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首页> 外文期刊>The Science of the Total Environment >Field measurement of effects of individual and combined application of biochar and polyacrylamide on erosion variables in loess and marl soils
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Field measurement of effects of individual and combined application of biochar and polyacrylamide on erosion variables in loess and marl soils

机译:生物炭和聚丙烯酰胺的个体和联合应用对黄土和马尔土壤腐蚀变量的效果的田间测量

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摘要

Controlling soil erosion, especially in its initial stages, is greatly important in natural resources management Consequently, the present research aimed to control splash and interrill erosion in two soil types (marl at Marzan-Abad and loess at Maraveh-Tapeh sites in northern Iran) using biochar (BC) and polyacrylamide (PAM). We established 0.5 × 0.5-m plots and applied BC (800 g·m~(-2)), PAM (2 g·m~(-2)), and BC + PAM (800 g·m~(-2) + 2 g·m~(-2)) with control plots and three replications on a slope of-25%. We used a rainfall simulator to achieve rainfall intensity of 50 mm·h~(-1) with 30-min duration in the experiments. Analysis of the results obtained from the variables of splash and interrill erosion during the rainfall-runoff process showed that the PAM significantly (p < 0.05) increased all study variables of splash erosion. For interrill erosion, it reduced the variables of soil loss and sediment concentration. However, the difference was not significant (p > 0.05) compared to the control plot and runoff from the two treatment sites increased relative to that from the control plots. The plot treated with BC showed decreased runoff volume, runoff coefficient, and soil loss compared to the control plot at the Marzan-Abad site, but the differences were not statistically significant (p > 0.05). However, the plot in which loess soil was treated with BC at the Maraveh-Tapeh site exhibited considerably (p ≤ 0.05) increased runoff and soil loss compared to the control plot. The entire results verified a wide range for benefit reduction of study treatments from +25.09 to -37.49% for runoff and from +38.59 to -231% for soil loss with more effectiveness for Maraveh-Tapeh Loess soil as well as combined application of BC and PAM. These findings contribute to improved understanding of proper application of soil amendments to control runoff and soil loss in loam and loess soils.
机译:控制土壤侵蚀,特别是在其初始阶段,在自然资源管理中非常重要,目前的研究旨在控制两种土壤类型(Marl在Marzan-Abad和Waraveh-Traveh地点的Marl在伊朗北部的马尔尔)的侵蚀侵蚀使用生物炭(BC)和聚丙烯酰胺(PAM)。我们建立了0.5×0.5米的地块和施加的BC(800 G·M〜(-2)),PAM(2 G·M〜(-2))和BC + PAM(800 g·m〜(-2) + 2g·m〜(-2))用控制图和斜率的三种复制-25%。我们使用了降雨模拟器,在实验中实现了30分钟的持续时间为50 mm·h〜(-1)的降雨强度。在降雨过程中,从飞溅变量获得的结果分析,并在降雨过程中的侵蚀过程中获得的结果表明,PAM显着(P <0.05)增加了所有研究变量的飞溅腐蚀。对于易于侵蚀,它降低了土壤损失和沉积物浓度的变量。然而,与控制图相比,与来自控制图的控制图相比,差异不显着(p> 0.05),并且来自两个治疗部位的径流相对于来自对照图的增加。与MARZAN-ABAD现场的对照图相比,用BC处理的径流量,径流系数和土壤损失降低,但差异没有统计学意义(P> 0.05)。然而,与对照图显示的氧化纤维素遗址的BC处理过黄土土壤的曲线图,与对照图相比,径流增加和土壤损失增加了大量(p≤0.05)。整个结果核实径流+25.09至-37.49%的损益范围内的较大范围,对土壤丧失的+38.59至-231%,对马拉韦胶囊土壤和BC的综合适用以及联合应用帕姆。这些调查结果有助于改善对土壤修正案的适当应用,以控制壤土和黄土土壤中的径流和土壤损失。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第1期|138866.1-138866.8|共8页
  • 作者单位

    Department of Watershed Management Engineering Faculty of Natural Resources Tarbiat Modares University Noor 46417-76489 Iran;

    Department of Watershed Management Engineering Faculty of Natural Resources Yazd University Iran;

    Department of Natural Resources Faculty of Agriculture and Natural Resources Member of Water Management Research Center University of Mohaghegh Ardabili Ardabil Iran;

    Department of Watershed Management Engineering Faculty of Natural Resources Tarbiat Modares University Noor 46417-76489 Iran;

    Univ Lyon Universite Claude Bernard Lyon 1 CNRS ENTPE UMR 5023 LEHNA F-69518 Vaulx-en-Velin France;

    Univ Lyon Universite Claude Bernard Lyon 1 CNRS ENTPE UMR 5023 LEHNA F-69518 Vaulx-en-Velin France;

    Department of Environment Science Faculty of Natural Resources Tarbiat Modares University Noor 46417-76489 Iran;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biological wastes; Erosion processes; Soil conservation; Soil amendment;

    机译:生物垃圾;侵蚀过程;土壤保护;土壤修正案;

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