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Temporal dynamics between cattle in-stream presence and suspended solids in a headwater catchment

机译:牛源流域和上游水源流域中悬浮固体之间的时间动态

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Cattle in-stream activity is potentially an important contributor to water pollution from agriculture. Here we present research on the physical movements of cattle within a stream on suspended solid concentrations {SSC). This study used camera surveillance to monitor the in-stream activity of dairy cattle in an unfenced reach over a four-month period. Results were compared against high-resolution SSC data. Over the days that cattle grazed the field, 57.9% of the instances when SSC crossed the 25 mg l~(-1) Freshwater Fish Directive guideline threshold can be attributed to cattle presence in the stream. Flow was the main driver of total sediments transported over the study period, and no relationship was found between SSC and the absolute number of cattle feet in the water. Hysteresis analysis indicated a 'first-flush' of local sediments rapidly mobilised during the non-cattle related SSC events, a result of cattle proximity to channel margins. Results demonstrate a temporal lag between cattle in-stream presence and a critical amount of their contribution to sediment load, and that monitoring only instantaneously with cattle activity may lead to underestimation of their pollution impact.
机译:牛的溪流活动可能是造成农业水污染的重要因素。在这里,我们对悬浮固体浓度(SSC)中的牛的身体运动进行了研究。这项研究使用摄像头监视来监视四个月内无防护范围内奶牛的流内活动。将结果与高分辨率SSC数据进行比较。在牛放牧的日子里,SSC越过25 mg l〜(-1)淡水鱼指令准则阈值的情况中,有57.9%的情况可归因于溪流中牛的存在。流量是研究期内输送的全部沉积物的主要驱动力,SSC与水中牛脚的绝对数量之间没有关系。滞后分析表明,在与牛无关的南南合作事件中,当地沉积物被“首次冲刷”,这是牛靠近通道边缘的结果。结果表明,牛的上游存在与它们对沉积物负荷的关键贡献之间存在时间滞后,仅用牛的活动进行瞬时监测可能会导致对其污染影响的估计不足。

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