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Phosphorus losses in runoff from manured grassland of different soil P status at two rainfall intensities.

机译:在两种降雨强度下,不同土壤磷素状态的肥草地的径流中的磷损失。

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In many areas, excessive manure application on agricultural land has led to a substantial build-up of soil phosphorus (P) stocks, increasing the risks for diffuse pollution of surface waters. Recent studies highlight the need to differentiate between runoff types for better prediction of these risks. In a factorial field-plot experiment we investigated the role of soil-P status, band-applied manure and rainfall intensity on P losses from two Swiss grassland sites. Artificial rainfall was applied on each plot first at medium intensity using a sprinkler and then at high intensity using a watering can, simulating two different runoff conditions. Under both conditions, dissolved reactive P (DRP) in runoff increased linearly with water soluble P in the soil (WSP), but the extraction coefficients differed substantially between the two phases of runoff generation. It was 0.017 kg L-1 for runoff generated with the watering can (WCR), and 0.085 kg L-1 for runoff generated with the sprinkler (SR). Manure application increased DRP losses, but did not override the effect of soil P status. Phosphorus losses with runoff were more sensitive to soil P status for SR than for WCR. Reducing soil-P is therefore crucial to reduce runoff-P.
机译:在许多地区,农田过度施肥导致大量的土壤磷(P)蓄积,增加了地表水扩散污染的风险。最近的研究强调需要区分径流类型以更好地预测这些风险。在阶乘田间试验中,我们调查了土壤磷状况,施肥量和降雨强度对两个瑞士草原站点磷素损失的影响。首先使用洒水器以中等强度在每个样地上施加人工降雨,然后使用喷壶以模拟两个不同的径流条件以高强度人工降雨。在两种条件下,径流中的溶解性反应性磷(DRP)随土壤中的水溶性磷(WSP)线性增加,但在径流生成的两个阶段之间,提取系数存在显着差异。喷壶(WCR)产生的径流量为0.017 kg L -1 ,喷水器(SR)产生的径流量为0.085 kg L -1 。施肥增加了DRP的损失,但没有超过土壤P状况的影响。与WCR相比,SR的径流磷损失对土壤P状况更为敏感。因此,减少土壤磷对减少径流磷至关重要。

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