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Geochemistry International | 2014

Fluoride and arsenic hydrogeochemistry of groundwater at Yuncheng basin, Northern China

Anas M. Khair; Chengcheng Li; Qinhong Hu; Xubo Gao; Yanxin Wanga

High fluoride and arsenic concentrations in groundwater have led to serious health problems to local inhabitants at Yuncheng basin, Northern China. In this study, groundwater with high fluoride and arsenic concentration at Yuncheng basin was investigated. A majority of the samples (over 60%) belong to HCO3 type water. The predominant water type for the shallow groundwater collected from southern and eastern mountain areas was Ca/Mg-Ca-HCO3 types. For the shallow groundwater from flow through and discharge area it is Na-HCO3/SO4-Cl/SO4/Cl type. The predominant water type for the intermediate and deep groundwater is of Na/Ca/Mg-Ca-HCO3 type. According to our field investigation, fluoride concentration in groundwater ranges between 0.31 and 14.2 mg/L, and arsenic concentration ranges between 0.243 and 153.7 μg/L. Out of seventy collected groundwater samples, there are 31 samples that exceed the World Health Organization (WHO) standard of 1.5 mg/L for fluoride, and 15 samples exceeds the WHO standard of 10 μg/L for arsenic. Over 40% of high fluoride and arsenic groundwater are related to the Na-HCO3 type water, and the other fifty percent associated with Na-SO4-Cl/HCO3-SO4-Cl type water; little relation was found in calcium bicarbonate type water. A moderate positive correlation between fluoride and arsenic with pH were found in this study. It is due to the pH-dependent adsorption characteristics of F and As onto the oxide surfaces in the sediments. The observed negative correlation between fluoride and calcium could stem from the dissolution equilibrium of fluorite. The high concentration of bicarbonate in groundwater can serve as a powerful competitor and lead to the enrichment of fluoride and arsenic in groundwater. Most of the groundwater with high fluoride or arsenic content has nitrate content about or over 10 mg/L which, together with the observed positive correlations between nitrate and fluoride/arsenic, are indicative of common source of manmade pollution and of prevailing condition of leaching in the study area.


Environmental Earth Sciences | 2007

Enrichment of fluoride in groundwater under the impact of saline water intrusion at the salt lake area of Yuncheng basin, northern China

Xubo Gao; Yanxin Wang; Yilian Li; Qinghai Guo


Environmental Earth Sciences | 2007

A new model (DRARCH) for assessing groundwater vulnerability to arsenic contamination at basin scale: a case study in Taiyuan basin, northern China

Qinghai Guo; Yanxin Wang; Xubo Gao; Teng Ma


Journal of Geochemical Exploration | 2013

Mobility of arsenic in aquifer sediments at Datong Basin, northern China: Effect of bicarbonate and phosphate

Xubo Gao; Chunli Su; Yanxin Wang; Qinhong Hu


Environmental Earth Sciences | 2010

Trace elements and environmental isotopes as tracers of surface water–groundwater interaction: a case study at Xin’an karst water system, Shanxi Province, Northern China

Xubo Gao; Yanxin Wang; Penglin Wu; Qinghai Guo


Applied Geochemistry | 2012

Conversion, sorption, and transport of arsenic species in geological media

Qinhong Hu; Guangyi Sun; Xubo Gao; Yong-Guan Zhu


Proceedings of the Institution of Civil Engineers - Water Management | 2011

Anthropogenic impact assessment of Niangziguan karst water

Xubo Gao; Yanxin Wang; Teng Ma; Qinhong Hu; Xingli Xing; Qian Yu


Environmental Geochemistry and Health | 2012

Fractionation and speciation of arsenic in fresh and combusted coal wastes from Yangquan, northern China.

Xubo Gao; Yanxin Wang; Qinhong Hu


5th International Congress on Arsenic in the Environment, As 2014 | 2014

Transport of arsenic species in geological media: Laboratory and field studies

Q. H. Hu; Shuqiong Kong; Xubo Gao; Yanxin Wang


3rd International Congress on Arsenic in the Environment, As 2010 | 2010

Transformation, sorption, and transport of arsenic species in geological media

Q. H. Hu; G. X. Sun; Xubo Gao; Rui Zuo; J. S. Wang

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Yanxin Wang

China University of Geosciences

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Qinhong Hu

University of Texas at Arlington

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Qinghai Guo

China University of Geosciences

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Teng Ma

China University of Geosciences

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Anas M. Khair

China University of Geosciences

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Chengcheng Li

China University of Geosciences

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Chunli Su

China University of Geosciences

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Guangyi Sun

Chinese Academy of Sciences

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J. S. Wang

Beijing Normal University

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Penglin Wu

China University of Geosciences

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