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首页> 外文期刊>Soil Science Society of America Journal >Straw Mulching Effect on Splash Erosion, Runoff, and Sediment Yield from Eroded Plots
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Straw Mulching Effect on Splash Erosion, Runoff, and Sediment Yield from Eroded Plots

机译:秸秆覆盖对侵蚀区飞溅侵蚀,径流和产沙量的影响

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摘要

Land surface cover affects runoff generation and soil loss processes. Splash erosion occurs by the impact of raindrops on the soil surface. As a result of this process, raindrops detach soil particles, destroy soil structure, and finally, increase runoff and erosion. Amendments improve and reinforce soil aggregates and some physical barriers against raindrop impacts and runoff. The present research was an attempt to determine the efficiency of straw mulch applied at a rate of 0.5 g m(-2) in changing the runoff commencement time, runoff amount, splash erosion, and sediment yield from eroded mid-sized plots at different rainfall intensities under laboratory conditions. The research was conducted on a sandy loam soil taken from summer rangeland in the Alborz Mountains, northern Iran, with simulated rainfall intensities of 30, 50, 70, and 90 mm h(-1) and a slope of 30% in three replicates. The collected data from 36 splash cups showed that the straw mulch played an effective role in reducing the splash erosion in both up and down directions, with the maximum reduction occurring at a rainfall intensity of 70 mm h(-1). The results of the research also showed that the straw mulch had a significant effect in changing runoff and soil erosion characteristics at a confidence level of 99%. The maximum increase in runoff commencement time (110.10%) was observed for the rainfall intensity of 90 mm h(-1). The runoff coefficient had a maximum reduction at rainfall intensities of 30 and 90 mm h(-1). The maximum decrease in sediment yield (63.24%) also occurred at the rainfall intensity of 90 mm h(-1).
机译:地表覆盖影响径流的产生和土壤流失过程。雨滴对土壤表面的影响会引起飞溅侵蚀。这个过程的结果是,雨滴使土壤颗粒分离,破坏了土壤结构,最后增加了径流和侵蚀。修正案改善并加强了土壤团聚体和一些物理屏障,以防止雨滴影响和径流。本研究试图确定以0.5 gm(-2)的比率覆盖的秸秆覆盖物在不同降雨强度下改变侵蚀中型农田的径流开始时间,径流量,飞溅侵蚀和沉积物产量的效率在实验室条件下。这项研究是在伊朗北部阿尔伯兹山脉夏季牧场的沙壤土上进行的,模拟降雨强度分别为30、50、70和90 mm h(-1),并且三个重复样本的坡度为30%。从36个防溅杯收集的数据表明,秸秆覆盖物在减少上下方向的溅水侵蚀方面发挥了有效作用,最大的减少发生在降雨强度为70 mm h(-1)时。研究结果还表明,秸秆覆盖对改变径流和土壤侵蚀特性具有显着影响,置信度为99%。对于90 mm h(-1)的降雨强度,观察到径流开始时间的最大增加(110.10%)。在降雨强度为30和90 mm h(-1)时,径流系数具有最大的减少量。在降水强度为90 mm h(-1)时,最大的沉积物减少量(63.24%)也发生了。

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