Ground water quality assessment near municipal landfill and characterization of leachate in Kaniqrizhala area, Kurdistan Region of Iraq
DOI:
https://doi.org/10.23918/eajse.v9i3p19Keywords:
Ground Water, Water Quality Index, Heavy Metals;, Leachate Pollution Index, PlantAbstract
The present study is to characterize the groundwater and leachate in the Kaniqrzhala landfill in Erbil City. Groundwater samples were collected from six wells and a leachate sample in order to evaluate the possible effect of leachate percolation into groundwater and assess the potential contamination. Several physicochemical parameters were analyzed to evaluate the groundwater and leachate characterizations, including (turbidity, pH, EC, total dissolved solids (TDS), total hardness (TH), Ca²⁺, Mg²⁺, total alkalinity (TA), Cl⁻, SO₄²⁻, PO₄³⁻, NH₃⁺, NO₃⁻, Na⁺, K⁺) and heavy metals (Cu, Zn, Fe, Pb, Cr, and Cd). In addition, the evaluation of the water quality index (WQI) and leachate pollution index (LPI) were determined. All groundwater samples were determined to be below the permitted limits set by WHO guidelines, excluding EC, TDS, PO₄³⁻, and NO₃⁻, showing moderately high concentrations and leachate sample concentrations above allowed limits. The WQI values ranged from 74.833 to 88.463, meaning that all groundwater samples were deemed "good" and fit for drinking and other uses. The LPI value is high (23.938), indicating a high contamination potential in the leachate. The results showed Hypericum triquetrifolium Turra, Tribulus terrestris, and Caper spinosa plant leaves have varying capacities to adsorb heavy metal ions from leachate.
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References
[1] Sharef AJ, Dara RN, Ahmed AR. Greater zab river Basin planning (2050). Iraqi Journal of
Agricultural Sciences 2021;52(5):1150-62.
[2] Maheswaran G, Elangovan K. Groundwater Quality Evaluation in Salem District, Tamil Nadu,
Based on Water Quality Index. Nature Environment and Pollution Technology.
2014;13(3):547-52.
[3] Maulood YI, Aziz SQ. Soil and Municipal Solid Waste Leachate Characterization at Erbil
Anaerobic Landfill Site. ZANCO Journal of Pure and Applied Sciences. 2016; 28(3):104-13.
[4] Gökҫekuş H, Kassem Y, Musa MK. Enviromental Impact of Municipal Solid Waste Landfill in
North of Iraq. International Journal of Innovative Technology and Exploring Engineering.
2020;9(3). https://doi.org/10.36103/ijas.v50i1.297
[5] Abdullah SA, Abdullah AHJ, Ankush MA. Assessment of water quality in in the Euphertes
river, southern Iraq. Iraqi Journal of Agricultural Sciences 2019;5(1):312-9.
https://doi.org/10.36103/ijas.v50i1.297
[6] Ikem A, Osibanjo O, Sridhar MKC, Sobande A. Evaluation of Groundwater Quality
Characteristics near Two Waste Sites in Ibadan and Lagos, Nigeria. Water, Air, and Soil
Pollution. 2002;140(1/4):307-33. https://doi.org/10.1023/A:1020165403531
[7] Kumar D, Alappat BJ. Analysis of leachate pollution index and formulation of sub-leachate
pollution indices. Waste Management & Research. 2005;23(3):230-9.
https://doi.org/10.1177/0734242X05054875
[8] Kumar D, Alappat BJ. Analysis of Leachate Contamination Potential of a Municipal Landfill
using Leachate Pollution Index. Sustainable Landfill Management. 2003:147-53.
[9] Phong HX, Viet NT, Quyen NTN, Van Thinh P, Trung NM, Ngan TTK. Phytochemical
screening, total phenolic, flavonoid contents, and antioxidant activities of four spices
commonly used in Vietnamese traditional medicine. Materials Today: Proceedings.
2022;56:A1-A5. https://doi.org/10.1016/j.matpr.2021.12.142
[10] Horton RK. An index number for rating water quality. Journal of Water Pollution Control
Federation. 1965;37(3):300-6.
[11] Adimalla N, Taloor AK. Hydrogeochemical investigation of groundwater quality in the hard
rock terrain of South India using Geographic Information System (GIS) and groundwater
quality index (GWQI) techniques. Groundwater for Sustainable Development. 2020;10.
https://doi.org/10.1016/j.gsd.2019.100288
[12] WHO. Guidelines for Drinkingwater Quality: Interligar, Brazil; 2017.
[13] Alhadithi M. Evaluation of groundwater quality using water quality index(WQI) and GIS
techniques. Iraqi Journal of Agricultural Sciences. 2018;49(2):313-26.
[14] Mohanty SK. Water quality index of four religious ponds and its seasonal variation in the
Temple city, Bhuvaneshwar ,In A. kumar Ed., Water Pollution , APH publishing Corporation.
New Delhi. 2004:211-8.
[15] Baby Shaikh R, Saifullah B, Rehman F, Iqbal Shaikh R. Greener Method for the Removal of
Toxic Metal Ions from the Wastewater by Application of Agricultural Waste as an Adsorbent.
Water. 2018;10(10). https://doi.org/10.3390/w10101316
[16] Gupta SP. Statistical methods. 37 ed: SultanChand and Sons., New Delhi, India.; 2009.
[17] Reddy PS, Nandini N. Leachate Characterization and Assessment of Groundwater Pollution
Near Municipal Solid Waste Landfill Site. Nature Environment and Pollution Technology.
2011;10(3):415-8.
[18] WHO. Guidelines for Drinking-water Quality. 4 ed: Gutenberg; 2011.
[19] Akinbile CO. Environmental impact of landfill on groundwater quality and agricultural soils in
Nigeria. Soil and Water Research. 2012;7(1):18-26.
[20] Welch PS. Limnology. USA: McGraw-Hill Book Company; 1952.
[21] Hameed A, Bhat SU, Jindal T, Sabha I, Lone SH. Water Quality Monitoring of Some
Freshwater Springs in Hazratbal Tehsil, Srinagar, Kashmir Himalaya. Journal of Himalayan
Ecology and Sustainable Development 2018;13:61-74.
[22] De S, Maiti SK, Hazra T, Dutta A. Evaluation of the impact of landfill leachate on groundwater
quality in Kolkata, India. Pollution. 2017;3(3):443-52. https://doi.org/10.7508/pj.2017.03.
009
[23] Kale SS, Kadam AK, Kumar S, Pawar NJ. Evaluating pollution potential of leachate from
landfill site, from the Pune metropolitan city and its impact on shallow basaltic aquifers.
Environ Monit Assess. 2010;162(1-4):327-46. https://doi.org/10.1007/s10661-009-0799-7
[24] Abbas AAA, Hassan FM. Water quality assessment of Euphrates river in Qadisiyah province
(Diwaniyah river),Iraq. Iraqi Journal of Agricultural Sciences. 2018;49(2):251- 61.
[25] Aromolaran O, Fagade OE, Aromolaran OK, Faleye ET, Faerber H. Assessment of
groundwater pollution near Aba-Eku municipal solid waste dumpsite. Environ Monit Assess.
2019;191(12):718. https://doi.org/10.1007/s10661-019-7886-1
[26] Adekunle IM, Adetunji MT, Gbadebo AM, Banjoko OB. Assessment of Groundwater Quality
in a Typical Rural Settlement in Southwest Nigeria. International Journal of Environmental
Research and Public Health. 2007;4(4):307-18.
https://doi.org/10.3390/ijerph200704040007
[27] Ahmad AB. Evaluation of Groundwater Quality Index for drinking purpose from some villages
around Darbandikhan district, Kurdistan Region -Iraq. IOSR Journal of Agriculture and
Veterinary Science. 2014;7(9):34-41.
[28] Adeyi AA, Majolagbe AO. Assessment of Groundwater Quality around Two Major Active
Dumpsites in Lagos, Nigeria. Global Journal of Science Frontier Research. 2014;14(7):0975-
5896.
[29] Bhalla B, Saini MS, Jha MK. Characterization of Leachate from Municipal Solid Waste
(MSW) Landfilling Sites of Ludhiana, India: A Comparative Study. International Journal of
Engineering Research and Applications. 2012;2(6):732-45.
[30] Kulikowska D, Klimiuk E. The effect of landfill age on municipal leachate composition.
Bioresource Technology 2008:5981-5. https://doi.org/10.1016/j.biortech.2007.10.015
[31] Abbas AA, Jingsong G, Ping LZ, Ya PY, Al-Rekabi WS. Review on Landfll Leachate
Treatments. Journal of Applied Sciences Research. 2009;5(5):534-45.
https://doi.org/10.3844/ajassp.2009.672.684
[32] Naveen BP, Mahapatra DM, Sitharam TG, Sivapullaiah PV, Ramachandra TV. Physicochemical and biological characterization of urban municipal landfill leachate. Environ Pollut.
2016;220(Pt A):1-12. https://doi.org/10.1016/j.envpol.2016.09.002
[33] Christensen TH, Kjeldsen P, L.Bjerg P, L.Jensen D, B.Christensen J, Baun A. Biogeochemistry
of landfill leachate plumes. Applied Geochemistry. 2001;16:659-718.
https://doi.org/10.1016/S0883-2927(00)00082-2
[34] Fatta D, Papadopoulos A, Loizidou M. A study on the landfill leachate and its impact on the
groundwater quality of the greater area. Environmental Geochemistry and Health.
1999;21(2):175-90. https://doi.org/10.1023/A:1006613530137
[35] Ohwoghere–Asuma, Aweto KE. Leachate Characterization and Assessment of Groundwater
and Surface Water Qualities Near Municipal Solid Waste Dump Site in Effurun, Delta State,
Nigeria. Journal of Environment and Earth Science. 2013;3(9):126-34.
[36] Angaye TCN, Zige DV, Izah SC. Microbial Load and Heavy Metals Properties of Leachates
from Solid Wastes Dumpsites in the Niger Delta, Nigeria. Journal of Environmental Treatment
Techniques. 2015;3(3):148-53.
[37] Mor S, Ravindra K, R.P.Dahiya, A.Chandra. Leachate characterization and assessment of
ground water pollution near municipal solid waste landfill site. Environmental Monitoring and
Assessment. 2006;118:435–56. https://doi.org/10.1007/s10661-006-1505-7
[38] B.G.Sewwandi, Wijesekara SSRMDHR, Rajapaksha A, M.I.M.Mowjood, Vithanage M. Risk
of Soil and Water Pollution by Heavy Metals in Landfill Leachate. The 12th Annual
Conference of Thai Society of Agricultural Engineering “International Conference on
Agricultural Engineering” (Novelty, Clean and Sustainable). 2011.
[39] Singh S, Raju NJ, Gossel W, Wycisk P. Assessment of pollution potential of leachate from the
municipal solid waste disposal site and its impact on groundwater quality, Varanasi environs,
India. Arabian Journal of Geosciences. 2016;9(131):12. https://doi.org/10.1007/s12517-
015-2131-x
[40] Siddiqia SA, Al-Mamun A, Sana A, Baawainb MS, Choudhury MR. Characterization and
pollution potential of leachate from urban landfills during dry and wet periods in arid regions.
Water Supply 2021;22(3):3462-83. https://doi.org/10.2166/ws.2021.392
[41] Šourková M, Adamcová D, Zloch J, Skutnik Z, Vaverková MD. Evaluation of the
Phytotoxicity of Leachate from aMunicipal Solid Waste Landfill: The Case Study of Bukov
Landfill. Environments 2020;7(111):14. https://doi.org/10.3390/environments7120111
[42] Munir S, Tabinda AB, Ilyas A, Mushtaq T. Characterization of Leachate and Leachate
Pollution Index from Dumping Sites in Lahore, Pakistan. Journal of Applied Environmental
and Biological Sciences. 2014;4(4):165-70.
[43] Afolabi OO, Wali E, Ihunda EC, Orji MC, Emelu VO, Bosco-Abiahu LC, et al. Potential
environmental pollution and human health risk assessment due to leachate contamination of
groundwater from anthropogenic impacted site. Environmental Challenges 2022;9:10.
https://doi.org/10.1016/j.envc.2022.100627
[44] Rashid FH, .Taha AA, N..J.Hameed. Study of toxic heavy metal removal by different
Chitosan/Hyacinths plant composite. Iraqi Journal of Agricultural Sciences 2019;50(5):1416-
24.
[45] Tomczak E, Tosik P. Waste Plant Material as a Potential Adsorbent of a Selected Azo Dye.
Chemical and Process Engineering. 2017;38(2):283-94. https://doi.org/10.1515/cpe-2017-
0021
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