An Assessment of Algae and cyanotoxins in small-holder Aquaculture farms in Vhembe, South Africa

dc.contributor.advisorGumbo, Jabulani R.
dc.contributor.advisorGitari, W. M.
dc.contributor.authorTshifura, Rudzani Alice
dc.date2018
dc.date.accessioned2018-10-05T06:34:32Z
dc.date.available2018-10-05T06:34:32Z
dc.date.issued2018-09-21
dc.descriptionMESHWR
dc.descriptionDepartment of Hydrology and Water Resources
dc.description.abstractIn South Africa, inland aquaculture is on the increase, especially among the rural communities. Thus aquaculture is able to provide a source of employment and improve rural incomes. This study assessed algae species and their cyanotoxins in small holder production in Vhembe district, Limpopo, South Africa. Thirteen study sites were selected to assess the algae species and their cyanotoxins. The water samples were collected in four quarters and analysed for water temperature, pH, total dissolved solids, Electrical conductivity, phosphates, nitrates, chlorophyll, cyanobacteria, cyanotoxins, metal species and quality of the water in the fish ponds. In the 1st quarter of the year there was variation in Water Temperature (23.7oC-31.4oC), pH (5.5-9.6), EC (3.82-46.8μS/cm), TDS (2.4-45 mg/L), Phosphate (0.0-1.09mgL-1), Nitrates (0.0-1.00mgL-1), Chlorophyll-a (5.8-11.5mg/m-3). In the 2nd quarter there was variation inwater temperature (22.4-25.0oC), pH (6.6-8.8.9), EC (19.23-21.47μS/cm), TDS (12.5-17.9 mg/L), Phosphate (1.64-1.84mgL-1), Nitrates (1.02-1.88mgL-1), Chlorophyll-a (4.6-15.6mg/m-3). In the 3rd quarter there was variation for water temperature (22.9-25.0oC), pH (7.5-9.1), EC (7.91-293.3μS/cm), TDS (11.7-180.9 mg/L), Phosphate (1.10-1.80mgL-1), Nitrates (1.28-1.84mgL-1),Chlorophyll-a (6.8-15.6mg/m-3). In the 4th quarter there was variation forwater temperature (23.5-30.3), pH (7.1-9.3), EC (18.24-623μS/cm), TDS (23.7-136.4 mg/L), Phosphate (1.45-1.99mgL-1), Nitrates (1.43-1.68mgL-1), Chlorophyll-a (6.6-25.9mg/m-3). The metal content of the fish pond water was variable throughout the year but with moderate levels of Al, Cd, Cr, Mn, Fe, Cu, Zn and Ba were found. The metal Fe, exceeded the DWAF guideline values during this first quarter. The presence of Cd in the fish pond water could be attributed to rainfall eroding the earthen embankments of the fish pond. The results of physico-chemical parameters promotes the growth of cyanobacteria in the fish ponds. Flow cam and SEM were used to identify the cyanobacteria species and most cyanobacteria identified are hazard to human health, fish and other aquatic organisms. Molecular technologies were used to identify cyanotoxins and there was no cyanotoxins detected which was concluded that during collection of water samples no cyanobacteria produced toxins.en_US
dc.description.sponsorshipNRFen_US
dc.format.extent1 online resource (viii, 121 leaves : color illustrations, color maps)
dc.identifier.apacitationTshifura, R. A. (2018). <i>An Assessment of Algae and cyanotoxins in small-holder Aquaculture farms in Vhembe, South Africa</i>. (). . Retrieved from http://hdl.handle.net/11602/1207en_ZA
dc.identifier.chicagocitationTshifura, Rudzani Alice. <i>"An Assessment of Algae and cyanotoxins in small-holder Aquaculture farms in Vhembe, South Africa."</i> ., , 2018. http://hdl.handle.net/11602/1207en_ZA
dc.identifier.citationTshifura, Rudzani Alice (2018) An Assessment of Algae and cyanotoxins in small-holder Aquaculture farms in Vhembe, South Africa. University of Venda, south Africa.<http://hdl.handle.net/11602/1207>.
dc.identifier.ris TY - Dissertation AU - Tshifura, Rudzani Alice AB - In South Africa, inland aquaculture is on the increase, especially among the rural communities. Thus aquaculture is able to provide a source of employment and improve rural incomes. This study assessed algae species and their cyanotoxins in small holder production in Vhembe district, Limpopo, South Africa. Thirteen study sites were selected to assess the algae species and their cyanotoxins. The water samples were collected in four quarters and analysed for water temperature, pH, total dissolved solids, Electrical conductivity, phosphates, nitrates, chlorophyll, cyanobacteria, cyanotoxins, metal species and quality of the water in the fish ponds. In the 1st quarter of the year there was variation in Water Temperature (23.7oC-31.4oC), pH (5.5-9.6), EC (3.82-46.8μS/cm), TDS (2.4-45 mg/L), Phosphate (0.0-1.09mgL-1), Nitrates (0.0-1.00mgL-1), Chlorophyll-a (5.8-11.5mg/m-3). In the 2nd quarter there was variation inwater temperature (22.4-25.0oC), pH (6.6-8.8.9), EC (19.23-21.47μS/cm), TDS (12.5-17.9 mg/L), Phosphate (1.64-1.84mgL-1), Nitrates (1.02-1.88mgL-1), Chlorophyll-a (4.6-15.6mg/m-3). In the 3rd quarter there was variation for water temperature (22.9-25.0oC), pH (7.5-9.1), EC (7.91-293.3μS/cm), TDS (11.7-180.9 mg/L), Phosphate (1.10-1.80mgL-1), Nitrates (1.28-1.84mgL-1),Chlorophyll-a (6.8-15.6mg/m-3). In the 4th quarter there was variation forwater temperature (23.5-30.3), pH (7.1-9.3), EC (18.24-623μS/cm), TDS (23.7-136.4 mg/L), Phosphate (1.45-1.99mgL-1), Nitrates (1.43-1.68mgL-1), Chlorophyll-a (6.6-25.9mg/m-3). The metal content of the fish pond water was variable throughout the year but with moderate levels of Al, Cd, Cr, Mn, Fe, Cu, Zn and Ba were found. The metal Fe, exceeded the DWAF guideline values during this first quarter. The presence of Cd in the fish pond water could be attributed to rainfall eroding the earthen embankments of the fish pond. The results of physico-chemical parameters promotes the growth of cyanobacteria in the fish ponds. Flow cam and SEM were used to identify the cyanobacteria species and most cyanobacteria identified are hazard to human health, fish and other aquatic organisms. Molecular technologies were used to identify cyanotoxins and there was no cyanotoxins detected which was concluded that during collection of water samples no cyanobacteria produced toxins. DA - 2018-09-21 DB - ResearchSpace DP - Univen KW - Cyanotoxins KW - Cyanobacteria KW - Aquaculture KW - Rural communities KW - Tilapia fish fixing LK - https://univendspace.univen.ac.za PY - 2018 T1 - An Assessment of Algae and cyanotoxins in small-holder Aquaculture farms in Vhembe, South Africa TI - An Assessment of Algae and cyanotoxins in small-holder Aquaculture farms in Vhembe, South Africa UR - http://hdl.handle.net/11602/1207 ER - en_ZA
dc.identifier.urihttp://hdl.handle.net/11602/1207
dc.identifier.vancouvercitationTshifura RA. An Assessment of Algae and cyanotoxins in small-holder Aquaculture farms in Vhembe, South Africa. []. , 2018 [cited yyyy month dd]. Available from: http://hdl.handle.net/11602/1207en_ZA
dc.language.isoenen_US
dc.rightsUniversity of Venda
dc.subjectCyanotoxinsen_US
dc.subjectCyanobacteriaen_US
dc.subjectAquacultureen_US
dc.subjectRural communitiesen_US
dc.subjectTilapia fish fixingen_US
dc.subject.ddc579.80968257
dc.subject.lcshAlgae -- South Africa -- Limpopo
dc.subject.lcshAquaculture -- South Africa -- Limpopo
dc.subject.lcshAlgae culture -- South Africa -- Limpopo
dc.subject.lcshAgriculture -- South Africa -- Limpopo
dc.subject.lcshCyanobacterial toxins -- South Africa -- :Limpopo
dc.subject.lcshAquatic resource -- South Africa -- Limpopo
dc.subject.lcshCrytogams -- South Africa -- Limpopo
dc.subject.lcshAlgology -- South Africa -- Limpopo
dc.subject.lcshFreshwater algae -- South Africa -- Limpopo
dc.subject.lcshGreen algae -- South Africa -- Limpopo
dc.titleAn Assessment of Algae and cyanotoxins in small-holder Aquaculture farms in Vhembe, South Africaen_US
dc.typeDissertationen_US

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