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Applicability of Microbial Calcification Method for Sandy-Slope Surface Erosion Control

机译:微生物钙化方法在沙质坡面侵蚀防治中的适用性

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摘要

Surface soil erosion is one of the most common slope degradation processes. In this study, microbial calcification (MC), a stimulated natural biocementation process, was investigated for its feasibility as a sandy-slope surface erosion control method. An artificial model slope at 30 degrees was treated by MC via the surface spraying method at three cementation solution concentrations (0.2, 1.0, and 2.0 M). Simulated rainfall was sprayed on the slope surface at 5 mm/min for 30 min. Results show that MC treatment with 0.2- and 1.0-M cementation solution improves surface erosion resistance in terms of observed erosion pattern with time, soil loss weight and rate, and outflow properties. However, MC treatment with 2.0-M cementation solution does not improve surface erosion resistance. Instead, substantial soil loss is observed under rainfall impact while soil is washed away in cemented aggregates. At the end of the rainfall erosion test, microstructural features of the surface samples were identified by scanning electron microscope (SEM) observation. It is found that the effectiveness of MC for sandy-slope surface erosion control is determined by (1) overall CaCO3 precipitation content, (2) treatment depth, and (3) competence between CaCO3 crystal growth and nucleation process.
机译:表层土壤侵蚀是最常见的边坡退化过程之一。在这项研究中,微生物钙化(MC),一种刺激的自然生物胶结过程,被研究了其作为沙质坡面侵蚀控制方法的可行性。通过表面喷涂法在三种胶结溶液浓度(0.2、1.0和2.0 M)下通过MC处理30度的人工模型坡度。以5 mm / min的速度将模拟降雨喷洒在斜坡表面30分钟。结果表明,用观察到的侵蚀模式随时间,土壤流失重量和速率以及流出特性,用0.2-和1.0-M胶结溶液进行MC处理可提高表面抗侵蚀性。但是,用2.0-M胶结剂溶液进行MC处理并不能提高抗表面侵蚀性。相反,在降雨影响下观察到大量土壤流失,而在水泥骨料中将土壤冲刷掉。在降雨侵蚀试验结束时,通过扫描电子显微镜(SEM)观察确定了表面样品的微观结构特征。研究发现,MC对沙质坡面侵蚀控制的有效性取决于(1)CaCO3的总沉淀量,(2)处理深度和(3)CaCO3晶体生长和成核过程之间的竞争能力。

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