Journal of Fish Health
Vol. 6 No. 3 (2026): Journal of Fish Health

The Effectiveness of Gracilaria sp. as a Biofilter in Reducing Aquaculture Waste Based on Planting Location in the Waters of Ujung Betok, East Lombok

Septiana Dwiyanti (Aquaculture Study Program, Department of Fisheries and Marine Science, Faculty of Agriculture, University of Mataram)
Bagus Dwi Hari Setyono (Aquaculture Study Program, Department of Fisheries and Marine Science, Faculty of Agriculture, University of Mataram)
Awan Dermawan (Aquaculture Study Program, Department of Fisheries and Marine Science, Faculty of Agriculture, University of Mataram)
Muhammad Sumsanto (Aquaculture Study Program, Department of Fisheries and Marine Science, Faculty of Agriculture, University of Mataram)
Muhammad Marzuki (Aquaculture Study Program, Department of Fisheries and Marine Science, Faculty of Agriculture, University of Mataram)
Arman Ainul Ramdani (Aquaculture Study Program, Department of Fisheries and Marine Science, Faculty of Agriculture, University of Mataram)



Article Info

Publish Date
31 Aug 2026

Abstract

Aquaculture waste can increase dissolved inorganic nutrient concentrations, making seaweed-based treatment an important component of integrated biological nutrient management. This study aimed to evaluate strategic planting locations of Gracilaria sp. around floating net cages and assess its effectiveness as a natural biofilter for reducing nitrogenous waste in Ujung Betok waters, East Lombok. A Completely Randomized Design (CRD) was applied with three planting-distance treatments and three replicates. Total Ammonia Nitrogen (TAN) concentrations ranged from 0.29–0.31 mg/L at the beginning and 0.24–0.29 mg/L at the end of the 30-day culture period. ANOVA showed no significant difference in initial TAN among treatments (p = 0.868), whereas final TAN differed significantly among planting locations (p = 0.001). Final total nitrogen content in Gracilaria sp. tissue ranged from 0.287–0.330%, with the highest value in T2 (0.330 ± 0.050%), followed by T3 (0.303 ± 0.006%) and T1 (0.287 ± 0.015%). Planting location did not significantly affect tissue total nitrogen content (p > 0.05). Tissue nitrogen reduction was 13.03% in T1, 0.00% in T2, and 8.18% in T3. TAN reduction was highest in T1, decreasing from 0.31 to 0.24 mg/L or 22.58%, followed by T2 at 3.33%, while T3 showed no reduction. These results indicate that Gracilaria sp. can contribute to nitrogen removal, with the 25 m planting location showing the best biofiltration performance.

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Journal Info

Abbrev

jfh

Publisher

Subject

Agriculture, Biological Sciences & Forestry

Description

The Journal of Fish Health (JFH) has an objective to publish and provide high-quality scientific contributions to the field of fish health. These contributions are sourced from innovative research that encourages science and technology development in the field of fish health on a national and ...