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International Journal Of Horticulture, Agriculture And Food Science(IJHAF)

Effect of Ozone Treatment on Vitamin C Levels of Strawberry (Fragaria x ananassa) with different storage temperatures

Nurzakiyyah , Erma Prihastanti , Endah Dwi Hastuti , Muhammad Nur DEA


International Journal of Horticulture, Agriculture and Food science(IJHAF), Vol-6,Issue-1, January - February 2022, Pages 1-4, 10.22161/ijhaf.6.1.1

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Article Info: Received: 21 Nov 2020; Received in revised form: 30 Dec 2021; Accepted: 10 Jan 2022; Available online: 20 Jan 2022

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Strawberries contain many nutritional values that are good for the health of the body, one of which is vitamin C. Fresh strawberries contain high levels of vitamin C. During storage, it is easily oxidized because it is unstable, causing a decrease in vitamin C levels. The unstable nature of vitamin C is a problem that needs attention and proper postharvest handling is given to maintain the vitamin C content in strawberries. The purpose of this study is to maintain the vitamin C content of strawberries after storage by using ozone water immersion treatment with different storage periods. The research method used is a factorial Completely Randomized Design with a factorial pattern. The first factor is ozone (0 ppm, 0.05 ppm, 0.08 ppm, and 0.1 ppm). The second factor is fruit storage temperature (27°C and 10°C). The results showed that during storage of strawberry vitamin C there was an increase and decrease. The initial content of vitamin C in strawberries used is 927.13 mg/100g, increased to 1350.03 mg/100g in the ozone treatment of 0.05 ppm at 10°C storage and decreased to 0.08 ppm ozone treatment at 10°C storage to 848, 39mg/100g. The best treatment that can maintain vitamin C levels and increase vitamin C levels during storage is treatment with 0.05 ppm ozone with 10°C storage.

Ozone, Strawberries, and Vitamin C.

[1] Sukasih, Erni and Setyadjit. 2019. Strawberry Fresh Fruit Handling Technology To Maintain Quality. Agricultural Research and Development Journal. Vol 38 No 1
[2] Riyanto, Dwi PA 2016. Comparative Study of Strawberry (Fragaria x ananassa) with Binahong Leaves ( Anredera cordifolia (Ten.) Steenis ) and stabilizer types on the characteristics of mixed fruit. http://repository.unpas.ac.id/15289/1/ARTIKEL.pdf. Retrieved 05-19-2019
[3] Martin, D.W. 1981. Harper’s Review of Biochemistry. 18thed, Los Altos, California 94022, Lange Medical Publications
[4] Harper. L. J. , B. J. Deaton & J. A Driskel. 1986. Pangan, Gizi dan Pertanian (Suhardjo, penerjemah). UI Press. Jakarta.
[5] Pavlovska, G. & S. Tanevska, 2011, Influence of Temperature and Humidity on The Degradation Process of Ascorbic Acid in Vitamin C Chewable Tablets. J Therm Anal Calorim. DOI 10.1007/s10973-011-2151-z.
[6] Ahmad U. 2013. Postharvest Handling Technology of Fruits and Vegetables. Graha Ilmu Yogyakarta.
[7] Dahlan., Sakinah, A., Lutfi, M and Hendrawan, Y. 2014. Physical and Chemical Characteristics Test on Strawberries ( Fragaria L) by Fast Freezing Using Liquid Nitrogen Immersion Method. Journal of Tropical Commodity Bioprocesses. 2(2)
[8] Asgar, A., Musaddad, D., Setyabudi, D. A and Hasan, ZH 2015. Ozonization Technology to Maintain the Freshness of Chili Cultivar Kencana During Storage. Journal of Agricultural Postharvest Research .12(1): 20-26
[9] Aafia, S., Rouf, A., Kanojia, V and Ayaz, Q. 2018. Ozone Treatment of Shelf of Temperate and Tropical Fruits. International Journal of Pure and Applied Bioscience. 6(2):298-303.
[10] Supriyanti, FMT & Fitria, PF 2014. Lemon Fortification in Cottage Cheese Production and Analysis of its Nutritional Content. Department of Chemistry Education, FPMIPA, UPI. Proceedings of the IX National Science and Science Education Seminar, Faculty of Science and Mathematics, SWCU 5 (1), ISSN: 2087-0922
[11] Pantastico, E. R. 1989. Fisiologi Pasca Panen, Penanganan dan Pemanfaatan Buah-buahan dan Sayur-sayuran Tropik dan Subtropik. Yogyakarta: UGM Press
[12] Kartika, R. 2010. Effect of Addition of CaCo3 and Storage Time on Vitamin C Levels in the Inhibition Process of Tomato Fruit Ripening (Lycopersicum esculentum Mill). Faculty of Mathematics and Natural Sciences, Mulawarman University. Journal of Chemistry Mulawarman 8 (1):28-34.
[13] Safaryani, N., S. Haryanti dan E. D. Hastuti. 2007. Pengaruh Suhu dan Lama Penyimpanan terhadap Penurunan Kadar Vitamin C Brokoli (Brassica oleracea L). Jurusan Biologi FMIPA UNDIP. Jurnal Buletin Anatomi dan Fisiologi 15 (2) : 39-46.
[14] Setiasih, Imas S., Rialita, Tita., Sumanti D.M., Hanidah, In in., dan Zulhaida, Gemma. Pengaruh Ozonisasi terhadap kekerasan, Kadar Air, Vitamin C dan Total Mikroorganisme pada Belimbing (Averrhoa carambola) Selama Penyimpanan. Agritech. 38(2) : 450-455
[15] Helmiyesi, Hastuti, R. B., dan Prihastanti, E. 2008. Pengaruh lama penyimpanan terhadap kadar gula dan vitamin C pada buah jeruk siam. %XOHWLQ$QDWRPLGDQ)LVLRORJL, XVI (2).