Assessing the Impact of Anthropogenically Modified Land Uses on Wetland Health: Case of Witbank Dam Catchment in South Africa

被引:0
作者
Mpandeli, Sylvester [1 ,2 ,3 ]
Liphadzi, Stanley [1 ,3 ]
Mabhaudhi, Chengetanai [4 ]
Mabhaudhi, Tafadzwanashe [4 ,5 ,6 ]
Nhamo, Luxon [1 ,4 ]
机构
[1] Water Res Commiss South Africa, Lynwood Manor, ZA-0081 Pretoria, South Africa
[2] Tshwane Univ Technol TUT, Dept Environm Water & Earth Sci, ZA-0029 Pretoria, South Africa
[3] Univ Venda, Fac Sci Engn & Agr, ZA-0950 Thohoyandou, South Africa
[4] Univ KwaZulu Natal, Ctr Transformat Agr & Food Syst CTAFS, Sch Agr Earth & Environm Sci, ZA-3209 Pietermaritzburg, South Africa
[5] London Sch Hyg & Trop Med LSHTM, Ctr Climate Change & Planetary Hlth, London WC1E 7HT, England
[6] United Nations Univ, Inst Water Environm & Hlth, Richmond Hill, ON L4B 3P4, Canada
基金
英国惠康基金;
关键词
water quality; filtration; land use; wetland functions; nonpoint source pollution; ECOSYSTEM SERVICES; WATER-QUALITY; SPATIAL EXTENT; MANAGEMENT; REMOVAL; MODEL; POLLUTION; ELEMENTS; CARBON; URBAN;
D O I
10.3390/w16162287
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Wetlands are critical ecological infrastructures that improve water quality, serve as habitat for fish and other aquatic life, accumulate floodwaters, and maintain surface water flow during dry periods. However, the health of wetlands has been compromised by anthropogenic activities that affect the constant supply of ecosystem services. This study assessed the impact of anthropogenically modified land use on wetland health in the Witbank Dam Catchment in South Africa, whose land use has been severely modified for agriculture and mining purposes. The study developed a model linking surface runoff generated in the catchment with land use and wetland typology to comprehend diffuse pollution from pollution-source land uses. Runoff data and related wetland spatial information were processed and analysed in a Geographic Information System (GIS) to estimate pollutants (agricultural nutrients and acid mine drainage) from runoff detained and released by wetlands. The analysis facilitated the assessment of the value of wetlands in enhancing water quality, as well as human and environmental health. The runoff volume from pollution-source land uses (urban areas, farmlands, and mining) was used to evaluate annual pollution levels. Wetland types are ranked according to their efficiency levels to filter pollutants. The assumption is that the difference between filtered and unfiltered runoff is the quantity of polluted runoff water discharged into the river system. The analysis has shown that 85% of polluted runoff generated in the catchment ends up in the river system. An important observation is that although wetlands have a substantial ability to absorb excess pollutants, they have finite boundaries. Once they reach their full holding capacity, they can no longer absorb any further pollutants. The excess is discharged into the river system, risking human and environmental health. This explains why the Limpopo River is heavily polluted resulting in the death of fish, crocodiles and other aquatic life.
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页数:16
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共 82 条
  • [41] Mitsch William J., 2015, International Journal of Biodiversity Science Ecosystem Services & Management, V11, P1, DOI 10.1080/21513732.2015.1006250
  • [42] Wetlands, carbon, and climate change
    Mitsch, William J.
    Bernal, Blanca
    Nahlik, Amanda M.
    Mander, Uelo
    Zhang, Li
    Anderson, Christopher J.
    Jorgensen, Sven E.
    Brix, Hans
    [J]. LANDSCAPE ECOLOGY, 2013, 28 (04) : 583 - 597
  • [43] Spatial and vertical distribution analysis of heavy metals in urban retention tanks sediments: a case study of Strzyza Stream
    Nawrot, N.
    Wojciechowska, E.
    Matej-Lukowicz, K.
    Walkusz-Miotk, J.
    Pazdro, K.
    [J]. ENVIRONMENTAL GEOCHEMISTRY AND HEALTH, 2020, 42 (05) : 1469 - 1485
  • [44] Determining wetland spatial extent and seasonal variations of the inundated area using multispectral remote sensing
    Nhamo, L.
    Magidi, J.
    Dickens, C.
    [J]. WATER SA, 2017, 43 (04) : 543 - 552
  • [45] Impact of Land Management on Water Resources, a South African Context
    Nkosi, Mary
    Mathivha, Fhumulani I.
    Odiyo, John O.
    [J]. SUSTAINABILITY, 2021, 13 (02) : 1 - 32
  • [46] Natural infrastructure in dryland streams (NIDS) can establish regenerative wetland sinks that reverse desertification and strengthen climate resilience
    Norman, Laura M.
    Lal, Rattan
    Wohl, Ellen
    Fairfax, Emily
    Gellis, Allen C.
    Pollock, Michael M.
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2022, 849
  • [47] Responses of phytoplankton upon exposure to a mixture of acid mine drainage and high levels of nutrient pollution in Lake Loskop, South Africa
    Oberholster, P. J.
    Myburgh, J. G.
    Ashton, P. J.
    Botha, A-M.
    [J]. ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 2010, 73 (03) : 326 - 335
  • [48] Ecosystem services and ecological degradation of communal wetlands in a South African biodiversity hotspot
    Pantshwa, A. Owethu
    Buschke, Falko T.
    [J]. ROYAL SOCIETY OPEN SCIENCE, 2019, 6 (06):
  • [49] Constructed wetland scale model: organic matter and nutrients removal from the effluent of a fish processing plant
    Pineyro, M.
    Chalar, G.
    Quintans, F.
    [J]. INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2019, 16 (08) : 4181 - 4192
  • [50] Exploring the Dominant Runoff Processes in Two Typical Basins of the Yellow River, China
    Ran, Guang
    Jian, Shengqi
    Wu, Qiang
    Zhang, Li
    Hu, Caihong
    [J]. WATER, 2020, 12 (11) : 1 - 17