A comparison of water quality and macroinvertebrate community structure in endorheic depression wetlands and a salt pan in the Gauteng province, South Africa

Author:

Burger MORCID,van Vuren J. H. J.,de Wet L.,Nel A.

Publisher

Springer Science and Business Media LLC

Subject

Management, Monitoring, Policy and Law,Pollution,General Environmental Science,General Medicine

Reference58 articles.

1. Assmuth, T., & Penttila, S. (1995). Characteristics, determinants and interpretations of acute lethality in daphnids exposed to complex waste leachates. Aquatic Toxicology, 31(2), 125–141.

2. Barbour, M. T., Gerritsen, J., Snyder, B. D., & Stribling, J. B. (1999). Rapid bioassessment protocols for use in streams and wadeable rivers: periphyton, benthic macroinvertebrates and fish. Report no. EPA 841–B–99–002 (2nd ed.). Washington D.C.: U.S. Environmental Protection Agency; Office of Water.

3. Bird, M., & Malan, H. (2010). Aquatic invertebrates as indicators of human impacts in South African wetlands. WRC Report No. TT 435/09. Pretoria: Water Research Commission.

4. Bird, M. S., Mlambo, M. C., & Day, J. A. (2013). Macroinvertebrates as unreliable indicators of human disturbance in temporary depression wetlands of the south-western cape, South Africa. Hydrobiologia, 720, 19–37.

5. Chessman, B. (2002). Monitoring wetlands. Wetland biological assessment: field techniques and data interpretation. Sydney: School of Biological, Earth and environmental sciences, University of NSW.

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