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Biological Mechanisms of Piping Erosion Reduction of Organic Soils

机译:减少有机土壤管道侵蚀的生物机理

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The purpose of this study is to develop an understanding of the biological mechanisms governing piping erosion resistance in organic soils. Our previous investigations demonstrated the ability of organic soils such as peat and compost to effectively decrease piping erosion progression when mixed with otherwise highly erodible silty sands. However, degradation of important geomechanical properties after the addition of the organic soils limits the applicability of this bioabatement method. To better understand the processes of the erosion reduction and the geomechanical detriments, two additional phases of research are performed. First, the possible influence of the unique shape and texture of the botanically derived organic constituents is eliminated in order to more precisely focus on the biological aspects. Results substantiate the hypothesis that the presence of extracellular polymeric substances (EPS) can affect piping erosion behavior. The second phase further investigates this hypothesis by quantifying total biomass and two EPSs, polysaccharides and a glycoprotein called glomalin, in various organic and non-organic soils. Results of the analyses indicate positive correlations between the presence of both EPSs, total microbial populations, and erosion reduction. The presence of both microbially and synthetically derived polysaccharides contribute to a reduction in piping erosion progression.
机译:这项研究的目的是加深对控制有机土壤中管道抗侵蚀性的生物学机制的理解。我们之前的研究表明,泥炭和堆肥等有机土壤与其他易侵蚀的粉质砂混合后,能够有效降低管道侵蚀的进程。但是,在添加有机土壤后,重要的地质力学性能下降,限制了这种生物减水方法的适用性。为了更好地了解侵蚀减少和岩土力学损害的过程,还进行了两个附加的研究阶段。首先,消除了植物来源的有机成分的独特形状和质地的可能影响,以便更精确地关注生物学方面。结果证实了细胞外聚合物(EPS)的存在会影响管道腐蚀行为的假说。第二阶段通过量化各种有机土壤和非有机土壤中的总生物量和两种EPS,多糖和称为gloomalin的糖蛋白,进一步研究了这一假设。分析结果表明两种EPS的存在,微生物总数和侵蚀减少之间呈正相关。微生物和合成来源的多糖的存在有助于减少管道腐蚀的进程。

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