EFFECT OF ADDITION OF COCONUT WATER AS ENRICHMENT OF Spirulina platensis GROWTH MEDIA IN LABORATORY SCALE

  • Aisyah Khasena Department of Marine Science, Faculty of Fisheries and Marine, Universitas Riau
  • Irvina Nurrachmi Department of Marine Science, Faculty of Fisheries and Marine, Universitas Riau
  • Zulkifli Zulkifli Department of Marine Science, Faculty of Fisheries and Marine, Universitas Riau
Keywords: Spirulina platensis, Coconut water, Density, Growth

Abstract

Spirulina platensis is a microalga that has high economic value. The growth of S.platensis is influenced by environmental conditions and nutrients. The objectives of this study are to determine the best concentration of coconut water for media of S.platensis growth. The study was conducted at the Natural Feed Laboratory of the Brackish Water Aquaculture Center (BPBAP) Ujung Batee Aceh. This research is an experimental study using a completely randomized design (CRD) consisting of 3 levels of treatment and control using coconut water of the media with concentrations of 3%, 5%, and 7% with 3 replications. The highest cell density level of S.platensis reached 83.102 cells/ml in treatment A (3%), in treatment B (5%) 73.975 cells/ml, the density in the control treatment reached 70.850 cells/ml, and in treatment, C (7%) cell density only reached 54.658 cells/ml. The results of the ANOVA test on day 2, day 3, day 5, and day 6 showed that the addition of coconut water with different concentrations had a significant effect (p<0.05) on the growth of S.platensis

Downloads

Download data is not yet available.

References

Jongkon, P., Siripen, T., Richard, D.L. Phytoremediation of Kitchen Wastewater by Spirulina platensis (Nordstedt) Geiteler: Pigment Content, Production Variable Cost and Nutritonal Value. Maejo International Journal of Science and Technology, 2008; 2(2): 159 – 171

Putri, B., Vickry, H.A., Maharani, W.H. Pemanfaatan Air Kelapa sebagai Pengkaya Media Pertumbuhan Mikroalga Tetraselmis sp. Fakultas Pertanian. Prosiding Seminar Internasional dan Rapat Tahunan Badan Kerja Sama Perguruan Tinggi Negeri Wilayah Barat. Universitas Lampung: Lampung. 2013.

Jadid, R., Dewiyanti, I., Nurfadillah, N. Penambahan Air Kelapa pada Media Pertumbuhan Populasi Nannochloropsis sp. Jurnal Ilmiah Mahasiswa Kelautan dan Perikanan Unsyiah, 2017; 2(1): 113-118.

Edhy, W.A., Pribadi, J., Kuniawan. Plankton di Lingkungan PT. Central Pertiwi Bahari Suatu Pendekatan Biologi dan Managemen dalam Budidaya Udang. Laboratorium Central Departement Aquaculture Division PT. Central Pertiwi Bahari. 2003.

Sari, L.A., Masitah, E.D., Satyantini, W.H., Mukti, A.T. Pengaruh Penambahan FeCl3 Terhadap Pertumbuhan Spirulina plantesis yang dikultur pada Media Asal Blotong Kering. Jurnal Ilmiah Perikanan Kelautan, 2012; 1(2): 1-13

Sopian, T., Junaidi, M., Azhar, F. Laju Pertumbuhan Chaetoceros sp. pada Pemeliharaan dengan Pengaruh Warna Cahaya Lampu yang Berbeda. Jurnal Kelautan, 2019; 12(1): 36-44

Brock, T.D., Madigan, M.T. Biology of Microorganisms 14th ed. Prentice-Hall International, New Jersey. 2018.

Mukhlis, A., Abidin, Z., Rahman, I. Pengaruh Konsentrasi Pupuk Amonium Sulfat terhadap Pertumbuhan Populasi Sel Nannochloropsis sp. Jurnal Biowallacea, 2017; 3(3): 149-155.

Madigan, M.T., Martinko, J.M., Stahl, D.A., Clark, D.P. Brock Biology of Microorganisms 13th ed. Pearson Education Inc. San Francisco (USA). 2011.

Sayedin, F., Kermanshahi, A., He, Q.S., Tibbetts, S.M., Lalonde., Brar, S.K. Microalgae Cultivation in Thin Stillage Anaerobic Digestate for Nutrient Recovery and Bioproduct Production. Algal Research, 2020; 47: 1-11.

Hariyati, R. Pertumbuhan dan Biomassa Spirulina sp. dalam Skala Laboratoris. Bioma, 2008; 10(1): 19-22.

Irianto, D. Pemanfaatan Mikroalga Laut Scenedesmus sp. sebagai Penyerap Bahan Kimia Berbahaya Dalam Air Limbah Industri. Institut Pertanian Bogor: Bogor. 2011.

Hu, H., Gao, K. Optimization of Growth and Fatty Acid Composition of a Unicellular Marine Picoplankton, Nannochloropsis sp., with Enriched Carbon Sources. Biotechnol Letters, 2004; 25: 421–425.

Chiu, S., Kao, C., Chen, T., Chang, Y., Kuo, C., Lin, C. Cultivation of Microalgal Chlorella sp. for Biomass and Lipid Production Using Wastewater as Nutrient Resource. Bioresource Technology, 2014; 184: 179-189.

Afriza, Z., Diansyah, G., Purwiyanto, A.I.S. Pengaruh Pemberian Pupuk Urea (CH4N2O) dengan Dosis Berbeda terhadap Kepadatan Sel dan Laju Pertumbuhan Porphyridium sp. pada Kultur Fitoplankton Skala Laboratorium. Maspari Journal, 2015; 7(2): 33-40

Irhamni., Elvitriana., Viena, V. Kultivasi Mikroalga Hijau pada Sumber Nitrogen Berbeda untuk Ekstraksi Lipida. Jurnal Purifikasi, 2014; 14(2): 99-105.

Fakhri, M., Antika, P.W., Ekawati, A.W., Arifin, N.B. Pertumbuhan, Kandungan Pigmen, dan Protein Spirulina platensis yang Dikultur pada Ca(NO3)2 dengan Dosis yang Berbeda. Journal of Aquaculture and Fish Health, 2020; 9(1): 38-47.

Arfah, Y., Cokrowati, N., Mukhlis, A. Pengaruh Konsentrasi Pupuk Urea terhadap Pertumbuhan Populasi Sel Nannochloropsis sp. Jurnal Kelautan, 2019; 12(1): 45-51.

Umainana, M.R., Mubarak, A.S., Masitha, E.D. Pengaruh Konsentrasi Pupuk Daun Turi (Sesbania gandiflora) terhadap Populasi Chlorella sp. Journal of Aquaculture and Fish Health, 2012; 1(1): 1-9.

Published
2023-08-03
How to Cite
Khasena, A., Nurrachmi, I., & Zulkifli, Z. (2023). EFFECT OF ADDITION OF COCONUT WATER AS ENRICHMENT OF Spirulina platensis GROWTH MEDIA IN LABORATORY SCALE. Asian Journal of Aquatic Sciences, 6(2), 180-186. https://doi.org/10.31258/ajoas.6.2.180-186
Section
Articles