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Nutrient dynamics with groundwater-seawater interactions in a beach slope of a steep island, western Japan

机译:日本西部陡峭岛屿海滩坡面的地下水海水交互营养动态

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To confirm the semi-diurnal and seasonal variation in nutrient flux with the dynamics in groundwater-seawater interaction, we conducted intensive observations at 25 piezometers in a tidal flat over a distance of 100 m across a steep-sloped island. Based on the chloride balance, groundwater was very well-mixed with seawater under the tidal flat. Nitrate-nitrogen (NCV-N) concentrations declined from >20 to near 0 mg L"1 along the groundwater flowpath from the hillslope to the tidal flat. In addition, nitrate concentrations in pore water of the tidal flat were lower (at 0.1 mg L"1) than in seawater. These results suggest that the reduction process of NCV-N occurred in both contaminated groundwater and seawater. Discharge of inorganic nitrogen by groundwater was confirmed offshore. The suspected source was nitrogen mineralization of organic compounds and seawater recirculation, Phosphorus was produced offshore and transported from the land area. Seasonal variations in nutrient dynamics at the tidal flat were also confirmed.
机译:为了确认在地下水海水相互作用中的动态营养通量的半昼夜和季节性变化,我们在潮汐倾斜岛上的距离在100米的距离平坦的25压力计中进行了强化观察。基于氯化物平衡,地下水与潮汐平底下的海水混合。硝酸氮(NCV-N)浓度从山坡到潮汐平的地下水流动路径从> 20到接近0 mg l“1。此外,潮气孔的孔水中的硝酸盐浓度较低(0.1毫克L“1)比海水在海水中。这些结果表明,NCV-N的还原过程发生在污染的地下水和海水中。近海确认地下水排出无机氮。可疑来源是有机化合物和海水再循环的氮矿化,磷是海上生产的,并从土地面积运输。还确认了潮汐平面营养动力学的季节性变化。

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