Geochemical characteristics, mechanisms, and suitability of groundwater resource for sustainable water supply in Quetta valley

Author:

Khan Muhammad Haziq12,Xiao Yong1234ORCID,Yang Hongjie12,Zhang Yuqing12,Wang Liwei12,Wang Jie12,Hu Wenxu12,Chen Feiyu12,Shrestha Rohit12

Affiliation:

1. a Faculty of Geosciences and Engineering, Southwest Jiaotong University, Chengdu 611756, China

2. b Sichuan Province Engineering Technology Research Center of Ecological Mitigation of Geohazards in Tibet Plateau Transportation Corridors, Chengdu 611756, China

3. c MOE Key Laboratory of Groundwater Circulation and Environmental Evolution, China University of Geosciences (Beijing), Beijing 100083, China

4. d Fujian Provincial Key Laboratory of Water Cycling and Eco-Geological Processes, Xiamen 361021, China

Abstract

ABSTRACT Groundwater is a crucial water resource for various usages worldwide. The Quetta Valley of Pakistan was investigated regarding its groundwater quality sustainability based on integrated approaches of hydrochemistry, geographic information system, and multivariate statistics. A total of 29 groundwater samples were collected from monitoring wells to get insights into the hydrochemical suitability of groundwater for sustainable irrigation and drinking utilization. The results indicate groundwater is mainly featured by the hydrochemical facies of HCO3·Cl-Ca. Groundwater hydrochemical composition is dominantly governed by the dissolution of carbonates and silicate minerals in combination with positive cation exchange in the valley. Principal component analysis reveals a significant influence of geogenic factors on groundwater chemistry, further supported by PHREEQC simulation that detects a supersaturation of calcite, dolomite, and sulphate minerals in the aquifer. The irrigation water quality index divides groundwater in the study area into three zones, which signify low restriction and no restriction, except for a severe restriction in the southwestern part of the valley. Groundwater is generally suitable for irrigation across the valley. The entropy-weighted water quality index classifies groundwater as excellent and good quality for drinking. This study can provide crucial insights for authorities on groundwater suitability in Quetta Valley and similar regions worldwide.

Publisher

IWA Publishing

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