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Article

Heavy Metal Contamination of Sediments from an Exoreic African Great Lakes’ Shores (Port Bell, Lake Victoria), Uganda

1
Department of Civil and Environmental Engineering, and Construction, University of Nevada Las Vegas, 4505 S. Maryland PKWY, Las Vegas, NV 89154, USA
2
Department of Physical Sciences, School of Natural and Applied Sciences, Kampala International University, Kampala P.O. Box 20000, Uganda
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Department of Chemistry, Faculty of Science, Kyambogo University, Kampala P.O. Box 1, Uganda
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Department of Chemistry, Faculty of Science, Mbarara University of Science and Technology, Mbarara P.O. Box 1410, Uganda
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Department of Chemistry and Biochemistry, School of Sciences and Aerospace Studies, Moi University, Eldoret P.O. Box 3900, Kenya
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Africa Center of Excellence II in Phytochemicals, Textile and Renewable Energy (ACE II PTRE), Moi University, Eldoret P.O. Box 3900, Kenya
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Department of Chemistry, Faculty of Science, University of Kerala, Gandhibhavan, Kariavattom, Thiruvananthapuram 695581, India
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Agago District Local Government, Agago P.O. Box 1, Uganda
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Chemistry Division, Testing Department (Standards Directorate), Uganda National Bureau of Standards, Bweyogerere Industrial and Business Park, Kampala P.O. Box 6329, Uganda
10
Institute of Chemistry of Renewable Resources, Department of Chemistry, University of Natural Resources and Life Sciences Vienna (BOKU), Konrad-Lorenz-Straße 24, 3430 Tullnan der Donau, Austria
*
Author to whom correspondence should be addressed.
Pollutants 2022, 2(4), 407-421; https://doi.org/10.3390/pollutants2040027
Submission received: 12 August 2022 / Revised: 19 September 2022 / Accepted: 20 September 2022 / Published: 27 September 2022

Abstract

Lake Victoria (L. Victoria) is the largest African tropical and freshwater lake, with one of the highest pollution levels, globally. It is shared among Uganda, Kenya and Tanzania, but it is drained only by the river Nile, the longest river in Africa. Though environmental studies have been conducted in the lake, investigations of the heavy metals (HMs) contamination of sediments from fish landing sites and ports on the Ugandan portion of L. Victoria are limited. In this study, sediments of an urban, industrial and fish landing site (Port Bell) on L. Victoria, Uganda was investigated to establish its HMs pollution levels and potential health risks to humans and ecosystems. Sediment samples were collected in triplicate (n = 9) from three different points of Port Bell, digested and analyzed using atomic absorption spectrometry for the presence of these HMs: copper (Cu), lead (Pb), cadmium (Cd) and chromium (Cr). The average daily dose through dermal contact and hazard quotient (HQ) were calculated to assess the health risk that is associated with dredging works (lake sand mining). Four geochemical enrichment indices: contamination factor (CF), geo-accumulation index (Igeo), pollution load index (PLI) and potential ecological risk (PERI) were used to quantify the contamination of the HMs in the sediments. The results showed that the mean HM content of the samples ranged from: 6.111 ± 0.01 to 7.111 ± 0.002 mg/kg for Cu; from 40.222 ± 0.003 to 44.212 ± 0.002 mg/kg for Pb; from 0.352 ± 0.007 to 0.522 ± 0.010 mg/kg for Cr; from 3.002 ± 0.002 to 3.453 ± 0.003 mg/kg for Cd. Health risk assessments indicated that there are no discernible non-carcinogenic health risks that could arise from the dredging works that are conducted in the study area as the indices were all below one. The contamination factors that were obtained suggest that Cd has reached a state of severe enrichment in the sediments (CF > 6). An assessment using Igeo established that the sediments were not contaminated with regards to Cu and Cr, but they exhibited low-to-median and median contamination with respect to Pb and Cd, respectively. Though the pollution load indices show that the contamination levels raise no serious concerns, the potential ecological risk indices show that there is considerable pollution of the Port Bell sediments, particularly with regard to Cd. Upon examination using multivariate statistical analyses, Cd and Cr showed a strong correlation which alluded to their introduction from anthropogenic sources. Based on the sedimentary HMs concentrations and the environmental indices that are employed in this study, it is recommended that the spatial variations in the concentrations of the HMs in water, sediments and biota should be monitored.
Keywords: trace metals; Lake Victoria; Murchison bay; hazard index; geo-accumulation index trace metals; Lake Victoria; Murchison bay; hazard index; geo-accumulation index

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MDPI and ACS Style

Baguma, G.; Musasizi, A.; Twinomuhwezi, H.; Gonzaga, A.; Nakiguli, C.K.; Onen, P.; Angiro, C.; Okwir, A.; Opio, B.; Otema, T.; et al. Heavy Metal Contamination of Sediments from an Exoreic African Great Lakes’ Shores (Port Bell, Lake Victoria), Uganda. Pollutants 2022, 2, 407-421. https://doi.org/10.3390/pollutants2040027

AMA Style

Baguma G, Musasizi A, Twinomuhwezi H, Gonzaga A, Nakiguli CK, Onen P, Angiro C, Okwir A, Opio B, Otema T, et al. Heavy Metal Contamination of Sediments from an Exoreic African Great Lakes’ Shores (Port Bell, Lake Victoria), Uganda. Pollutants. 2022; 2(4):407-421. https://doi.org/10.3390/pollutants2040027

Chicago/Turabian Style

Baguma, Gabson, Andrew Musasizi, Hannington Twinomuhwezi, Allan Gonzaga, Caroline K. Nakiguli, Patrick Onen, Christopher Angiro, Augastine Okwir, Boniface Opio, Thomas Otema, and et al. 2022. "Heavy Metal Contamination of Sediments from an Exoreic African Great Lakes’ Shores (Port Bell, Lake Victoria), Uganda" Pollutants 2, no. 4: 407-421. https://doi.org/10.3390/pollutants2040027

APA Style

Baguma, G., Musasizi, A., Twinomuhwezi, H., Gonzaga, A., Nakiguli, C. K., Onen, P., Angiro, C., Okwir, A., Opio, B., Otema, T., Ocira, D., Byaruhanga, I., Nirigiyimana, E., & Omara, T. (2022). Heavy Metal Contamination of Sediments from an Exoreic African Great Lakes’ Shores (Port Bell, Lake Victoria), Uganda. Pollutants, 2(4), 407-421. https://doi.org/10.3390/pollutants2040027

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