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Monitoring of Phytoplankton Abundance and Chlorophyll-a Content in the Estuary of Banjar Kemuning River, Sidoarjo Regency, East Java

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Estuaries are coastal areas that have a fairly high fertility rate. This region can be said to be fertile because it is influenced by such physical factors as temperature, turbidity, light, and current as well as such chemical factors as salinity, dissolved oxygen, pH, and nutrient content. The estuary of the Banjar Kemuning River is a coastal area with a lot of human activities, and it is close to the mainland, causing the change in the nutrient content in the waters. The nutrient content in the waters is closely related to the phytoplankton abundance, as the higher the nutrient content in the waters, the greater the phytoplankton abundance and the chlorophyll-a content. The level of chlorophyll-a content in the waters can indirectly be used as an indicator of the phytoplankton abundance, which can determine the level of fertility of these waters. The purpose of this study was to determine the relationship between the phytoplankton abundance and the chlorophyll-a content in the estuary of the Banjar Kemuning River. This study is observational research with data analysis using linear regression, simple correlation (Pearson), and ANOVA. In addition, the data collection was carried out by purposive random sampling at predetermined points of stations. The results of this study indicated that the phytoplankton abundance and the chlorophyll-a content at the estuary of Banjar Kemuning River during different months were significantly different (P < 0.05). The average phytoplankton abundance during the study was 19,256 cells/L, 19,044 cells/L, and 22,613 cells/L, while the average chlorophyll-a content during the study was 0.958 µg/L, 0.998 µg/L, and 1.167 µg/L. The conclusion was drawn that there is a difference between the phytoplankton abundance and the chlorophyll-a content each month and classified into high correlation.
Słowa kluczowe
Rocznik
Strony
29--35
Opis fizyczny
Bibliogr. 44 poz., rys., tab.
Twórcy
  • Aquaculture Study Program, Faculty of Fisheries and Marine, Universitas Airlangga, Surabaya 60115, Indonesia
  • Department of Fish Health Management and Aquaculture, Faculty of Fisheries and Marine, Universitas Airlangga, Surabaya 60115, Indonesia
  • Department of Aquatic Resources Management, Faculty of Fisheries and Marine Science, Universitas Brawijaya, Jl. Veteran Malang 65145, Indonesia
  • Faculty of Fisheries and Food Science, Universiti Malaysia Terengganu, 21030 Kuala Nerus, Terengganu, Malaysia
autor
  • Department of Fish Health Management and Aquaculture, Faculty of Fisheries and Marine, Universitas Airlangga, Surabaya 60115, Indonesia
Bibliografia
  • 1. American Public Health Association (APHA). 2005. Standard Methods for the Examination of Water and Wastewater, 21th Edition. Washington: APHA, AWWA (American Waters Works Association) and WPCF (Water Pollution Control Federation), pages 3 – 42.
  • 2. Anwar A. 2015. Study of Abundance and Vertical Distribution of Phytoplankton in Kuricaddian Waters. Journal of Reverse Diwa, 6(2), 34–40.
  • 3. Arief M., Laksmi L. 2006. Suitability Analysis of Pond Waters in Demak Regency in terms of Chlorophyll-a Value, Surface Water Temperature, and Suspended Solids Using Landsat ETM 7+ Satellite Image Data. Journal of Remote Sensing, 3(1), 108–118.
  • 4. Arinardi O. H., Sutomo A. B., Yusuf S. A., Trimaningsih, E., Asnaryanti., Riyono S. H. 1997. Range of Abundance and Composition of Predominant Plankton in the Waters of Eastern Indonesia. Research and Development Center for Oceanography, Indonesian Institute of Sciences, Jakarta, iv + 137 pages.
  • 5. Arsad S., Zsalzsabil N. A., Prasetiya F. S., Safitri I., Saputra D. K., Musa, M. 2019. Microalga Peryphyton Community on Different Substrates and Its Role as Aquatic Environmental Bioindicator. SAINTEK PERIKANAN: Indonesian Journal of Fisheries Science and Technology, 15(1), 73–79.
  • 6. Azmi, K. A., Arsad, S., Sari, L. A. 2020. The Effect of Commercial Nutrients to Increase the Population of Skeletonema costatum on Laboratory and Mass Scales. IOP Conference Series: Earth and Environmental Science, 441(1), 012039.
  • 7. Damayanti, K. Y., Mubarak, A. S., Sari, L. A. 2020. The Effect of Giving Fermented Rice Bran Suspension on Fecundity and Production of Moina macrocopa Off Spring Per Parent. IOP Conference Series: Earth and Environmental Science, 441(1), 012156.
  • 8. Dwiardani, K. H., Sari, L. A., Sari, P. D. W., Nindarwi, D. D., Arsad, S. 2020. The Effect of Feed Larvae Chironomus sp. and High Pellet Protein to Seedling Goldfish (Carassius auratus). IOP Conference Series: Earth and Environmental Science. 441(1), 012015.
  • 9. Fachrul, M. F. 2007. Composition and Modern Abundance of Phytoplankton in Ciliwung River Waters, Jakarta. Journal of Biodiversity, 9(4), 32–39.
  • 10. Faturohman, I., Sunarto., Nurruhwati, I. 2016. Correlation of Plankton Abundance with Sea Water Temperature around PLTU Cirebon. Journal of Marine Fisheries, 7(1), 115–122.
  • 11. Foony, J., Hanif, B. 2011. Study of Phosphate, Nitrate and Silicate Nutrients in the Waters of the Matasiri Islands, South Kalimantan. Journal of Marine Science, 16(3), 135–142.
  • 12. Hoguane, A. M., Ezidio, D. L. C., Gammelsrød, T. 2012. Influence of Rainfall on Tropical Coastal Artisanal Fisheries A Case Study of Northern Mozambique. Journal of Integrated Coastal Zone Management, 12(4), 477–482.
  • 13. Holy, N. H., Sari, L. A. 2020. The Effect of Catfish and Chicken Cultivation Waste to Daphnia sp. Culture. IOP Conference Series: Earth and Environmental Science, 441(1), 012057.
  • 14. Larasati, A. S. A. 2017. Aquatic Productivity in Mangrove Ecosystems in Probolinggo, Situbondo and Banyuwangi in terms of Chlorophyll-a Phytoplankton Content. Thesis. Aquaculture Study Program. Faculty of Fisheries and Marine Affairs. Airlangga University, 75 pages.
  • 15. Liwutang, Y. E., Manginsela, F. B., Tamanampo, J. F. W. S. 2013. The density and diversity of phytoplankton in the waters around the Manado Beach reclamation area. Journal of Platax Scientific, 1(3), 109–117.
  • 16. Liyana, S. H., Sari, L. A., Dewi, N. N., Masithah, E. D., Sahidu, A. M and Pursetyo, K. T. 2019. Distribution Patterns and the Biomass of Bivalves at Segoro Tambak Estuary, Sedati, Sidoarjo, East Java. IOP Conference Series: Earth and Environmental Science, 236(1), 012043.
  • 17. Lutzu, G. A. 2011. Analysis of the Growth of Microalgae in Batch and Semi-batch Photobioreactors. International Ph.D. Program in Environmental Sciences and Engineering. Università Degli Studi in Cagliari, 72 pages.
  • 18. Magumba, D., Maruyama, A., Takagaki, M., Kato, A., Kikuchi, M. 2013. Relationships between Chlorophyll-a, Phosphorus and Nitrogen as Fundamentals for Controlling Phytoplankton Biomass in Lakes. Environmental Control Biology, 51(4), 179–185.
  • 19. Marlian, N. 2016. Analysis of the Horizontal Distribution of Chlorophyll-a as an Indicator of Water Fertility Levels in Meulaboh Bay, Aceh Barat. Postgraduate School. Institut Pertanian Bogor, Bogor, 81 pages.
  • 20. Masithah, E. D., Octaviana, Y. D., Manan, A. 2016. Effect of Probiotic Differences on C: N and N: P Ratios of Biofloc Culture Media in Experiment Tub. Journal of Aquaculture and Fish Health, 5(3), 118–125.
  • 21. Mellard, J. P., Yoshiyama, K., Litchman, E., Klausmeier, C. A. 2011. The Vertical Distribution of Phytoplankton In Stratified Water Columns. Journal of Theoritical Biology, 26(1), 16–30.
  • 22. Nindarwi, D. D., Sari, L. A., Wulansari, P. D., Samara, S. H., Santanumurti, M. B. 2020. Use of Hydrogen Peroxide to Improve Potential Redox Land Preparation of Land Towards Increasing Production of Traditional Shrimp Vanname (Litopeaneus vanname) in Wringin Putih, Muncar, Banyuwangi. IOP Conference Series: Earth and Environmental Science, 441(1), 012014.
  • 23. Nybakken, J. W. 1992. Marine Biology. An Ecological Approach. Translation of Marine Biology: An Ecological Approach. Interpreters: M. Eidman, Koesoebiono, D.G. Bengen and M. Hutomo. Gramedia, Jakarta, 459 pages.
  • 24. Pednekar, S. M., Matondkar, S. G. P., Kerkar, V. 2012. Spatiotemporal Distribution of Harmful Alga Flora in the Tropical Estuarine Complex of Goa India. Journal of The Scienctific World, 1(4), 1–11.
  • 25. Pratama, N. A., Rahardja, B. S., Sari, L. A. 2020 The effect of Density as Skeletonema costatum Bioremediation Agent of Copper (Cu) Heavy Metal Concentration. IOP Conference Series: Earth and Environmental Science, 441(1), 012029.
  • 26. Pratiwi, E. D., Koenawan, C. J., Zulfikar, A. 2015. The Relationship between Plankton Abundance and Water Quality in Malang Waters, Bintan Regency Meeting, Riau Islands Province. (unpublished). Faculty of Marine and Fisheries Sciences. UMRAH, Riau, 14 pages.
  • 27. Putri, A. D. A., Tjahjaningsih, W. 2018. PostHarvest Management of Porphyridium cruentum Microalgae Cultures at the Laboratory Scale and Intermediate Scale at the Center for Brackish Water Cultivation Fisheries, Jepara, Central Java. Journal of Aquaculture and Fish Health, 7(3), 111–117.
  • 28. Rahayu, S. M. 2019. Spatial and Temporal Dynamics of Diatom Community (Bacillariophyceae) in Jakarta Bay Waters. Thesis. Aquatic Resources Management Study Program. Pasca Sarjana Institut Pertanian Bogor, Bogor. Pages 33.
  • 29. Rinawati, M., Sari, L. A., Pursetyo, K. T. 2020. Chlorophyll and Carotenoids Analysis Spectrophotometer Using Method on Microalgae. IOP Conference Series: Earth and Environmental Science, 441(1), 012056.
  • 30. Sari L. A., Sari, P. D. W., Nindarwi, D. D., Arsad, S., Affandi, M. 2019a. Harmful Algae Identification in Bomo Water Environment, Banyuwangi, East Java, Indonesia. Ecology, Environment and Conservation 25 (July Suppl. Issue) : S26-S31.
  • 31. Sari, L. 2005. Study of Waters Saprobitas as a Management Basis for Kaligarang Watershed – Semarang. Thesis. Program Pasca Sarjana Magister Manajemen Sumberdaya Pantai. Universitas Diponegoro. Semarang.
  • 32. Sari, L. A., Masithah, E. D. and Alamsjah, M. A. 2018b. The Effectivety of Carotenoid Spirulina platensis Which is Produced in Culture Media From Ketchup Waste As An Antioxidant. Journal of Fisheries and Marine Research, 2(1), 9–14.
  • 33. Sari, L. A., Pursetyo, K. T., Arsad, S., Masithah, E. D., Setiawan, E., Affandi, M. 2019b. The Effect of Nutrient Abundance on Distribution of Cyanobacteria and Chlorophyll-a in Sedati Water, Sidoarjo. Pollution Research 38 (August Suppl. Issue) : S27-S32.
  • 34. Sari, L. A., Satyantini, W. H., Manan, A., Pursetyo, K. T., Dewi, N. N. 2018a. The Identification of Plankton Tropical Status in the Wonokromo, Dadapan and Juanda Extreme Water Estuary. IOP Conference Series: Earth and Environmental Science, 137(1), 012029.
  • 35. Sidabutar, T., Bengen, D. G., Wouthuyzen, S., Partono, T. 2016. The Abundance of Phytoplankon and its Relationship to the N/P Ratio in Jakarta Bay, Indonesia. Journal of Biological Diversity, 17(2), 673–678.
  • 36. Sitompul, N., Asmika, H., Madju, S. 2011. Phosphate Vertical Profile in Bandar Kayangan Lembah Sari Reservoir, Lembah Sari Village, Rumbai Pesisir District, Pekanbaru City. Journal of Aquatic, 2(1), 67–72.
  • 37. Suprapto, D., Purnomo, P. W., Sulardiono, B. 2014. Analysis of Aquatic Fertility Based on the Physical Chemical Relationship of Basic Sediments with NO3-N and PO4-P at the Estuary of the Tuntang Demak River. Journal of Fisheries Science, 10(1), 56–61.
  • 38. Suryono, D. D., Moersidik, S. S. 2015. Study of the Characteristics of the Ciliwung Estuary with the Nitrogen Budget Model. Journal of Humans and the Environment, 22(1), 32–38.
  • 39. Syaifudin, M., Sulmartiwi, L., Andriyono, S. 2017. Addition of Red Microalgae Porphyridium cruentum to the Feed Against Color Brightness of Betta Fish (Betta splendens). Journal of Aquaculture and Fish Health, 6(1), 41–47.
  • 40. Szczykowska, J., Siemieniuk, A., Wiater, J. 2015. Agricultural pollution and water quality in small retention reservoir in Korycin. Journal of Ecological Engineering, 16(1),141–146
  • 41. Vonshak, A. 1997. Spirulina platensis (Arthrospira) : Physiology Cellbiology and Biotechnology Taylor and Francis. London, Pages 214.
  • 42. Wenno L. F. 2007. Biodiversity of Planktonic Organisms in Relation to Water Quality and Water Mass Circulation in the Makassar Strait. Oceanographic Research Center (LIPI), 5(1), 34–39.
  • 43. Widianingsih, R., Hartati, A., Djamali., Sugestiningsih. 2007. Abundance and Horizontal Distribution of Phytoplankton in the Waters of the East Coast of Belitung Island. Journal of Marine Science, 12(1), 6–11.
  • 44. Widyorini, N. 2009. Pattern of Phytoplankton Community Structure Based on Pigment Content in Jepara Beach. Journal of Fisheries Science, 4(2), 69–75.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-54445ddc-046b-4b43-847a-ef016b39319d
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