PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Evaluation of spatial and temporal variations of surface water quality in the Nile River Damietta branch

Identyfikatory
Warianty tytułu
PL
Ocena zmian przestrzennych i czasowych jakości wody powierzchniowej w dopływie Nilu Damietta
Języki publikacji
EN
Abstrakty
EN
The objective of this study is to reveal the spatial and temporal variations of surface water quality in this part of the River Nile with respect to heavy metals pioneerution. Seventeen parameters in total were monitored at seven sites on a monthly basis from October 2013 to September 2014. The dataset was treated using the tools of univariate and multivariate statistical analyses. Cluster analysis showed three different groups of similarity between the sampling sites reflecting the variability in physicochemical characteristics and pollution levels of the study area. Six PCs factors were identified as responsible for the data structure explaining 91 % of the total variance. These were eutrophication factor (23.2 %), physicochemical factor (20.6 %), nutrients (16.3 %) and three additional factors, affected by alkalinity and heavy metals, recorded variance less than 15 % each. Also, the heavy metals pollution index (HPI) revealed that most of the calculated values were below the critical index limit of 100. However, two higher values (124.89 and 133.11) were calculated at sites V and VI during summer due to the temperature and increased run-off in the river system.
Rocznik
Strony
569--580
Opis fizyczny
Bibliogr. 42 poz., rys., tab.
Twórcy
  • Zoology Department, Faculty of Science, Damietta University, Hassab Allah Elkafrawy, 3451 New Damietta, Egypt, phone: 00201063865270, 0020572403866, fax 0020572403868
  • Zoology Department, Faculty of Science, Damietta University, Hassab Allah Elkafrawy, 3451 New Damietta, Egypt, phone: 00201063865270, 0020572403866, fax 0020572403868
  • National Institute of Oceanography and Fisheries, Qaitbay, 21513 Alexandria, Egypt
autor
  • Zoology Department, Faculty of Science, Damietta University, Hassab Allah Elkafrawy, 3451 New Damietta, Egypt, phone: 00201063865270, 0020572403866, fax 0020572403868
Bibliografia
  • [1] Mohamed I, Othman F, Ibrahim AI, Alaa-Eldin M, Yunus RM. Assessment of water quality parameters using multivariate analysis for Klang River basin. Environ Monit Assess. 2015;187(1):1-12. DOI: 10.1007/s10661-014-4182-y.
  • [2] Niemi GJ, DeVore P, Detenbeck N, Taylor D, Lima A, Pastor J, et al. Overview of case studies on recovery of aquatic systems from disturbance. Environ Manage. 1990;14(5):571-587. DOI: 10.1007/BF02394710.
  • [3] Spyra A, Kubicka J, Strzelec M. The use of biological indices for the assessment of the river quality (Ruda River, Poland). Ecol Chem Eng S. 2017;24(2):285-298. DOI: 10.1515/eces-2017-0020.
  • [4] Karbassi A, Nouri J, Mehrdadi N, Ayaz G. Flocculation of heavy metals during mixing of freshwater with Caspian Sea water. Environ Geol. 2008;53(8):1811-1816. DOI: 10.1007/s00254-007-0786-7.
  • [5] Najafpour S, Alkarkhi A, Kadir M, Najafpour GD. Evaluation of spatial and temporal variation in river water quality. Int J Environ Res. 2009;2(4):349-358. DOI: 10.1016/j.jenvman.2009.11.001.
  • [6] Wahaab RA, Badawy MI. Water quality assessment of the River Nile system: an overview. Biomed Environ Sci. 2004;17(1):87-100. https://www.ncbi.nlm.nih.gov/pubmed/15202868.
  • [7] Shrestha S, Kazama F. Assessment of surface water quality using multivariate statistical techniques: A case study of the Fuji River basin, Japan. Environ Modell Softw. 2007;22(4):464-475. DOI: 10.1016/j.envsoft.2006.02.001.
  • [8] Alberto WD, del Pilar DM, Valeria AM, Fabiana PS, Cecilia HA, de Los Ángeles BM. Pattern recognition techniques for the evaluation of spatial and temporal variations in water quality. A case study: Suquıá River Basin (Córdoba-Argentina). Water Res. 2001;35(12):2881-2894. DOI: 10.1016/S0043-1354(00)00592-3.
  • [9] Lee JY, Cheon JY, Lee KK, Lee SY, Lee MH. Statistical evaluation of geochemical parameter distribution in a ground water system contaminated with petroleum hydrocarbons. J Environ Qual. 2001;30(5):1548-1563. DOI: 10.2134/jeq2001.3051548x.
  • [10] Simeonova P, Simeonov V, Andreev G. Environmetric analysis of the Struma River water quality. Cent Eur Chem. 2003;2(2):121-136.
  • [11] Giri S, Singh AK. Assessment of surface water quality using heavy metal pollution index in Subarnarekha River, India. Water Qual Expo Health. 2014;5(4):173-182. DOI: 10.1007/s12403-013-0106-2.
  • [12] Mohan SV, Nithila P, Reddy SJ. Estimation of heavy metals in drinking water and development of heavy metal pollution index. J Environ Sci Health A. 1996;31(2):283-289. DOI: 10.1080/10934529609376357.
  • [13] El-Amier Y, Zahran M, Al-Mamoori S. Environmental changes along Damietta branch of the River Nile, Egypt. J Environ S, Mans Univ. 2015;44(2):235-255.
  • [14] Sabae SZ, Rabeh SA. Evaluation of the microbial quality of the river Nile waters at Damietta branch, Egypt. Egypt J Aquat Res. 2007;33(1):301-311. http://www.oceandocs.org/bitstream/handle/1834/1899/Text.pdf?sequence=1.
  • [15] Clesceri LS, Greenberg AE, Eaton AD, editors. Standard Methods for Examination of Water and Wastewater: 20th Edition. Washington, DC: American Public Health Association (APHA); 1999. ISBN: 9780875532356.
  • Google Scholar
  • [16] Wetzel RG, Likens GE. Limnological Analyses. 3rd Edition. New York, NY: Springer; 2000. ISBN: 9781475732504. DOI: 10.1007/978-1-4757-3250-4.
  • [17] Voutsa D, Manoli E, Samara C, Sofoniou M, Stratis I. A study of surface water quality in Macedonia, Greece: Speciation of nitrogen and phosphorus. Water Air Soil Pollut. 2001;129(1-4):13-32. DOI: 10.1023/A:1010315608905.
  • [18] Prasad B, Mondal KK. The impact of filling an abandoned open cast mine with fly ash on ground water quality: a case study. Mine Water Environ. 2008;27(1): 40-45. DOI: 10.1007/s10230-007-0021-5.
  • [19] Prasad B, Sangita K. Heavy metal pollution index of ground water of an abandoned open cast mine filled with fly ash: a case study. Mine Water Environ. 2008;27(4):265-267. DOI: 10.1007/s10230-008-0050-8.
  • [20] Reza R, Singh G. Heavy metal contamination and its indexing approach for river water. Int J Environ Sci Tech. 2010;7(4): 785-792. DOI: 10.1007/BF03326187.
  • [21] Begum A, Ramaiah M, Khan I, Veena K. Heavy metal pollution and chemical profile of Cauvery River water. J Chem. 2009;6(1):47-52. DOI: 10.1155/2009/154610.
  • [22] Abdel-Satar AM. Environmental studies on the impact of the drains effluent upon the southern sector of Lake Manzalah, Egypt. Egypt J Aquat Biol Fish. 2001;5(3):17-30. DOI: 10.21608/ejabf.2001.1687.
  • [23] Phiri O, Mumba P, Moyo B, Kadewa W. Assessment of the impact of industrial effluents on water quality of receiving rivers in urban areas of Malawi. Int J Environ Sci Tech. 2005;2(3):237-244. DOI: 10.1007/BF03325882.
  • [24] Rim-Rukeh A, Ikhifa O, Okokoyo A. Effects of agricultural activities on the water quality of Orogodo River, Agbor Nigeria. J Appl Sci Res. 2006;2(5):256-259.
  • [25] El Shakour EHA, Mostafa A. Water quality assessment of river Nile at Rosetta branch: impact of drains discharge. Middle-East J Sci Res. 2012;12(4):413-423. DOI: 10.5829/idosi.mejsr.2012.12.4.1694.
  • [26] Vadde KK, Wang J, Cao L, Yuan T, Mccarthy AJ, Sekar R. Assessment of water quality and identification of pollution risk locations in Tiaoxi River (Taihu Watershed), China. Water. 2018;10(2):183. DOI: 10.3390/w10020183.
  • [27] Bauder TA, Waskom R, Sutherland P, Davis J, Follett R, Soltanpour P. Irrigation water quality criteria. Colorado State University Extension Fort Collins CO; 2011. https://mountainscholar.org/bitstream/handle/10217/182905/AEXT_ucsu2062205062011.pdf?sequence=1.
  • [28] Ravindra K, Kaushik A. Seasonal variations in physico-chemical characteristics of River Yamuna in Haryana and its ecological best-designated use. J Environ Monitor. 2003;5(3):419-426. DOI: 10.1039/B301723K.
  • [29] Farhadinejad T, Khakzad A, Jafari M, Shoaee Z, Khosrotehrani K, Nobari R, et al. The study of environmental effects of chemical fertilizers and domestic sewage on water quality of Taft region, Central Iran. Arab J Geosci. 2012;7(1):221-229. DOI: 10.1007/s12517-012-0717-0.
  • [30] Otero E, Carbery KK. Chlorophyll-a and turbidity patterns over coral reefs systems of La Parguera Natural Reserve, Puerto Rico. Rev Biol Trop. 2005;53:25-32. DOI: 10.15517/rbt.v53i1.26616.
  • [31] Wasmund N, Andrushaitis A, Łysiak-Pastuszak E, Müller-Karulis B, Nausch G, Neumann T, et al. Trophic status of the south-eastern Baltic Sea: a comparison of coastal and open areas. Estuar Coast Shelf S. 2001;53(6):849-864. DOI: 10.1006/ecss.2001.0828.
  • [32] Vieira JS, Pires JCM, Martins FG, Vilar VJP, Boaventura RAR, Botelho CMS. Surface water quality assessment of Lis River using multivariate statistical methods. Water Air Soil Pollut. 2012;223(9):5549-5561. DOI: 10.1007/s11270-012-1267-5.
  • [33] Brraich OS, Jangu S. Evaluation of water quality pollution indices for heavy metal contamination monitoring in the water of Harike wetland (Ramsar site), India wetland. Int J Sci Res Pub. 2015;5(2):1-6. http://www.ijsrp.org/research-paper-0215.php?rp=P383729.
  • [34] Venugopal T, Giridharan L, Jayaprakash M. Characterization and risk assessment studies of bed sediments of River Adyar-An application of speciation study. Int J Environ Res. 2010;3(4):581-598. DOI: 10.22059/ijer.2010.74.
  • [35] Caruso BS, Bishop M. Seasonal and spatial variation of metal loads from natural flows in the upper Tenmile Creek watershed, Montana. Mine Water Environ. 2009;28(3):166-181. DOI: 10.1007/s10230-009-0073-9.
  • [36] Prasad B, Bose J. Evaluation of the heavy metal pollution index for surface and spring water near a limestone mining area of the lower Himalayas. Environ Geol. 2001;41(1-2):183-188. DOI: 10.1007/s002540100380.
  • [37] Edet A, Offiong O. Evaluation of water quality pollution indices for heavy metal contamination monitoring. A study case from Akpabuyo-Odukpani area, Lower Cross River Basin (southeastern Nigeria). GeoJ. 2002;57(4):295-304. DOI: 10.1023/B:GEJO.0000007250.92458.de.
  • [38] Simeonov V, Stratis J, Samara C, Zachariadis G, Voutsa D, Anthemidis A, et al. Assessment of the surface water quality in Northern Greece. Water Res. 2003;37(17):4119-4124. DOI: 10.1016/S0043-1354(03)00398-1.
  • [39] Ogwueleka TC. Use of multivariate statistical techniques for the evaluation of temporal and spatial variations in water quality of the Kaduna River, Nigeria. Environ Monit Assess. 2015;187:137. DOI: 10.1007/s10661-015-4354-4.
  • [40] Shokr MS, El Baroudy AA, Fullen MA, El-Beshbeshy TR, Ramadan AR, Abd El Halim A, et al. Spatial distribution of heavy metals in the middle Nile Delta of Egypt. Int Soil Water Conserv Res. 2016;4(4):293-303. DOI: 10.1016/j.iswcr.2016.10.003.
  • [41] Canadian Soil Quality Guidelines (CSQG), Canadian Soil Quality Guidelines (CSQG) for the Protection of Environmental and Human Health. In: Canadian Environmental Quality Guidelines, 1999. Canadian Council of Ministers of the Environment (CCME). Winnipeg; 2007. http://esdat.net/Environmental%20Standards/Canada/SOIL/rev_soil_summary_tbl_7.0_e.pdf.
  • [42] Chen Z, Salem A, Xu Z, Zhang W. Ecological implications of heavy metal concentrations in the sediments of Burullus Lagoon of Nile Delta, Egypt. Estuar Coast Shelf S. 2010;86:491-498. DOI: 10.1016/j.ecss.2009.09.018.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ba19dfd5-d79d-49b1-98ee-711f335d6249
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.