Dengan Enzim Bromelin Serta Pemurniannya Menggunakan Adsorben Zeolit. Fullerene Journal of Chemistry, 3(2), 70–74. doi: https://doi.org/10.37033/fjc.v3i2.41

Prihanani, P., Sagala, D., & Yonadi, Y. (2013). Studi Pembuatan Minyak Kelapa Murni secara Enzimatis dengan Menggunakan Berbagai Tingkat Konsentrasi Enzim Nanas pada Dua Jenis Kelapa. Jurnal Agroqua, 11(1), 24–28. doi: https://doi.org/10.32663/ja.v11i1.42

Purwaningsih, D. Y., Zuchrilah, D. R., & Nurmala, I. (2019). Peningkatkan Mutu Minyak Goreng Curah dengan Penambahan Ekstrak Kulit Pisang Raja Sebagai Antioksidan Alami. Reka Buana, 4(1), 22–29. doi: http://dx.doi.org/10.33366/rekabuana.v4i1.1058

Ratnawaty, G. J., & Indrawati, R. (2021). The Effectiveness of Kesum Leaves (Polygonum Minus) In Reducing of Free Fatty Acids In Used Cooking Oil. INTEK: Jurnal Penelitian, 7(2), 167-170. doi: http://dx.doi.org/10.31963/intek.v7i2.2715.

Tomagola, N., Muthiawati, N., Wiyani, L., & Jaya, F. (2016). Aktivitas Antioksidan Ekstrak Kayu Manis (Cinnamomum burmanii) Untuk Mengatasi Ketengikan (Rancidity) Pada Minyak Goreng. Chemical Process Engineering, 1(2), 7–15. doi: https://doi.org/10.33536/jcpe.v1i2.65

Wahyusi, K. N., V. P. R. W., & Perdana, D. (2020). Making Virgin Coconut Oil (VCO) with Fermentation Process Using Fermipan and Addition of Pineapple Extract. NST Proceedings, 2020 (1st International Conference Eco-Innovation in Science, Engineering, and Technology), 238–242. doi: https://doi.org/10.11594/nstp.2020.0538

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Published

2021-12-31

How to Cite

Sungkawa, H. B. ., Wahdaniah, W., & Djohan, H. . (2021). The Effectiveness of Pineapple Extract (Ananas Comosus) and Kesum Leaves (Polygonus Minus) on the Quality of Coconut Oil (Coconus Nucifera). JURNAL INFO KESEHATAN, 19(2), 134–143. https://doi.org/10.31965/infokes.Vol19.Iss2.519

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