Omni-Akuatika
Vol 22, No 1 (2026): Omni-Akuatika May (In press)

Natural and anthropogenic evidence drive macronutrient distribution in the Bengkulu River, Indonesia

Idha Ikhsani (Research Center for Oceanology, National Research and Innovation Agency)
Ilham Ilham (Study Program of Chemistry Education, Faculty of Teacher Training and Education, University of Bengkulu, Indonesia)
Hanif Budi Prayitno (Research Center for Oceanology, National Research and Innovation Agency)
Rina Elvia (Study Program of Chemistry Education, Faculty of Teacher Training and Education, University of Bengkulu, Indonesia)
Suci Lastrini (Direktorat Pengelolaan laboratorium fasilitas Riset dan kawasan Sains dan Teknologi, National Research and Innovation Agency)
Nurhamidah Nurhamidah (Study Program of Chemistry Education, Faculty of Teacher Training and Education, University of Bengkulu, Indonesia)
Kuo Hong Wong (College of Science and Technology, Kanazawa University, Japan)
Wiwit Wiwit (Study Program of Chemistry Education, Faculty of Teacher Training and Education, University of Bengkulu, Indonesia)



Article Info

Publish Date
18 Aug 2026

Abstract

The Bengkulu River, the largest river in Bengkulu Province, discharges into the Indian Ocean and drains a watershed increasingly influenced by agricultural, urban, and industrial activities. Despite its ecological and socio-economic importance, information on nutrient distribution and export along the river–estuary continuum remains limited. This study investigated the distribution, transport, and potential sources of macronutrients (nitrite, nitrate, phosphate, and silicate) and estimated their fluxes to adjacent coastal waters. Surface water samples were collected from 15 stations along the Bengkulu River–estuary system during the dry season (17–19 March 2023). Nutrient concentrations were analyzed using spectrophotometric methods. Concentrations ranged from 0.01–5.17 ppm for nitrite, 0.01–1.94 ppm for nitrate, 0.01–0.35 ppm for phosphate, and 0.79–35.21 ppm for silicate, with mean values of 0.54 ± 1.30, 0.38 ± 0.49, 0.04 ± 0.10, and 11.19 ± 9.92 ppm, respectively. Higher concentrations of nitrite, nitrate, and phosphate were generally observed near areas with intensive agriculture, industrial activities, and dense settlements, suggesting potential anthropogenic influence, although natural hydrodynamic processes may also contribute. In contrast, silicate showed higher concentrations in upstream areas and decreased toward the coast, a pattern that may be associated with dilution during mixing and biological uptake. Estimated nutrient fluxes to the Indian Ocean were ~9.9 × 10? mg day?¹ for silicate, 1.9–6.1 × 10? mg day?¹ for nitrate, 9.1–9.4 × 10? mg day?¹ for nitrite, and 1.8–6.0 × 10? mg day?¹ for phosphate. These results suggest that the Bengkulu River is an important pathway for nutrient transport to adjacent coastal waters. The findings provide baseline information on nutrient dynamics and land–sea nutrient connectivity in tropical river systems.

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Journal Info

Abbrev

joa

Publisher

Subject

Agriculture, Biological Sciences & Forestry Biochemistry, Genetics & Molecular Biology Environmental Science

Description

OmniAquatika is a scholarly refereed research journal which aims to promote the theory and practice, innovation, engineering and management as well as social-economic relevant in fisheries and marine sciences fields. The main aspects of research areas include, but are not exclusive to the current ...