A comprehensive analysis of tracing the sources and dynamics of pollutants in a tropical Miri River, NW Borneo

The fractionation and distribution of elemental composition in water (particulate and colloid) and sediments were assessed to understand the major geochemical processes that control the contaminant transport in the Miri River, NW Borneo. Further, the study also focused on determining the potential s...

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Main Authors: William, F.B., Mohan Viswanathan, Prasanna, Nagarajan, Nagarajan, Sabarathinam, C.
Format: Journal Article
Published: 2025
Online Access:http://hdl.handle.net/20.500.11937/97429
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author William, F.B.
Mohan Viswanathan, Prasanna
Nagarajan, Nagarajan
Sabarathinam, C.
author_facet William, F.B.
Mohan Viswanathan, Prasanna
Nagarajan, Nagarajan
Sabarathinam, C.
author_sort William, F.B.
building Curtin Institutional Repository
collection Online Access
description The fractionation and distribution of elemental composition in water (particulate and colloid) and sediments were assessed to understand the major geochemical processes that control the contaminant transport in the Miri River, NW Borneo. Further, the study also focused on determining the potential sources of geochemical elements and assessing the ecological risk. In this regard, 11 surface water and 35 river bed sediment samples were collected along the course of the Miri River and analyzed for various elemental compositions. Pollution indices such as geo-accumulation index (Igeo) and contamination factor (CF) were used to determine the pollution status of the river. Principal component analysis (PCA) was also used to identify the key geochemical processes that control the metal distribution and its sources. The interpretation of the results indicates that elemental distribution in size fractions showed an increasing concentration trend from the colloidal to the particulate fraction. Fe was observed to be the dominant metal in both water and sediments, indicating the weathering of river sediments. Cd, Pb and Zn are mostly derived from anthropogenic impacts and risk evaluation indicate the probability of adverse ecological threats to the riverine biota. Colloidal fractions (0.30 µm and 0.20 µm) were identified as the primary facilitators of contaminant transport, particularly in the upstream and midstream, whereas particulate (0.45 µm) dominates in the downstream due to the tidal influx of seawater. PCA analysis confirmed that the majority of pollutants were contributed by domestic and industrial discharge, seawater incursion, geogenic sources and agricultural inputs.
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spelling curtin-20.500.11937-974292025-06-04T00:52:07Z A comprehensive analysis of tracing the sources and dynamics of pollutants in a tropical Miri River, NW Borneo William, F.B. Mohan Viswanathan, Prasanna Nagarajan, Nagarajan Sabarathinam, C. The fractionation and distribution of elemental composition in water (particulate and colloid) and sediments were assessed to understand the major geochemical processes that control the contaminant transport in the Miri River, NW Borneo. Further, the study also focused on determining the potential sources of geochemical elements and assessing the ecological risk. In this regard, 11 surface water and 35 river bed sediment samples were collected along the course of the Miri River and analyzed for various elemental compositions. Pollution indices such as geo-accumulation index (Igeo) and contamination factor (CF) were used to determine the pollution status of the river. Principal component analysis (PCA) was also used to identify the key geochemical processes that control the metal distribution and its sources. The interpretation of the results indicates that elemental distribution in size fractions showed an increasing concentration trend from the colloidal to the particulate fraction. Fe was observed to be the dominant metal in both water and sediments, indicating the weathering of river sediments. Cd, Pb and Zn are mostly derived from anthropogenic impacts and risk evaluation indicate the probability of adverse ecological threats to the riverine biota. Colloidal fractions (0.30 µm and 0.20 µm) were identified as the primary facilitators of contaminant transport, particularly in the upstream and midstream, whereas particulate (0.45 µm) dominates in the downstream due to the tidal influx of seawater. PCA analysis confirmed that the majority of pollutants were contributed by domestic and industrial discharge, seawater incursion, geogenic sources and agricultural inputs. 2025 Journal Article http://hdl.handle.net/20.500.11937/97429 10.1007/s40899-025-01203-w http://creativecommons.org/licenses/by/4.0/ fulltext
spellingShingle William, F.B.
Mohan Viswanathan, Prasanna
Nagarajan, Nagarajan
Sabarathinam, C.
A comprehensive analysis of tracing the sources and dynamics of pollutants in a tropical Miri River, NW Borneo
title A comprehensive analysis of tracing the sources and dynamics of pollutants in a tropical Miri River, NW Borneo
title_full A comprehensive analysis of tracing the sources and dynamics of pollutants in a tropical Miri River, NW Borneo
title_fullStr A comprehensive analysis of tracing the sources and dynamics of pollutants in a tropical Miri River, NW Borneo
title_full_unstemmed A comprehensive analysis of tracing the sources and dynamics of pollutants in a tropical Miri River, NW Borneo
title_short A comprehensive analysis of tracing the sources and dynamics of pollutants in a tropical Miri River, NW Borneo
title_sort comprehensive analysis of tracing the sources and dynamics of pollutants in a tropical miri river, nw borneo
url http://hdl.handle.net/20.500.11937/97429