THE IMPACT OF FLOATING NET CAGE ACTIVITIES ON THE WATER QUALITY OF CENGKLIK RESERVOIR: ANALYSIS OF BOD, COD, DO, AND TSS FROM SECONDARY DATA

Autores/as

  • Nine Elissa Maharani
  • Sutrisno Anggoro
  • Nurjazuli

DOI:

https://doi.org/10.18623/rvd.v23.6156

Palabras clave:

Floating Net Cage, Water Quality, Cengklik Reservoir

Resumen

Cengklik Reservoir in Boyolali, Central Java, has experienced significant water quality degradation due to intensive Floating Net Cage (FNC) activities. Uneaten feed and fish feces that accumulate at the reservoir bottom increase organic matter and nutrient loads, leading to eutrophication and upwelling phenomena that cause mass fish mortality. This study aims to analyze the impact of FNC activities on water quality through Biochemical Oxygen Demand (BOD), Chemical Oxygen Demand (COD), Dissolved Oxygen (DO), and Total Suspended Solids (TSS). Secondary data were obtained from the Bengawan Solo River Basin Authority (BBWS) covering the period 2020–2024, tested using SNI 6989.72:2009, SNI 6989.2:2019, APHA (2017), and an in-house method for TSS. Descriptive analysis was employed to evaluate annual trends and compare them against national standards (Government Regulation No. 22/2021). The results indicate that BOD (3.41–7.9 mg/L) and COD averages consistently exceeded quality thresholds, while DO remain relatively low (<4 mg/L), signaling unhealthy aquatic conditions. TSS values fluctuated but generally stayed below the standard limit. In conclusion, FNC activities significantly contribute to the deterioration of reservoir water quality. The study implies the urgent need for improved feed management, cage density regulation, continuous monitoring, and stakeholder collaboration to sustain both ecological functions and the socio-economic benefits of Cengklik Reservoir.

Citas

Adhar, S., Khalil, M., Ayuzar, E., & Rusydi, R. (2022). Influence of rainfall and spatial temporal distribution analysis of total suspended solid in Laut Tawar Lake. IOP Conference Series: Earth and Environmental Science, 1062(1), 12022. https://doi.org/10.1088/1755-1315/1062/1/012022

Ahuja, S., Aiken, G. R., Alcantar, N. A., Alexander, R. B., Andrew, R., Antoniou, M. G., Aponte-Morales, V., Asolekar, S. R., Auer, M. T., & Auer, N. A. (2013). J Adams (Volume 2) US Environmental Protection Agency, Cincinnati, OH, USA T Ahmed (Volume 1) BUET, Dhaka, Bangladesh. Comprehensive Water Quality and Purification.

Astuti, L. P., Warsa, A., Sentosa, A. A., & HENDRO, D. W. (2023). Phytoremediation for Nutrient Removal in an Environmentally Friendly Floating Cage System: A Field Experiment. Sains Malaysiana, 52(10), 2761–2772.

Aubin, V., Helseth, A., Korpås, M., & Fleten, S.-E. (2025). Whose heads are we keeping above water? Impacts of risk aversion on hydropower medium-term scheduling. Authorea Preprints.

Awaliyah, F., Gunawan, W., & Tasrif, M. (2019). Analysis of changes in water quality used for supporting fish productivity of floating cage/KJA (Keramba Jaring Apung) in Cirata Reservoir. IOP Conference Series: Earth and Environmental Science, 306(1), 12014.

Carey, C. C., Hanson, P. C., Thomas, R. Q., Gerling, A. B., Hounshell, A. G., Lewis, A. S. L., Lofton, M. E., McClure, R. P., Wander, H. L., & Woelmer, W. M. (2022). Anoxia decreases the magnitude of the carbon, nitrogen, and phosphorus sink in freshwaters. Global Change Biology, 28(16), 4861–4881. https://doi.org/10.1111/gcb.16228

Chapman, P. M., Hayward, A., & Faithful, J. (2017). Total suspended solids effects on freshwater lake biota other than fish. Bulletin of Environmental Contamination and Toxicology, 99(4), 423–427.

Chernova, O., Vytyaz, O., Martyniuk, R., & Fedorovych, I. (2022). Rational methods of operation of underground gas storages and mitigation of energy losses. Nafta-Gaz, 78.

Cui, D., Yang, S., Song, X., Huang, X., Duan, C., Ji, M., Li, Z., Yu, S., Deng, Z., & Ke, P. (2025). Monthly methane emissions in Chinese mainland provinces from 2013–2022. Scientific Data, 12(1), 948.

Damayanti, T., Pradipta, J., Rahmawati, I., Harlivasari, A. D., Prasetyo, E., & Anggara, B. (2019). Survey of Lung Function and Respiratory Symptoms Among Online Motorcycle Taxi Drivers in Bekasi City. Jurnal Respirologi Indonesia, 39(1), 54–59.

Hudson, N., Baker, A., Ward, D., Reynolds, D. M., Brunsdon, C., Carliell-Marquet, C., & Browning, S. (2008). Can fluorescence spectrometry be used as a surrogate for the Biochemical Oxygen Demand (BOD) test in water quality assessment? An example from South West England. Science of the Total Environment, 391(1), 149–158.

Jane, S. F., Mincer, J. L., Lau, M. P., Lewis, A. S. L., Stetler, J. T., & Rose, K. C. (2023). Longer duration of seasonal stratification contributes to widespread increases in lake hypoxia and anoxia. Global Change Biology, 29(4), 1009–1023. https://doi.org/10.1111/gcb.16525

Jha, R. R., & Li, D. (2025). Quantifying the effects of water hyacinth (Pontederia crassipes) on freshwater ecosystems: a meta-analysis. Biological Invasions, 27(1), 27.

Kumar, V. (2024). Feed and feeding for fish and shellfish: nutritional management. Elsevier.

Liqoarobby, R., Suparman, Y., & Fadilah, K. (2021). Aqueous systems of dissolved oxygen in reservoir. E3S Web of Conferences, 249, 3015.

Maddah, H. A. (2022). Predicting optimum dilution factors for BOD sampling and desired dissolved oxygen for controlling organic contamination in various wastewaters. International Journal of Chemical Engineering, 2022(1), 8637064. https://doi.org/10.1155/2022/8637064

Nirmala, L., Jeya, A., Ramesh, A., Jose, M., Wilson, S. S., Jamuna, A. S., Geena, K. M., & Asokan, A. (2023). Analysis of the drinking water quality and socioeconomic status of the community living in Poonthura, Thiruvananthapuram, India. International Journal of Ecology and Environmental Sciences, 49(4), 417–423.

Rostika, R., Maulida, Y., Zidni, I., Cu, M. I., Khan, A. M., & Pasaribu, B. (2024). Growth and Gastrointestinal Conditions of Green Lobster (Panulirus homarus) With Different Natural Feeding, Which are Raised in a Longline Submerged Cage System on the East Coast of Pangandaran Regency. Journal Transnational Universal Studies, 2(2), 98–109.

Schofield, P. N., & Mothersill, C. E. (2023). Environmental Radiobiology. CRC Press.

Tabrett, S., Ramsay, I., Paterson, B., & Burford, M. A. (2024). A review of the benefits and limitations of waste nutrient treatment in aquaculture pond facilities. Reviews in Aquaculture, 16(4), 1766–1786. https://doi.org/10.1111/raq.12921

Tahiluddin, A. B., & Roleda, M. Y. (2025). Current status of eucheumatoid seaweed farming in Tawi-Tawi, Philippines. In Biotechnological Interventions to Aid Commercial Seaweed Farming (pp. 95–124). Springer.

Uglem, I., Karlsen, Ø., Sanchez-Jerez, P., & Sæther, B.-S. (2014). Impacts of wild fishes attracted to open-cage salmonid farms in Norway. Aquaculture Environment Interactions, 6(1), 91–103.

Vigiak, O., Grizzetti, B., Udias-Moinelo, A., Zanni, M., Dorati, C., Bouraoui, F., & Pistocchi, A. (2019). Predicting biochemical oxygen demand in European freshwater bodies. Science of the Total Environment, 666, 1089–1105.

Warsa, A., Tjahjo, D. W. H., & Astuti, L. P. (2024). Study of the effectiveness of wasted container bags in SMART floating net cage culture system. IOP Conference Series: Earth and Environmental Science, 1436(1), 12023.

Woelmer, W. M., Hounshell, A. G., Lofton, M. E., Wander, H. L., Lewis, A. S. L., Scott, D., & Carey, C. C. (2023). The importance of time and space in biogeochemical heterogeneity and processing along the reservoir ecosystem continuum. Aquatic Sciences, 85(2), 66.

Zeman-Kuhnert, S. (2022). Use of selected anthropogenic pesticides, nutrients, and biomarkers to spatially and temporally characterize eutrophication dynamics at a shallow lake (Lake Seeburg).

Descargas

Publicado

2026-05-11

Cómo citar

Maharani, N. E., Anggoro, S., & Nurjazuli. (2026). THE IMPACT OF FLOATING NET CAGE ACTIVITIES ON THE WATER QUALITY OF CENGKLIK RESERVOIR: ANALYSIS OF BOD, COD, DO, AND TSS FROM SECONDARY DATA. Veredas Do Direito, 23(7), e236156. https://doi.org/10.18623/rvd.v23.6156