Risk assessment of potentially toxic elements in stream sediments around granite quarries, barite mines, and cultivation areas, Southeastern Nigeria
- PMID: 34625850
- DOI: 10.1007/s10661-021-09496-y
Risk assessment of potentially toxic elements in stream sediments around granite quarries, barite mines, and cultivation areas, Southeastern Nigeria
Abstract
This study assessed the contamination of streams with potentially toxic elements (PTEs) in sediments around mining, quarrying, and cultivation areas in Akamkpa and environs Southeastern Nigeria. Analysis done using ICP MS technique shows that barium (Ba) and lead (Pb) recorded mean concentrations above their average shale content (ASC) in stream sediments. Chromium (Cr) exceeded Canadian Interim Sediment Quality Guideline (ISQG) and US Environmental Protection Agency (USEPA) screening benchmark value. Pb exceeded Canadian ISQG value but tallies with USEPA benchmark value. Pearson's correlation exhibited significant correlation (p < 0.01) of molybdenum (Mo) with copper (Cu) and Pb; Cu with Pb, vanadium (V), and Ba; V with Cu, Pb, iron (Fe), Ba, and beryllium (Be); and Fe with Be and V. Principal component (PC 1) consists of Pb, Mo, cobalt (Co), Cu, arsenic (As), Cr, V, and nickel (Ni) and showed significant correlation. Geo accumulation index (I-geo) values for Mo, Cu, V, Pb, Zn, Ni, Co, Mn, and Ba fall under unpolluted (0) to moderately polluted (1-2) classes. Maximum enrichment factor (EF) values show extremely high and significant enrichment of Ba and Pb in few locations. Co, Cr, Cu, Mn, and Zn possess maximum EF values classified as moderate enrichment. Ni, Mo, As, and V obtained maximum EF values classified as depleted to minimal enrichment. Modified pollution index (MPI) values showed high PTEs contamination in mostly cultivation locations. Single element potential ecological risk (EiR) mean values trend EiR (As) > EiR (Pb) > EiR (Co) > EiR (Cr) > EiR (Cu) > EiR (V) > EiR (Ni) > EiR (Zn). Comprehensive potential ecological risk (RI) shows medium risk "B" and strong risk "C" levels in few locations. The use of multiple pollution indices such as I-geo, EF, EiR, and RI in pollution assessment indicated similar trend of PTEs contamination of stream sediments. Levels of PTEs contamination are elevated in cultivation areas more than in granite quarrying and mining areas. This study serves as a benchmark for conducting suitable environmental management strategies to scientists in Nigeria and other parts of the world.
Keywords: Enrichment factor; Geo accumulation index; Modified pollution index; Potential ecological risk; Potentially toxic elements; Stream sediment.
© 2021. The Author(s), under exclusive licence to Springer Nature Switzerland AG.
References
-
- Adisa, A. L., & Adekoya, J. A. (2016). Assessment of pollution by heavy metals in sediments of River Oyi and its tributaries, southwestern Nigeria: Ife Journal of Science, 18, 871–886.
-
- Ajayi, S. O., & Osibanjo, O. (1981). Pollution studies in Nigerian Rivers. Water Quality of Some Nigerian Rivers: Environmental Pollution, 2, 87–95.
-
- Akinmosin, A., Osinnowo, O. O., & Oladunjoye, M. A. (2009). Radiogenic Components of the Nigerian Tar Sand Deposits: Earth Science Resource Journal, 13, 64–73.
-
- Akoto, O., Bruce, T. N., & Darko, G. (2008). Heavy Metals Pollution Profiles in Streams Serving the Owabi Reservoir: African Journal of Environmental Science Technology, 2, 354–359.
-
- Aladesanmi, O. T., Agboola, F. K., & Adeniyi, I. F. (2016). Distribution of Heavy Metals in Surface Sediments from Streams and Their Associated Fishponds in Osun State Nigeria: Journal of Health and Pollution, 6, 34–46.
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