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Impacts of Groundwater Recharge from Rubber Dams on the Hydrogeological Environment in Luoyang Basin, China

机译:地下水从橡胶坝对洛阳盆地水文地质环境的影响

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In the rubber dam’s impact area, the groundwater total hardness (TH) has declined since 2000, ultimately dropping to 100–300 mg/L in 2012. pH levels have shown no obvious changes. NH4-N concentration in the groundwater remained stable from 2000 to 2006, but it increased from 2007 to 2012, with the largest increase up to 0.2 mg/L. NO3-N concentration in the groundwater generally declined in 2000–2006 and then increased from 2007; the largest increase was to 10 mg/L in 2012. Total dissolved solids (TDS) of the groundwater showed a general trend of decline from 2000 to 2009, but levels increased after 2010, especially along the south bank of the Luohe River where the largest increase recorded was approximately 100 mg/L. This study has shown that the increases in the concentrations of NH4-N and NO3-N were probably caused by changes in groundwater levels. Nitrates adsorbed by the silt clay of aeration zone appear to have entered the groundwater through physical and chemical reactions. TDS increased because of groundwater evaporation and some soluble ions entered the groundwater in the unsaturated zone. The distance of the contaminant to the surface of the aquifer became shorter due to the shallow depth of groundwater, resulting in the observed rise in pollutant concentrations more pronounced.
机译:在橡皮坝的冲击区域中,自2000年以来,地下水总硬度(TH)已经下降至2012年的100-300毫克/升。pH水平表现出明显的变化。地下水中的NH4-N浓度从2000年到2006年仍然稳定,但它从2007年到2012年增加,最大增加高达0.2毫克/升。地下水中的NO3-N浓度在2000-2006中均下降,然后从2007年增加;最大的增加是2012年的10毫克/升。地下水的总溶解固体(TDS)从2000年到2009年出现了一般的下降趋势,但2010年后水平增加,特别是沿着漯河河南岸最大的记录的增加约为100毫克/升。本研究表明,NH4-N和NO3-N浓度的增加可能是由地下水位的变化引起的。由氧气粘土吸附的硝酸盐似乎通过物理和化学反应进入地下水。由于地下水蒸发,TDS增加,一些可溶性离子进入不饱和区中的地下水。由于地下水的浅层景深,污染物对含水层表面的距离变短,导致污染物浓度的观察到更明显。

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