Spatio-temporal variations of groundwater quality index using geostatistical methods and GIS

被引:8
作者
Ababakr, Frsat Abdullah
Ahmed, Kaywan Othman [1 ]
Amini, Ata [2 ]
Karami Moghadam, Mehdi [3 ]
Goekcekus, Hueseyin [4 ]
机构
[1] Tishk Int Univ, Fac Engn, Dept Civil Engn, Sulaimani, Iraq
[2] AREEO, Kurdistan Agr & Nat Resources Res & Educ Ctr, Sanandaj, Iran
[3] Payame Noor Univ PNU, Dept Agr, Tehran, Iran
[4] Near East Univ, Civil Engn Dept, NEU, Nicosia, Cyprus
关键词
Water quality; Groundwater; Inverse distance weighted; Kriging; GIS; MANAGEMENT;
D O I
10.1007/s13201-023-02010-4
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
A groundwater quality map serves as a deterrent mechanism that provides insight into likely environmental health predicaments. The objective of this study was to create map and evaluate the quality and changes in groundwater during the study period in Erbil, Iraq. Based on the 13 groundwater parameters, the water quality index (WQI) was calculated for 61 wells from 2015 to 2017 for wet and dry seasons. To generate WQI maps, two geostatistical analyst tools in Geographical Information Systems, including Kriging and Inverse Distance Weighted (IDW) were used. For determining the most suitable method, statistical indices were applied to the obtained data. The results showed that the Kriging method increases the prediction accuracy compared to the IDW method. The water quality in 2017 was decreased compared to the previous years and the WQI was increased from 1.64% to 11.47%. Untreated domestic and industrial wastewater causes groundwater pollution which was the main reason for the decrease in the water quality of Erbil city.
引用
收藏
页数:12
相关论文
共 38 条
[1]   Comparison GIS-Based interpolation methods for mapping groundwater quality in the state of Qatar [J].
Ahmad, Ayesha Y. ;
Saleh, Imane A. ;
Balakrishnan, Perumal ;
Al-Ghouti, Mohammad A. .
GROUNDWATER FOR SUSTAINABLE DEVELOPMENT, 2021, 13
[2]  
Al-Tamir A., 2008, Northern Iraq Al-Rafidain Eng J (AREJ), V16, P24, DOI [10.33899/rengj.2008.44532, DOI 10.33899/RENGJ.2008.44532]
[3]  
Amini Ata, 2009, American Journal of Environmental Sciences, V5, P285, DOI 10.3844/ajessp.2009.285.294
[4]   The groundwater balance in alluvial plain aquifer at Dehgolan, Kurdistan, Iran [J].
Amini A. ;
Homayounfar V. .
Applied Water Science, 2017, 7 (06) :3113-3123
[5]  
Arora A, 2008, UNICEF handbook on water quality
[6]  
Babir GB., 2016, Iraqi J Sci, V43, P554
[7]   Spatial distribution of the groundwater quality using kriging and Co-kriging interpolations [J].
Belkhiri, Lazhar ;
Tiri, Ammar ;
Mouni, Lotfi .
GROUNDWATER FOR SUSTAINABLE DEVELOPMENT, 2020, 11
[8]   Oregon Water Quality Index: A tool for evaluating water quality management effectiveness [J].
Cude, CG .
JOURNAL OF THE AMERICAN WATER RESOURCES ASSOCIATION, 2001, 37 (01) :125-137
[9]  
Diop Mor, 2023, Journal of Water Resource and Protection, V15, P33, DOI 10.4236/jwarp.2023.152003
[10]   Hydrogeochemical characterization and evaluation of groundwater quality in Kangayam taluk, Tirupur district, Tamil Nadu, India, using GIS techniques [J].
Duraisamy, Sakthivel ;
Govindhaswamy, Vennila ;
Duraisamy, Karunanidhi ;
Krishinaraj, Srinivasamoorthy ;
Balasubramanian, Anand ;
Thirumalaisamy, Subramani .
ENVIRONMENTAL GEOCHEMISTRY AND HEALTH, 2019, 41 (02) :851-873