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Sediment catcher to trap coarse organic matter and soil particles transported by wind.

机译:泥沙收集器可以捕获风中输送的粗有机物和土壤颗粒。

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Wind can erode fertile topsoil and reduce soil fertility. Evaluating the effect of wind erosion on soil fertility is crucial to achieve sustainable agriculture in areas suffering from desertification caused by wind erosion. To estimate soil loss and associated soil nutrient loss by wind erosion, flux of coarse organic matter (COM) (defined here as free organic debris larger than 200 micro m) and soil particles (defined as the other soil components) must be measured separately. This is because their modes of transport are different, and COM plays a prominent role in soil nutrient dynamics in some semiarid zones where COM accounts for a large percentage of the total soil carbon. Because the Big Spring Number Eight (BSNE) sampler can trap both COM and soil particles 0.05 m above the surface, we designed a sediment catcher, the Aeolian Materials Sampler (AMS), to trap these components below 0.05 m. This device can be manufactured easily at low cost. AMS performance was tested by wind tunnel experiments over a range of wind velocities typically observed in erosive storms and with six incident wind angles because the AMS is a buried-type sampler that is unable to rotate toward the wind. The trapping efficiency of the AMS for COM and soil particles was not 100%, but it can be calibrated easily using wind data. Therefore, we can estimate the mass flux of COM and soil particles and evaluate the effect of wind erosion on soil fertility using the AMS with the BSNE sampler.
机译:风能侵蚀肥沃的表土并降低土壤肥力。评估风蚀对土壤肥力的影响对于在因风蚀引起的荒漠化地区实现可持续农业至关重要。为了估算由于风蚀造成的土壤流失和相关的土壤养分流失,必须分别测量粗有机物(COM)(此处定义为大于200微米的游离有机碎片)和土壤颗粒(定义为其他土壤成分)的通量。这是因为它们的运输方式不同,在某些半干旱地区,COM在土壤养分动态中起着重要作用,在这些地区,COM占土壤总碳的很大比例。由于八号大弹簧(BSNE)采样器可以在地面上方0.05 m处捕获COM和土壤颗粒,因此我们设计了一个泥沙捕获器,即风沙材料采样器(AMS),以将这些成分捕获在0.05 m以下。该装置可以容易地以低成本制造。 AMS的性能是通过风洞实验对一系列风速进行测试的,这些风速通常在侵蚀性风暴中观察到,并且具有六个入射风角,因为AMS是无法向风旋转的埋入式采样器。 AMS对COM和土壤颗粒的捕集效率不是100%,但可以使用风数据轻松进行校准。因此,我们可以使用带有BSNE采样器的AMS估算COM和土壤颗粒的质量通量,并评估风蚀对土壤肥力的影响。

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