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Water quality index assessment of Koudiat Medouar Reservoir, northeast Algeria using weighted arithmetic index method

Treść / Zawartość
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Warianty tytułu
PL
Ocena indeksu jakości wody w zbiorniku Koudiat Medouar (północnowschodnia Algieria) z użyciem ważonego indeksu arytmetycznego
Języki publikacji
EN
Abstrakty
EN
Water quality index (WQI) is a mathematical tool used to transform large quantities of water quality data into a single number which present water quality level. The aim of the present study is to evaluate the quality of Koudiat Medouar Dam in Batna (Algeria) to assess its suitability for drinking purposes. Samples were assessed for ten (10) physicochemical settings namely pH, electrical conductivity, total hardness, nitrate, sulphate, chloride, calcium, magnesium, dissolved oxygen and turbidity. The calculation of WQI was done via weighted arithmetic index method. The WQI values ranged from 99.097 to 174.92 during 2015. It reflected that the water samples were in February in the range of very poor quality and ranged to be in unsuitable for drinking rang in the all other months. The WQI of the present study reveals dam water is contaminated and not suitable for drinking purpose without giving treatment.
PL
Indeks jakości wody (WQI) jest matematycznym narzędziem używanym do transformacji dużej liczby danych o jakości wody w jedną liczbę, która charakteryzuje poziom jakości wody. Celem przedstawionych badań było określenie jakości wody w zbiorniku zaporowym Koudiat Medouar w Batna (Algieria), aby ustalić jej przydatność do celów spożywczych. W próbkach oceniano 10 parametrów fizycznych i chemicznych: pH, przewodność elektrolityczną, całkowitą twardość, stężenie azotanów, siarczanów, chlorków, wapnia, magnezu, rozpuszczonego tlenu i mętność. Obliczenia indeksu WQI wykonano metodą ważonego indeksu arytmetycznego. Wartości WQI zmieniały się od 99,097 do 174,92 w 2015 r. W lutym próbki wody cechowała bardzo zła jakość, a w pozostałych miesiącach woda nie nadawała się do picia. Indeks ustalony w niniejszych badaniach dowodzi, że woda w zbiorniku zaporowym jest zanieczyszczona i nie nadaje się do celów spożywczych bez uprzedniego uzdatniania.
Wydawca
Rocznik
Tom
Strony
221--228
Opis fizyczny
Bibliogr. 28 poz., rys., tab.
Twórcy
autor
  • Badji Mokhtar University, Department of Hydraulic, BP 12 Annaba, 23000, Algeria
autor
  • Badji Mokhtar University, Department of Hydraulic, BP 12 Annaba, 23000, Algeria
autor
  • Batna 2 University, Department of Hydraulic, Fésdis, Batna, Algeria
Bibliografia
  • ABBASI S.A. 2002. Water quality indices, state of the art report. Roorkee. National Institute of Hydrology, scientific contribution no. INCOH/SAR-25/2002 pp. 73.
  • ALMEIDA C.A. 2007. Influence of urbanization and tourist activities on the water quality of the Potrero de los Funes River (San Luis – Argentina). Environmental Monitoring and Assessment. Vol. 133. No. 1–3 p. 459–465.
  • BARTRAM J., BALANCE R. (ed.) 1996. Water quality monitoring: a practical guide to the design of freshwater quality studies and monitoring programme. London. UNDP, Chapman and Hall. ISBN 9780419223207 pp. 383.
  • BROWN R.M., MCCLELLAND N.J., DEININGER R.A., O’CONNOR M.F. 1972. A water quality index – Crashing the psychological barrier. International Conference on Water Pollution Research, Jerusalem, Israel. Vol. 6 p. 787–797.
  • BROWN R.M., MCCLELLAND N.I., DEININGER R.A., TOZER R.G. 1970. A water quality index: Do we dare? Water and Sewage Works. Vol. 117 p. 339–343.
  • CHATTERJI C., RAZIUDDIN M. 2002. Determination of water quality index of a degraded river in Asanol Industrial area, Raniganj, Burdwan, West Bengal. Nature, Environment and Pollution Technology. Vol. 1(2) p. 181–189.
  • DIERSING N. 2009. Water quality. Frequently asked questions [online]. Silver Spring, Maryland. PDA. NOAA. [Access 25.04.2015]. Available at: http://www. flridakey.noaa.gov/pdfs/ wqfaq.pdf
  • GARG R., SAKSENA D., RAO R. 2006. Assessment of physico-chemical water quality of Harsi Reservoir, district Gwalior, Madhya Pradesh. Journal of Ecophysiology and Occupational Health. Vol. 6 p. 33–40.
  • HORTON R.K. 1965. An index number system for rating water quality. Journal – Water Pollution Control Federation. Vol. 37 p. 300–305.
  • IRELAND E. 2001. Parameters of water quality – interpretation and standards. Wexford. EPA. ISBN 1840960153 pp. 133.
  • KHAN F., HUSAIN T., LUMB A. 2003. Water quality evaluation and trend analysis in selected watersheds of the Atlantic Region of Canada. Environmental Monitoring and Assessment. Vol. 88 p. 221–242.
  • KRISHNAN R.R., DHARMARAJ K., KUMARI B. 2007. A comparative study on the physicochemical and bacterial analysis of drinking, borewell and sewage water in the three different places of Sivakasi. Journal of Environmental Biology. Vol. 28 p. 105–108.
  • MEDUDHULA T., SAMATHA C., CHINTHA S. 2012. Analysis of water quality using physico-chemical parameters in lower manair Reservoir of Karimnagar district, Andhra Pradesh. International Journal of Environmental Sciences. Vol. 3(1) p. 172–180.
  • PRADEEP J.K. 1998. Hydrogeology and quality of ground water around Hirapur, District Sagar (M.P.). Pollution Research Paper. Vol. 17. No. 1 p. 91–94.
  • PRÜSS-USTEN A., CORVALAN C. 2006. Preventing disease through healthy environments: Towards an estimate of environmental burden of disease. Geneva. WHO. ISBN 9241593822 pp. 104.
  • RAMAKRISHNALAH C.R., SADAS HIVALAH C., RANGANNA G. 2009. Assessment of water quality index for the groundwater in Tumkur Taluk, Karnataka state, India. E-Journal of Chemistry. Vol. 6(2) p. 523–530.
  • ROOPSHAH P. 2016. Water quality index assessment of Sarfa Reservoir, Shahdol district (M.P.) India. International Journal of Applied Research. Vol. 2(2) p. 638–642.
  • SARGAONKAR A., DESHPANDE V. 2003. Development of an overall index of pollution for surface water based on a general classification scheme in Indian context. Environmental Monitoring and Assessment. Vol. 89 p. 43–67.
  • SHIVAYOGIMATH C.B., KALBURGI P.B, DESHANNAVAR U.B., VIRUPAKSHAIAH D.B.M. 2012. Water quality evaluation of River Ghataprabha, India. Research Journal of Environment Sciences. Vol. 1(1) p. 12–18.
  • TAHERA A., FATEMA TUZ J., FAHMIDA A., TRIDIB ROY C., SABUJ KANTI M., DIGBIJOY D., MILAN K. B, MD AKRAMUL I., MAHFUZAR R. 2016. Water quality index for measuring drinking water quality in rural Bangladesh: a crosssectional study. Journal of Health, Population and Nutrition. Vol. 35(4) p. 1–12. DOI 10.1186/s41043-016-0041-5.
  • TEBUTT T.H.Y. 1983. Principles of quality control. London. Pergamon Press. ISBN 9781483285979 pp. 235.
  • TIRI A. 2010. Pollution urbaine et industrielle des eaux de surface du barrage de Koudiat Medouar Est Algerien [Urban and industrial pollution of the surface waters of the Koudiat Medouar East Algerian dam]. Phd. Thesis. University of Batna, Algeria.
  • TRIPATY J.K., SAHU K.C. 2005. Seasonal hydrochemistry of groundwater in the Barrier Spit system of the Chilika Lagoon, India. Journal of Environmental Hydrology. Vol. 13 p. 1–9.
  • TYAGI S., SHARMA B., SINGH P., DOBHAL R. 2013. Water quality assessment in terms of water quality index. American Journal of Water Resources. Vol. 1(3) p. 34–38.
  • VENKATESHARAJU K., RAVIKUMAR P., SOMASHEKAR R.K., PRAKASH K.L. 2010. Physico-chemical and bacteriological investigation on the river Cauvery of Kollegal Stretch in Karnataka. Journal of Science Engineering and Technology. Vol. 6(1) p. 50–59.
  • VILA J.M. 1980. La chaine Alpine d’Algérienne orientale et des confins Algéro – Tunisiens [The alpine chain of eastern Algeria and Algerian-Tunisian borders]. PhD thesis. Paris VI, France.
  • WHO 1993. International standards for drinking water. Geneva. World Health Organization pp. 130.
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Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-65e3f61c-38c8-4277-989a-f6c763eb7213
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