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Stoichiometric Determination of Nitrate Fate in Agricultural Ecosystems during Rainfall Events

机译:化学计量确定降雨事件中农业生态系统中的硝酸盐命运

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摘要

Ecologists have found a close relationship between the concentrations of nitrate (NO3 -) and dissolved organic carbon (DOC) in ecosystems. However, it is difficult to determine the NO3 - fate exactly because of the low coefficient in the constructed relationship. In the present paper, a negative power-function equation (r 2 = 0.87) was developed by using 411 NO3 - data points and DOC:NO3 - ratios from several agricultural ecosystems during different rainfall events. Our analysis of the stoichiometric method reveals several observations. First, the NO3 - concentration demonstrated the largest changes when the DOC:NO3 - ratio increased from 1 to 10. Second, the biodegradability of DOC was an important factor in controlling the NO3 - concentration of agricultural ecosystems. Third, sediment was important not only as a denitrification site, but also as a major source of DOC for the overlying water. Fourth, a high DOC concentration was able to maintain a low NO3 - concentration in the groundwater. In conclusion, this new stoichiometric method can be used for the accurate estimation and analysis of NO3 - concentrations in ecosystems.
机译:生态学家发现生态系统中硝酸盐(NO3 -)的浓度与溶解有机碳(DOC)之间存在密切的关系。但是,由于所建立的关系中的系数较低,因此难以准确确定NO3 -的命运。在本文中,通过使用411个NO3 -数据点和DOC:NO3 -数据,建立了负幂函数方程(r 2 = 0.87)在不同的降雨事件中来自几个农业生态系统的比率。我们对化学计量方法的分析揭示了一些观察结果。首先,当DOC:NO3 -的比例从1增加到10时,NO3 -的浓度显示出最大的变化。其次,DOC的生物降解性是控制DOC的重要因素。农业生态系统中的NO3 -浓度。第三,沉积物不仅作为反硝化场所,而且作为上覆水的主要DOC来源,都很重要。第四,高的DOC浓度能够保持地下水中的低NO3 -浓度。总之,这种新的化学计量方法可用于生态系统中NO3 -浓度的准确估算和分析。

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  • 年(卷),期 -1(10),4
  • 年度 -1
  • 页码 e0122484
  • 总页数 11
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