Ecotoxicological evaluation of surface waters in Northern Namibia

Author:

Faulstich LORCID,Wollenweber S,Reinhardt-Imjela ChORCID,Arendt RORCID,Schulte A,Hollert HORCID,Schiwy SORCID

Abstract

AbstractThe increasing pressure on freshwater systems due to intensive anthropogenic use is a big challenge in central-northern Namibia and its catchment areas, the Kunene and the Kavango Rivers, and the Cuvelai-Etosha Basin, that provide water for more than 1 million people. So far, there is no comprehensive knowledge about the ecological status and only few knowledge about the water quality. Therefore, it is crucial to learn about the state of the ecosystem and the ecological effects of pollutants to ensure the safe use of these resources. The surface waters of the three systems were sampled, and three bioassays were applied on three trophic levels: algae, daphnia, and zebrafish embryos. Additionally, in vitro assays were performed to analyze mutagenicity (Ames fluctuation), dioxin-like potential (micro-EROD), and estrogenicity (YES) by mechanism-specific effects. The results show that acute toxicity to fish embryos and daphnia has mainly been detected at all sites in the three catchment areas. The systems differ significantly from each other, with the sites in the Iishana system showing the highest acute toxicity. At the cellular level, only weak effects were identified, although these were stronger in the Iishana system than in the two perennial systems. Algae growth was not inhibited, and no cytotoxic effects could be detected in any of the samples. Mutagenic effects and an estrogenic potential were detected at three sites in the Iishana system. These findings are critical in water resource management as the effects can adversely impact the health of aquatic ecosystems and the organisms within them.

Funder

Freie Universität Berlin

Publisher

Springer Science and Business Media LLC

Reference132 articles.

1. Agatz, A., Hammers-Wirtz, M., Gabsi, F., Ratte, H. T., Brown, C. D., & Preuss, T. G. (2012). Promoting effects on reproduction increase population vulnerability of Daphnia magna. Environmental Toxicology and Chemistry, 31(7), 1604–1610. https://doi.org/10.1002/etc.1862

2. AghaKouchak, A., Sorooshian, S., Hsu, K., & Gao, X. (2013). 5.09 - The potential of precipitation remote sensing for water resources vulnerability assessment in arid Southwestern United States. In: Roger A. Pielke (ed.): Climate vulnerability. Understanding and addressing threats to essential resources Vol. 1 -5. Amsterdam, Elsevier, p. 141–149.

3. Altenburger, R., Brack, W., Burgess, R. M., Busch, W., Escher, B. I., Focks, A., Hewitt, L. M., Jacobsen, B. N., López de Alda, M., Ait-Aissa, S., Backhaus, T., Ginebreda, A., Hilscherová, K., Hollender, J., Hollert, H., Neale, P. A., Schulze, T., Schymanski, E. L., Teodorovic, I., Tindall, A. J., Aragão Umbuzeiro, G. de, Branislav, V., Zonja, B., & Krauss, M. (2019). Future water quality monitoring: improving the balance between exposure and toxicity assessments of real-world pollutant mixtures. Environmental Sciences Europe, 31(1). https://doi.org/10.1186/s12302-019-0193-1

4. Aneck-Hahn, N. H., Bornman, M.S., & Jager, C. de (2006). A relevant battery of screening assays to determine estrogenic and androgenic activity in environmental samples for South Africa. Biennial, 19. https://www.researchgate.net/publication/242237878

5. Aneck-Hahn, N. H., Bornman, M. S., & Jager, C. de (2012). Oestrogenic activity in drinking waters from a rural area in the Waterberg District, Limpopo Province, South Africa. Water SA, 35(3). https://doi.org/10.4314/wsa.v35i3.76760

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