Aplikasi Metode Microwave Hydrodistillation pada Ekstraksi Minyak Atsiri dari Bunga Kamboja (Plumeria alba)

Nove Kartika Erliyanti, Erwan Adi Saputro, Rachmad Ramadhan Yogaswara, Elsa Rosyidah

Abstract


The aim of this study is to determine the effect of microwave power and solvent volume to the density of Frangipani essential oil, and to determine the yield effect of mass of raw material on Frangipani essential oil. Frangipani flowers that have been cut in the size of ± 2 cm are extracted in the microwave with a mass of 25 gr and 50 gr, volume of solvents is 300, 400, 500, and 600 ml. The extraction process uses microwave power of 300, 450, and 600 watt and the extraction time is three hours. The results showed that the effect of microwave power and the volume of solvent had a significant effect on the density of Frangipani flower essential oils. The result showed that the density is increase when the microwave power and the volume of solvent increase. The highest density is produced at 600-watt microwave power, 600 ml solvent volume, and 50 gram of Frangipani flower mass that is equal to 0.904 gram/ml. Yield decreases with increasing mass of raw material used. The highest yield was produced at 600-watt microwave power, 600 ml solvent volume, and 25-gram Frangipani mass, which is equal to 1.612%.C


Keywords


Frangipani flower, hydrodistillation extraction, microwave, essential oil.

References


M. A. Setyawan, M. Zakariyya, and Mahfud, “Pengambilan Minyak Atsiri dari Bunga Kenanga Menggunakan Metode Hydro-Distillation dengan Pemanas Microwave,” J. Tek. Pomits, vol. 2, no. 2, pp. 282–285, 2013.

S. Kumari, A. Mazumder, and S. Bhattacharya, “In-vitro antifungal activity of the essential oil of flowers of Plumeria alba Linn.(Apocynaceae),” Int. J. PharmTech Res., vol. 4, no. 1, pp. 208–212, 2012.

Z. Zaheer, A. G. Konale, K. A. Patel, W. Subur Khan, and M. N. Farooqui, “PLUMERIA RUBRA LINN. : AN INDIAN MEDICINAL PLANT,” Int. J. Pharm. Ther., vol. 1, no. 2, pp. 116–119, 2010.

A. Farooque, A. Mazumder, S. Shambhawee, and R. Mazumder, “Review on plumeria acuminata,” Int. J. Res. Pharm. Chem., vol. 2, no. 2, pp. 467–469, 2012.

N. Erliyanti and E. Rosyidah, “Pengaruh Daya Microwave terhadap Yield pada Ekstraksi Minyak Atsiri dari Bunga Kamboja (Plumeria Alba) menggunakan Metode Microwave Hydrodistillation,” J. Rekayasa Mesin, vol. 8, no. 3, pp. 175–178, 2017.

H. Firdaus, A. D. Saputro, M. Mahfud, and P. Prihatini, “Pengambilan Minyak dari Bunga Kamboja dengan Metode Distilasi Air ( Water Distillation ),” J. POMITS, vol. 1, no. 2, pp. 4–6, 2011.

P. Pitpiangchan et al., “Comparative study of scented compound extraction from Plumeria obtusa L.,” Kasetsart J. - Nat. Sci., vol. 43, no. 5 SUPPL., pp. 189–196, 2009.

M. A. Ferhat, B. Y. Meklati, J. Smadja, and F. Chemat, “An improved microwave Clevenger apparatus for distillation of essential oils from orange peel,” J. Chromatogr. A, vol. 1112, no. 1–2, pp. 121–126, 2006.

E. E. Stashenko, B. E. Jaramillo, and J. R. Martínez, “Comparison of different extraction methods for the analysis of volatile secondary metabolites of Lippia alba (Mill.) N.E. Brown, grown in Colombia, and evaluation of its in vitro antioxidant activity,” J. Chromatogr. A, vol. 1025, no. 1, pp. 93–103, 2004.

M. T. Golmakani and K. Rezaei, “Comparison of microwave-assisted hydrodistillation withthe traditional hydrodistillation method in the extractionof essential oils from Thymus vulgaris L.,” Food Chem., vol. 109, no. 4, pp. 925–930, 2008.

Megawati and S. W. Dwi Saputra, “MINYAK ATSIRI DARI KAMBOJA KUNING, PUTIH, DAN MERAH DARI EKSTRAKSI DENGAN N-HEKSANA,” J. Bahan Alam Terbarukan, vol. 1, no. 1, pp. 25–31, 2012.

H. S. Kusuma and M. Mahfud, “Microwave hydrodistillation for extraction of essential oil from Pogostemon cablin Benth: Analysis and modelling of extraction kinetics,” J. Appl. Res. Med. Aromat. Plants, vol. 4, pp. 46–54, 2017.




DOI: https://doi.org/10.31284/j.iptek.2020.v24i1.865

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