Tracing nitrate sources in the groundwater of an intensive agricultural region

地下水 硝酸盐 环境科学 反硝化 地下水污染 含水层 肥料 水文学(农业) 精耕细作 肥料 环境工程 环境化学 农业 农学 氮气 化学 生态学 地质学 有机化学 岩土工程 生物
作者
Xinyue Kou,Junjun Ding,Yuzhong Li,Qiaozhen Li,Lili Mao,Chunying Xu,Qian Zheng,Shan Zhuang
出处
期刊:Agricultural Water Management [Elsevier BV]
卷期号:250: 106826-106826 被引量:60
标识
DOI:10.1016/j.agwat.2021.106826
摘要

Abstract Agricultural non-point contaminants are the main source of groundwater nitrate in China. The source and transformation of groundwater nitrate in the intensive agricultural region must be understood. To elucidate the overall groundwater nitrate situation in Weifang (a typical representative intensive planting area), groundwater was sampled in 2009 and 2019, respectively. The hydrochemical compositions, nitrogen, and oxygen isotopes were measured to trace the source and transformation of the nitrate and quantify the proportional contribution of nitrate sources of groundwater (including sewage and manure (M&S), soil nitrogen (SN), chemical fertilizer (CF), and atmospheric deposition (AD)) in Weifang, China. The concentration of nitrates in groundwater generally decreased, and the groundwater quality improved significantly. The reasons for the variation of nitrate sources between 2009 and 2019 were likely due to the reduction in the amount of fertilizer, the number of livestock and the area of agricultural land. Land-use affected the concentration of nitrates in groundwater, which ranked as follows: vegetable greenhouse (VG) > winter wheat (WW) > drinking and domestic water (DW). Nitrification was the main process in the study area, and the effect of denitrification was weak. The study area was affected by mixed CF, SN, and M&S contaminants. According to the Bayesian isotope mixing model (SIAR), the proportional contribution of each source was ranked as follows: M&S (65.09%) > SN (17.97%) > AD (9.32%) > CF (7.63%). M&S is the main source of NO3−. In this research, identifying the source of nitrate pollution can cut off the source of pollution in a targeted way, ensure the safety of groundwater in Weifang and protect the agricultural environment of intensive agricultural area, which has significance for nitrate prevention and control in other places.
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