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Development and application of watershed-scale indicator to quantify non-point source P losses in semi-humid and semi-arid watershed, China

机译:中国半湿润半干旱流域非点源磷损失定量流域尺度指标的开发与应用

摘要

Quantifying non-point source (NPS) phosphorus (P) pollution loads is essential for watershed nutrients management. This study intended to develop a NPS P indicator which (1) was suitable in semi-humid and semi-arid watersheds of Northern China; (2) integrated the key NPS P loss factors and constructed them in a simple and physically understandable way and (3) kept P loss forms distinctively separate. An inverse distance-based delivery ratio was proposed to count for the P delivery efficiency from source to watercourses. We applied this P indicator in Luan River Watershed (LRW) of northern China under typical hydrological years and seasons. Results demonstrated that this NPS P indicator predicted reasonable NPS TP loads using simple methods and readily obtainable inputs. The sub-watersheds located in the south of LRW were recognized as the high risk areas of NPS P loss to Panjiakou reservoir. The upland and paddy fields near the river channels were particularly posing high risk and thus should be treated with prioritized management practices such as soil conservation and recommended fertilization. Rainfall runoff related variables rather than P source variables explained more of the spatial variation in NPS P load and percentages. Using this tool could give policy makers insight into the component and location of NPS P pollution that needs to be the focus of policy at watershed scales before sophisticated studies were conducted in smaller scales. (C) 2015 Elsevier Ltd. All rights reserved.
机译:量化非点源(NPS)磷(P)污染负荷对于流域养分管理至关重要。这项研究的目的是开发一种NPS P指标,该指标(1)适用于中国北方的半湿润半干旱流域; (2)整合关键的NPS P损失因子,并以简单易懂的方式构建它们;(3)保持P损失形式明显不同。提出了一种基于距离的反比传递比率来计算从源到河道的磷传递效率。我们在典型的水文年和季节下,在中国北方的River河流域(LRW)中应用了该P指标。结果表明,该NPS P指标使用简单的方法和易于获得的输入预测了合理的NPS TP负荷。位于LRW南部的小流域被认为是潘家口水库NPS P损失的高风险地区。河道附近的旱田和稻田尤其构成高风险,因此应优先考虑管理措施,例如水土保持和推荐施肥。降雨径流相关变量而不是P源变量解释了NPS P负荷和百分比的更多空间变化。使用此工具可以使决策者深入了解NPS P污染的组成和位置,在小规模进行深入研究之前,NPS P污染需要成为流域尺度上政策的重点。 (C)2015 Elsevier Ltd.保留所有权利。

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