SciELO - Scientific Electronic Library Online

 
vol.34 número2 índice de autoresíndice de assuntospesquisa de artigos
Home Pagelista alfabética de periódicos  

Serviços Personalizados

Artigo

Indicadores

Links relacionados

  • Em processo de indexaçãoCitado por Google
  • Em processo de indexaçãoSimilares em Google

Compartilhar


Water SA

versão On-line ISSN 1816-7950
versão impressa ISSN 0378-4738

Water SA vol.34 no.2 Pretoria Fev. 2008

 

Physical and chemical characteristics of thermal springs in the Waterberg area in Limpopo Province, South Africa

 

 

J OlivierI; HJ van NiekerkI; IJ van der WaltII

IDepartment of Environmental Sciences, PO Box 392, Unisa 0003, South Africa
IIDepartment of Geography and Environmental Studies, North-West University, Potchefstroom 2531, South Africa

Correspondence

 

 


ABSTRACT

The Limpopo Province in South Africa is richly endowed with thermal springs. Some have been developed for recreational, tourism or other purposes, while a number remain completely undeveloped. If the full economic potential of springs can be realised in a sustainable manner, they could make a substantial contribution to the local or even regional economy. The optimal use of a thermal spring is largely dependent upon its physical and chemical characteristics. This article focuses on the temperature and chemical features of 8 selected thermal springs located in the southern (Waterberg) region of the Limpopo Province, namely Warmbaths, Loubad, Vischgat, Die Oog, Rhemardo, Lekkerrus, Libertas and Buffelshoek. All of these springs are of meteoric origin, with water temperatures ranging from 30°C to 52°C. The mineral composition of the thermal waters reflects the geological formations found at the depth of origin. Changes in land use that occurred over the past few decades have apparently had no impact on the physical and chemical properties of the thermal spring waters. This effect may, however, become evident at a later stage due to a time lag in the migration of contaminants. The fluoride concentration of water from seven of the eight springs (all except Loubad) does not conform to domestic water quality guidelines and makes the water unfit for human consumption. Unacceptably high values of mercury were detected at Libertas. It is recommended that strict monitoring of the concentration of fluoride and other potentially harmful elements should be mandatory whenever the thermal spring water is used for bottling, domestic or full-contact recreational purposes.

Keywords: thermal springs, Limpopo Province, water temperature, chemical composition, trace elements


 

"Full text available in PDF"

 

References

AHMAD M, AKRAM W, AHMAD N, TASNEEM MA, RAFIQ M and LATIF Z (2002) Assessment of reservoir temperatures of thermal springs of the northern areas of Pakistan by chemical and isotope geothermometry. Geotherm. 31(5) 613-631.         [ Links ]

ARNÓRSSON S, GUNNARSSON I, STEFÁNSSON A, ANDRÈS-DÓTTIR A and SVEINBJORNSDÓTTIR AE (2002) Major element chemistry of surface- and ground waters in basaltic terrain, N-Iceland. I. Primary mineral saturation. Geochim. Cosmochim. Acta 66 (23) 4015-4046.         [ Links ]

ATKINSON TC and DAVIDSON (2002) Is the water still hot? Sustainability and the thermal springs at Bath, England. Geol. Soc., London, Special Publications 193 15-40.         [ Links ]

ASHTON PJ and SCHOEMAN FR (1986) Southern African thermal springs. The Naturalist 30 (1) 32-34.         [ Links ]

BAHATI G (2003) Geothermal energy in Uganda, country update. Proc. Int. Geotherm. Conf., Sept 2003, Reykjavik, Iceland. 48-53.         [ Links ]

BARADÁCS E, HUNYADI I, DEZS Z, CSIGE I and SZERBIN P (2001) 226Ra in geothermal and bottled mineral waters of Hungry. Radiat. Meas. 34 (1-6) 385-390.         [ Links ]

BOEKSTEIN M (1998) Hot Springs Holidays: Visitors' Guide to Hot Springs and Mineral Spa Resorts in Southern Africa. Mark Boekstein and Logo Print, Cape Town.         [ Links ]

BOJADGIEVA K, DIPCHIKOVA S, BENDEREV A and KOSEVA J (2002) Thermal Waters and Balneolody in Bulgaria. GHC Bulletin, March, 18-25.         [ Links ]

BOND GW (1947) 'n Geochemiese opname van die grondwatervoor-rade van die Unie van Suid-Afrika. Memoirs Geol. Surv. S. Afr. 41 90-94.         [ Links ]

BOOYENS B (1981) Bronwaters van Genesing - Die Tradisionele Warmbronwaterkultuur in ons Volksgeneeskunde. Tafelberg, Kaapstad.         [ Links ]

BRYAN K (1919) Classification of springs. J. Geol. 27 552-561.         [ Links ]

CHRISTOPHER H and ARMSTEAD H (1978) Geothermal Energy: Its Past, Present and Future Contributions to the Energy Needs of Man. E. & F.N Spon, London, UK.         [ Links ]

CHURCHILL RK and CLINKERBEARD JP (2005) Perspectives on mercury contributions to watersheds from historic mercury mines and non-mine mercury sources: examples from the sulphur creek mining district. Cordilleran Section - 101st Annual Meeting, Piedmont, Italy, 29 April - 1 May 2005.         [ Links ]

CRAUN GF, CALDERON RL and CRAUN ME (2005) Outbreaks associated with recreational water in the United States. Int. J. Environ. Health Res. 15 (4) 243-262.         [ Links ]

DEPARTMENT OF WATER AFFAIRS AND FORESTRY (1996) South African Water Quality Guidelines. Domestic Water Quality. http://www.dwaf.gov.za (Accessed 13 December 2006)        [ Links ]

DIAMOND RE and HARRIS C (2000) Oxygen and hydrogen isotope geochemistry of thermal springs of the Western Cape, South Africa: Recharge at high altitude? J. Afr. Earth Sci. 31 (3/4) 467-481.         [ Links ]

DICKSON M H and FANELLI M (2004) What is geothermal energy? International geothermal Association (IGA) http://iga.igg.cnr.it/geo/geoenergy.php. (Accessed 13 September 2006).         [ Links ]

DIPIPPO R (1999) Small Geothermal Plants: Design, performance, and economics. GHC Bulletin, June, 1-8.         [ Links ]

DOTSIKA E, LEONTIADIS I, POUTOUKIS D CIONI R and RACO B (2006) Fluid geochemistry of the Chios geothermal area, Chios Island, Greece. J. Volcanol. Geotherm. Res. 154 (3-4) 237-250.         [ Links ]

DU TOIT AL (1918) The geology of the crystalline limestone deposits near Port Shepstone and Hermansburg, Natal. Memoir Geol. Surv. S. Afr. 11 115-116.         [ Links ]

DU TOIT AL (1928) The underground water resources of the Uitenhage region. Explanations Cape Sheet no. 9 (Port Elizabeth), Geol. Surv. S. Afr. 40-41.         [ Links ]

EDMUNDS WM (2004) Bath thermal waters: 400 years in the history of geochemistry and hydrogeology. Geol. Soc., London, Special Publication 225 193-199.         [ Links ]

ENCARTA ENCYCLOPEDIA (1997). Microsoft Publication. FERREIRA SLA (1992) 'n Ruimtelike Analise van die Distriks-ekonomie van Warmbad (Transvaal). Unpublished D. Litt. Thesis, University of South Africa, South Africa.         [ Links ]

GEMICI Ü, TARCAN G, ÇOLAK M and HELVACI (2003) Hydrogeochemical and hydrogeological investigations of thermal waters in the Emet area (Ktitahya, Turkey). Appl. Geochem. 19(1) 105-117.         [ Links ]

GEVERS TW (1942) The hot springs in the Tugela River near Kranskop, Natal. Trans. Geol. Soc. S. Afr. 45 65-74.         [ Links ]

GEVERS TW (1963) Thermal Springs at Lilani, Natal, and their geological settings. Trans. Geol. Soc. S. Afr. 65 129 -155.         [ Links ]

GRASBY E and HUTCHEON I (2001) Controls on the distribution of thermal springs in the southern Canadian Cordillera. Can. J. Earth Sci. 38 (3) 427-440.         [ Links ]

HARING M, RACHEL R, PENG X, GARRETT RA and PRANG-ISHVILI D (2005) Viral diversity in hot springs of Pozzuoli, Italy, and characterization of a unique archaeal virus, Acidianus bottle-shaped virus, from a new family, the Ampullaciridae. J. Virol. 79(15) 9904-0011.         [ Links ]

HARVEY K (2007) Healing Touch. Sawubona, January 2007, 75-76.         [ Links ]

HELLMAN MJ and RAMSEY MS (2004) Analysis of hot mineral springs and associated deposits in Yellowstone National Park using ASTER and AVIRIS remote sensing. J. Volcanol. Geotherm. Res. 134 (1-2) 195-219.         [ Links ]

HOFFMANN JRH (1979) Die Chemiese Samestelling van Warmwater-bronne in Suid- en Suidwes-Afrika. CSIR Report No. WAT 56A, Pretoria. 21 pp.         [ Links ]

HOOLE RG (2001) The Development of Lilani Hot Spring: An Analysis of Socio-Economic and Environmental Impacts. Unpub. M.Sc. Dissertation, University of Natal, Pietermaritzburg, South Africa.         [ Links ]

HUTTRER G W (2001) The status of geothermal power generation 1995-2000. Geothermics 30 1-27. www.elsevier.com/locate/geothermics. (Accessed 7 December 2006).         [ Links ]

KRISTMANNSDOTTIR H and BJORNSSON O G (2003) Balneological prospects in Iceland using geothermal resources. Paper 055. Proc. Int. Geotherm. Conf. September 2003, Reykjavik, S03. 19-26.         [ Links ]

IZUMIYAMA S, YAGITA K, FURUSHIMA-SHIMOGAWARAM ASAKURA T, KARASUNDANI T and ENDO T (2003) Occurrence and distribution of Naegleria species in thermal waters in Japan. J. Eukaryot Microbiol. 50 (1) 514.         [ Links ]

KEMPSTER PL, VAN VLIET HR, LOOSER U, PARKER I, SILBERBAUER MJ and DU TOIT P (1996) Overview of Radioactivity in Water Sources: Uranium, Radium and Thorium. Institute for Water Quality Studies, Department of Water Affairs and Forestry, South Africa.         [ Links ]

KENT LE (1946) The warm springs of Loubad, near Nylstroom, Transvaal. Trans. Royal Soc. South Afr. 31 (2) 151-168.         [ Links ]

KENT LE (1948) Diatomaceous deposits in the Union of South Africa. Mem. Geol. Surv. S. Afr. 42(11) 75-78; 81-84.         [ Links ]

KENT LE (1949) The thermal waters of the Union of South Africa and South West Africa. Trans. Geol. Soc. S. Afr. 52231-264.         [ Links ]

KENT LE (1952) The Medicinal Springs of South Africa. Publication and Travel Department, South African Railways, Pretoria.         [ Links ]

KENT LE (1969) The thermal waters in the Republic of South Africa. In: Proc. of Symp. II on Mineral and Thermal Waters of the World, B - overseas Countries, Vol 19, Report of the 23rd session of the Int. Geol. Conf., 1968, Academia, Prague. 143-164.         [ Links ]

KENT LE and RUSSELL HD (1950) The warm spring on Buffelshoek, near Thabazimbi, Transvaal. Trans. Royal Soc. S. Afr. 32161-175.         [ Links ]

LABOUTKA M and VYLITA B (1983) Mineral and thermal waters of Western Bohemia, Geo. J. 7 (5) 403-411.         [ Links ]

LAMOREAUx PE and TANNER JT (eds.) (2001) Springs and Bottled Waters of the World. Ancient History, Source, Occurrence, Quality and Use. Springer Verlag, Berlin.         [ Links ]

LLOYD JW and HEATHCOTE JA (1985) Natural Inorganic Hydrochemistry in Relation to Groundwater. Clarendon Press, Oxford.         [ Links ]

LUND J W (1996) Balneological use of thermal and mineral waters in the USA, Geotherm. 25 (1) 103-147. Elsevier Science, Ltd, Great Britain.         [ Links ]

LUND J W (2000) Balneological use of thermal water in the USA. GHC Bulletin, September, 31-34.         [ Links ]

LUND J W and FREESTON D H (2001) World-wide direct uses of geothermal energy 2000. Geotherm. 30 29-68.         [ Links ]

MANDAL and SUZUKI KT (2002) Arsenic round the world: a review. Talanta 58(1) 201-235.         [ Links ]

MAZOR E and VERHAGEN BT (1983) Dissolved ions, stable and radioactive isotopes and noble gases in thermal waters of South Africa. J. Hydrol. 63 315-329.         [ Links ]

MIYAMOTO H, JITSURONG S, SHIOTA R, MARUTA K, YOSHIDA S and YABUUCHI E (1997) Molecular determination of infection source of a sporadic Legionella pneumonia case associated with a hot spring bath. Microbial. Immunol. 41 (3) 197-202.         [ Links ]

MOCK JE (1993) Geothermal energy - the environmentally responsible energy technology for the 90s: A federal perspective. In: Proc. Geothermal Energy: The Environmentally Responsible Energy Technology for the Nineties. Berkeley, California, USA, 27-29 April 1993.         [ Links ]

PENTECOST A, JONES B and RENAUT RW (2003) What is a hot spring? Can. J. Earth Sci. 40 (11) 1443-1446.         [ Links ]

PETRACCIA L, LIBERATI G and MASCIULLO SG (2005) Water, mineral waters and health. Clin. Nutrit. 25 (3) 377-385.         [ Links ]

PRESS F and SIEVER R (1986) Earth (4th edn.). WH Freeman and Co., New York.         [ Links ]

RINDL MR (1916) The Medicinal Springs of South Africa (Supplement). S. Afr. J. Sci. 13 528-552.         [ Links ]

RINDL MR (1918) The Medicinal Springs of South Africa (Supplement). S. Afr. J. Sci. 15 217-225.         [ Links ]

RINDL MR (1928) The Medicinal Springs of South Africa (Supplement). S. Afr. J. Sci. 25 116-126.         [ Links ]

RINDL MR (1930) The Medicinal Springs of South Africa (Supplement). S. Afr. J. Sci. 27 213-226.         [ Links ]

RINDL MR (1931) The Medicinal Springs of South Africa (Supplement). S. Afr. J. Sci. 28 119-130.         [ Links ]

RINDL MR (1932) The Medicinal Springs of South Africa (Supplement). S. Afr. J. Sci. 29 278-280.         [ Links ]

RINDL MR (1934) The Medicinal Springs of South Africa (Supplement). S. Afr. J. Sci. 31 173-176. RINDL MR and Ing D (1937) The Medicinal Springs of South Africa (Supplement). S. Afr. J. Sci. 33 254-257.         [ Links ]

ROMERO L, ALOMSO H, CAMPANO P, FANFANI L, CIDU R, DADEA C, KEEGAN T, THORNTON I and FARAGO M (2003) Arsenic enrichment in waters and sediments of the Rio Loa (Second Region, Chile). Appl. Geochem. 18(9) 1399-1416.         [ Links ]

ROSE JG (1910) A new Cape thermal Chalybeate spring. S. Afr. J. Sci. 7 202-203.         [ Links ]

SABA D S, NAJAF M E, MUSAZAI A M and TARAKI S A (2004) Geothermal energy in Afghanistan: Prospects and potential. http//www.mindfully.org/Energy/2004/Afghanistan-Geothermal_Energy1feb04 (Accessed 10 May 2006).         [ Links ]

SANNER B (2000) Baden-Baden, a famous thermal spa with a long history. GHC Bulletin, September, 16-22.         [ Links ]

SHEVENELL L, GARSIDE L, AREHART G, VAN SOEST M and KENNEDY BM (2002) Geothermal sampling of thermal and non-thermal waters in Nevada to evaluate the potential for resource utilization. GRC Trans. 2002.         [ Links ]

SÓHNGE PG (1945) The geology of the Messina copper mines and surrounding country. Mem. Geol. Surv. S. Afr. 40 106-107; 122-127.         [ Links ]

SOUTH AFRICAN BUREAU OF STANDARDS (SABS) (1999) Class 1 Potable Water Standards. SABS 241:1999, Pretoria, South Africa.         [ Links ]

SAMSUDIN AR, HAMZAH U, RAHMAN RA, SIWAR C, JANI MF and OTHMAN R (1997) Thermal springs of Malaysia and their potential development. J. Asian Earth Sci. 15 275-289.         [ Links ]

SUGITA Y, FUJII T, HAYASHI I, AOKI T, YOKOYAMA T, MORIMATSU M, FUKUMA T and TAKAMIYA Y (1999) Primary amebic meningoencephalis due to Naegleria fowleri: An autopsy case in Japan. Pathol. Int. 49 (5) 468-470.         [ Links ]

TEMPERLEY BN (1975) The Welgevonden Fault Aquifer of the Central Transvaal and its Thermal Water. Groundwater Series No. 2, South African Geological Survey. Pretoria, South Africa.         [ Links ]

USHER BH, PRETORIUS JA, DENNIS I, JOVANOVIC N, CLARKE S, CAVE L, TITUS R and XU Y (2004) Identification and Prioritisation of Groundwater Contaminants and Sources in South Africa's Urban Catchment. WRC Report No. 1326/1/04, Water Research Commission, Pretoria, South Africa.         [ Links ]

VAN VUUREN K (1990) Die Warmwaterbronne van Suidwes-Kaap-land: Hulle Verbreiding, Eienskappe en Benutting. B.A. Honours Dissertation, University of Stellenbosch.         [ Links ]

VIMMERSTEDT LJ (1998) Opportunities for Small Geothermal Projects: Rural power for Latin America, the Carribbean and the Philippines. Natural Renewable Energy Laboratory, Colorado, USA.         [ Links ]

VISSER DJL (1989) The Geology of the Republics of South Africa, Transkei, Bophuthatswana, Venda and Ciskei and the Kingdoms of Lesotho and Swaziland (4th edn.). Department of Mineral and Energy Affairs, Pretoria, South Africa.         [ Links ]

VON BACKSTRÖM JW (1962) Thermal springs on Driefontein 317 KR north of Naboomspruit, Potgietersrus District, Transvaal. Ann. Geol. Surv. S. Afr. 1 183-187.         [ Links ]

 

 

Correspondence:
+27 12 352 4284
Fax: +27 12 352 4270
E-mail: olivij@unisa.ac.za

Received 22 June 2007
Accepted in revised form 4 February 2008

Creative Commons License Todo o conteúdo deste periódico, exceto onde está identificado, está licenciado sob uma Licença Creative Commons