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Nitrate sources and migration in rural karst aquifers: a case study in Pingyin karst catchment, north China

2025/07/03 by Chen Sheng, Di Wu, Dalu Yu +7
Earth and Planetary Sciences · Environmental Science · #Groundwater and Isotope Geochemistry #Groundwater and Watershed Analysis #Karst Systems and Hydrogeology

paper · doi:10.1080/10256016.2025.2522410

openalex publication_date 2025/07/03 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/27

Abstract

Due to the dramatic rise in global population and intensified agricultural activities, groundwater environments are increasingly threatened by nitrate pollution. To elucidate the sources and transformation processes of nitrate contamination in rural karst groundwater, this study selected the Pingyin karst catchment in Shandong Province, northern China, as the research area. This study employed a combination of isotopic analyses (δ15N-NO3, δ18O-NO3, δ2H-H2O, and δ18O-H2O) and hydrochemical data to investigate karst groundwater, pore groundwater, and Yellow River water. In the study area, nitrate concentration in karst groundwater samples ranged from 11 to 294 mg/L, with 80 % of samples exceeding the WHO safe drinking water limit of 50 mg/L for NO3. Stable isotopic results (δ2H-H2O, δ18O-H2O) show meteoric precipitation is the main source of groundwater recharge. The 18O-Cl relationship bubble diagram revealed that nitrate contamination primarily originated from anthropogenic sources. Furthermore, both hydrochemical (e.g. TIN vs. Cl, NO3/Cl vs. Cl) and isotopic (δ15N-NO3 vs. δ18O-NO3) evidence indicate that untreated human and livestock wastewater is the primary contributor to elevated nitrate levels in groundwater. Isotopic analysis also revealed that nitrification is the dominant biogeochemical process occurring in groundwater. The MixSIAR model further estimated source contributions as follows: manure and sewage (49.92 %), soil nitrate (39.43 %), chemical fertilizers (9.19 %), and atmospheric deposition (1.46 %). Finally, based on these findings and considering the environmental conditions of the study area, environmental protection strategies to prevent nitrate pollution were proposed. These findings serve as a valuable reference for promoting the sustainable use and pollution control of karst groundwater in rural areas.

Citations