高分子聚合物防治坡地土壤侵蚀模拟试验研究

    Preventing sloping soil erosion with macromolecule polymers through simulated experiment

    • 摘要: 通过人工模拟降雨试验,研究了坡面施加不同浓度的聚丙烯酸、聚乙烯醇、脲醛树脂3种聚合物对防治土壤侵蚀的效果。结果表明:高分子聚合物能推迟坡面产流时间、降低产流速率;与对照坡面相比,径流量减少42.05%、土壤侵蚀量减少58%以上;试验确定了3种聚合物有效施用浓度范围分别为:116~145 mL/m2,36~40 g/m2,180.0~240.0 mL/m2,并筛选出聚丙烯酸为综合作用效果最佳的高分子聚合物。上述3种高分子聚合物在防治水土流失方面有广泛的应用前景,今后还需对其效果持续性、最佳施用量等进一步研究。

       

      Abstract: Through artificial rainfall simulation experiment, this paper mainly studied the effect of applying the different concentration polymers including Polypropylene-acid, Polythene-hydri and Urea-formaldehyde resin. The results showed that macromolecule polymers applied on sloping land can put off time of producing runoff and decrease velocity of producing runoff. Compared with the control sloping, the runoff of sloping land applied macromolecule polymers was reduced 42.05%, and soil erosion was reduced over 58%. And also, through analyzing synthetically effect of them on soil and water loss, the appropriate concentration range of three macromolecule polymers were ascertained, Polypropylene-acid: 116~145 mL/m2; Polythene-hydri: 36~40 g/m2; Urea-formaldehyde resin: 180.0~240 mL/m2 respectively, the polypropylene acid has the best effect in lowering surface runoff, reducing soil loss and increasing soil penetration. These three macromolecule polymers has the wide application foreground for soil and water conservation in the future, however their durative of effect and the optimal quantity need to be researched further.

       

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