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Transport of colloidal phosphorus in runoff and sediment on sloping farmland in the purple soil area of south-western China

机译:紫罗际磷磷的运输及沉积物在南方紫色土壤区倾斜农田

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Colloidal particles in runoff could play an important role in phosphorus (P) transfer from sloped farmland to waterbodies. We investigated the distribution of P in different-size particles from a purple soil and colloidal phosphorus (CP) loss in runoff and sediment from sloped farmland in south-western China. The profile distribution of P showed obvious surface accumulation. The risk of P loss in topsoil was greater than those of the other soil layers on sloping farmland of purple soil. The concentration of soil particles of <0.002mm in purple soil profiles was low, but the total phosphorus (TP) and available phosphorus (AP) concentrations of soil particles of <0.002mm were high. During a rainfall event, CP loss is significantly power function related to the runoff yield rate, and is linearly related to the sediment yield rate. The majority of P in runoff was CP. The total loss of CP in runoff was 139.52gha(-1), in which surface runoff accounted for 64.3%. CP loss can be controlled by controlling runoff from sloping farmland, especially surface runoff. Our results suggest that CP loss should be valued in the process of nutrient loss, as well as CP transfer should be given greater consideration in the mechanistic studies of the P transfer process.
机译:径流中的胶体颗粒可能在磷(P)从倾斜的农田转移到Waterbodies中发挥重要作用。我们调查了中国西南部倾斜农田径流和沉淀物中紫色土壤和胶体磷(CP)损失的不同尺寸颗粒的分布。 P的轮廓分布显示出明显的表面积累。表土P损失的风险大于紫色土壤倾斜农田的其他土壤层。紫色土壤剖面<0.002mm的土壤颗粒浓度低,但总磷(TP)和可用磷(AP)浓度<0.002mm的土壤颗粒均高。在降雨事件期间,CP损失是与径流屈服率相关的功率函数,与沉积物率线性相关。径流大部分P是CP。径流中CP的总损失为139.52GHA(-1),其中表面径流占64.3%。 CP损耗可以通过控制船舶倾斜的耕地,尤其是表面径流来控制。我们的研究结果表明,应在营养损失过程中重视CP损失,以及CP转移应在P转移过程的机械研究中获得更多的考虑因素。

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