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RELATIONSHIP BETWEEN CATCHMENT CHARACTERISTICS AND NUTRIENT CONCENTRATIONS IN AN AGRICULTURAL RIVER SYSTEM

机译:农业河流系统中流域养分特征与养分含量的关系

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摘要

We examined the effects of catchment characteristics and riverine processes on the concentrations of nutrients and total suspended solids (TSS) using data from the outlets of 12 tributaries (9 139 km~2) and 22 main channel sites of a river draining an intensely cropped area of l088 km~2 in SW Finland. For the tributaries, the flow-weighted mean concentrations of TSS and total phosphorus (TP). which both reflect erosion, were best explained by field percentage and the mean slope of the fields of the catchment. The best model describing the concentration of dissolved reactive P (DRP) included field percentage and catchment area. Total nitrogen (TN) and nitrate + nitrite-nitrogen (NOx-N) correlated only with field percentage. Except for DRP, the regression models derived from the tributary data rather accurately predicted the concentrations in the main river channel. Our results suggest that. with regard to lakeless catchments of l0-l000 km~2. the export of TP, TSS and N per unit area remains constant. Furthermore. although some P in eroded soil particles may be released into dissolved, algal-available form during the river transport, erosion control appears not to efficiently reduce dissolved P.
机译:我们使用了12条支流(9 139 km〜2)和22个主要沟渠流失严重地区的河道出口的数据,研究了流域特征和河流过程对养分和总悬浮固体(TSS)浓度的影响。芬兰西南部的1088 km〜2对于支流,TSS和总磷(TP)的流量加权平均浓度。都可以通过田间百分比和流域田间平均坡度来最好地解释这两个都反映了侵蚀。描述溶解性反应物P(DRP)浓度的最佳模型包括田间百分比和集水区。总氮(TN)和硝酸盐+亚硝酸盐氮(NOx-N)仅与田间百分比相关。除DRP以外,从支流数据得出的回归模型相当准确地预测了主要河道中的浓度。我们的结果表明。关于无湖流域,l0-l000 km〜2。 TP,TSS和N每单位面积的出口保持不变。此外。尽管侵蚀的土壤颗粒中的某些P可能在河运过程中释放为溶解的藻类可用形式,但侵蚀控制似乎不能有效地减少溶解的P。

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