Title of article
Relationship of nitrate isotopic character to population density in the Loess Plateau of Northwest China
Author/Authors
Xing، نويسنده , , Meng and Liu، نويسنده , , Weiguo and Wang، نويسنده , , Zhoufeng and Hu، نويسنده , , Jing، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
10
From page
110
To page
119
Abstract
Nitrate pollution of groundwater is an increasingly serious anthropogenic problem. In this study, the hydrogeochemistry of major ions and stable isotope ratios of NO 3 - in groundwater were determined to identify the contamination sources and chemical transformation processes occurring in the shallow groundwater of Xi’an, the capital of Shaanxi province, NW China. Of a total of 32 groundwater samples, 31% had NO 3 - – N concentrations exceeding the accepted drinking water limit of 10 mg-N L−1. Most of these samples were from the urban center of the study area, while samples with <10 mg-N L−1 were mainly from suburban areas. Combined with information on NO 3 - and Cl−, the variation in isotopes of NO 3 - in the groundwater suggest a mixing of multiple NO 3 - sources in areas on the urban/suburban border. By determining rainwater and river water NO 3 - isotopic values, the groundwater recharge mode can be deduced for Xi’an city. Chemical fertilizers and nitrification of N-containing organic materials contribute NO 3 - to suburban groundwater, while sewage effluent and nitrification dominate NO 3 - distribution in urban groundwater. Nitrification from organic soil N, manure and sewage was significant in some sampling areas, and NO 3 - isotopic values from groundwater in Xi’an indicated that the effects of denitrification were not an obvious contributor. Thus, the δ 15 N – NO 3 - enrichment process is mainly caused by the intense anthropogenic activity in the city center. From the urban center to suburban areas, the mean δ 15 N – NO 3 - values varied from +16.4‰ to +5.4‰, and the mean NO 3 - – N concentrations varied from 28.0 mg L−1 to 4.0 mg L−1. In particular, the δ 15 N – NO 3 - value (r = −0.75, p < 0.01) correlated more significantly with distance from the urban center than did the NO 3 - – N concentration data (r = −0.49, p < 0.01), which suggests that NO 3 - isotopic values are an effective indicator of contamination sources. In addition, the δ 15 N – NO 3 - values and population density show a significant logarithmic correlation in Xi’an city.
Journal title
Applied Geochemistry
Serial Year
2013
Journal title
Applied Geochemistry
Record number
2233377
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