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首页> 外文期刊>Journal of Contaminant Hydrology >Contamination potential of nitrogen compounds in the heterogeneous aquifers of the Choushui River alluvial fan, Taiwan
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Contamination potential of nitrogen compounds in the heterogeneous aquifers of the Choushui River alluvial fan, Taiwan

机译:台湾潮水河冲积扇非均质含水层中氮化合物的污染潜力

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摘要

This study aimed to analyze the contamination potential associated with the reactive transport of nitrate-N and ammonium-N in the Choushui River alluvial fan, Taiwan and to evaluate a risk region in developing a groundwater protection policy in 2021. In this area, an aquifer redox sequence provided a good understanding of the spatial distributions of nitrate-N and ammonium-N and of aerobic and anaerobic environments. Equiprobable hydraulic conductivity (K) fields reproduced by geostatistical methods characterized the spatial uncertainty of contaminant transport in the heterogeneous aquifer. Nitrogen contamination potential fronts for high and low threshold concentrations based on a 95% risk probability were used to assess different levels of risk. The simulated result reveals that the spatial uncertainty of highly heterogeneous K fields governs the contamination potential assessment of the nitrogen compounds along the regional flow directions. The contamination potential of nitrate-N is more uncertain than that for ammonium-N. The high nitrate-N concentrations ( ≧ 3 mg/L) are prevalent in the aerobic environment. The low concentration nitrate-N plumes (0.5-3 mg/L) gradually migrate to the mid-fan area and to a maximum distance of 15 km from the aerobic region. The nitrate-N plumes pose a potential human health risk in the aerobic and anaerobic environments. The ammonium-N plumes remain stably confined to the distal-fan and partial mid-fan areas.
机译:这项研究旨在分析台湾潮水河冲积扇中与硝态氮和铵态氮的反应性运输相关的污染潜力,并评估2021年制定地下水保护政策的风险区域。在该地区,含水层氧化还原序列很好地了解了硝酸盐氮和铵态氮的空间分布以及有氧和厌氧环境。通过地统计学方法再现的等概率水力传导率(K)场表征了非均质含水层中污染物运移的空间不确定性。使用基于95%风险概率的高和低阈值浓度的氮污染潜在前沿来评估不同的风险水平。模拟结果表明,高度异质性K场的空间不确定性决定着沿区域流向的含氮化合物的污染潜力评估。硝态氮的污染潜力比铵态氮的不确定性更高。在有氧环境中普遍存在高硝酸盐氮浓度(≥3 mg / L)。低浓度的硝态氮羽(0.5-3 mg / L)逐渐迁移至扇形区,并距需氧区最大距离为15 km。硝态氮羽在有氧和厌氧环境中对人类健康构成潜在威胁。铵态氮羽仍然稳定地局限在远端扇和部分扇中。

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