Heavy Metals and Pathways of Incorporation in the Soil, Sediments and Water Matrices of River Nzoia, Kenya

Authors

  • S. J Tarus, Department of Chemistry and Biochemistry, University of Eldoret, Kenya P.O. Box 1125-30100, Eldoret, Kenya
  • J. L Kituyi, Department of Chemistry and Biochemistry, University of Eldoret, Kenya P.O. Box 1125-30100, Eldoret, Kenya.
  • F.K Segor, Department of Chemistry and Biochemistry, University of Eldoret, Kenya P.O. Box 1125-30100, Eldoret, Kenya.

Keywords:

Heavy Metals,, Soil,, Sediments,, Pollution,, Ecosystem,, Temporal Variability,, Poverty,, Alleviation

Abstract

For prudence in the management of lotic ecosystems, vital information on the degree of
pollutant load is required. Several human activities are practiced within the River Nzoia
catchment area, most of which result in heavy metals and/or their compounds most of which
end up in different matrices of the river’s bio-system. Since metals cannot biodegrade, most
them will therefore exist in forms, thus affecting the biosphere of the river. This study was
conducted to monitor spatial and temporal variations in the concentrations of heavy metals
in water, soil and sediments of River Nzoia, in Western Kenya. The heavy metals analyzed
analysed by atomic absorption spectrophotometer (AAS) were; zinc (Zn), lead (Pb), copper
(Cu), chromium (Cr) and cadmium (Cd) from a total of eight stratified sampling stations
located along the River Nzoia from Cherangani to Mumias. Sampling was done twice
capturing the variability during the dry and rainy seasons in February 2007 and June 2007.
Heavy metal levels were Zn [1.7789  0.2982 mg/L], Pb [0.9409  0.0076 mg/L], Cu
[0.7041  0.1026 mg/L], Cr [0.917  0.00827 mg/L] and Cd [0.17480.00414 mg/L]
exceeded the WHO limits (0.05 mg/L for Zn, Pb and Cu, 0.01 mg/L for Cr and Cd), in all
the sites sampled. This showed that Nzoia River’s water is dangerously contaminated by
these heavy metals. The catchment area was affected by temporal variations with higher
values of heavy metals during the rainy season.

References

Alloway, B.J. (1990). Heavy metals in soils. Chromium and Nickel. Blackie and Sons Ltd. John Wiley and Sons

Inc., Glasgow and London, New York.

Bruemmer, G.W., Gerth, J., Herms, U. (2007). Heavy Metal Species, Mobility and Availability in Soils. Journal

of Plant Nutrition and Soil Science 149 (4) 382-398.

Hibiscus esculentus L. (2013). Phytotoxicity of Chromium on Germination, Growth and

Biochemical Attributes of Ref. American Journal of Plant Sciences 4 2431-2439.

Jarup, L. (2003). Hazards of heavy metals contamination. British Medical Bulletin. 68: 167-182.

Kondoro J.W.A. and Mikidadi, M.H. (1998). Heavy metal pollution in Lake Victoria. Tanzan. J. Sci. 24 (1998),

pp. 9–21.

Nzoia River basin management initiative; (2006). Sustainable water management strategies at the regional,

national and local levels which promote both equitable access and adequate supplies.

USGS (2003). Science and Applications Branch, International program fewsflood risk monitoring in East Africa.

EROS Data Center

WHO (1996). Heavy metals in human nutrition and health. World Health Organisation, Geneva.

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Published

2022-11-08

How to Cite

Tarus, , S. J., Kituyi, , J. L., & Segor, , F. (2022). Heavy Metals and Pathways of Incorporation in the Soil, Sediments and Water Matrices of River Nzoia, Kenya. African Journal of Education,Science and Technology (AJEST), 7(2), pg 53 – 64. Retrieved from https://ajest.org/index.php/ajest/article/view/878

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