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Exploring the effect of biopolymers in near-surface soils using xanthan gum-modified sand under shear

机译:在剪切下使用黄原胶改性沙子探讨生物聚合物在近表面土壤中的影响

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摘要

Biopolymers produced in near-surface soils by living organisms, including microbial extracellular polymeric substances and plant mucilage, offer enhanced moisture retention and protection from dry environments, lubricate roots to allow penetration through soil, and link soil grains together physically to form soil aggregates. At the aggregate scale their effects and behaviour are known and significant, but their impact on geotechnical behaviour of shallow soil bodies at the mesoscale and beyond is largely unexplored, including their response to the moisture cycling typical in vadose zone soils. In this work we explore the effects of moisture conditions, including multiple dry-wet cycles, on the shear behaviour of sand amended with xanthan gum as a model biopolymer. Drying causes a significant improvement on shear strength, even at low concentrations of biopolymer, but this is largely lost upon wetting. The extent of shear strength improvement is dependent on the moisture path taken (i.e., the wetting-drying history) and deteriorates over a number of moisture cycles. We present a conceptual model that poses redistribution of the biopolymer around the sand grains as the cause of the observed behaviour and demonstrate that biopolymers can provide a significant although transient enhancement of shear strength of sand in near-surface conditions.
机译:由活生物体在近地表土壤中产生的生物聚合物,包括微生物胞外聚合物和植物粘液,具有增强的保水性和抗干燥环境的保护作用,润滑根系,使其能够穿透土壤,并将土壤颗粒物理连接在一起,形成土壤团聚体。在骨料规模上,它们的影响和行为是已知的和显著的,但它们对中尺度及以外浅层土体的岩土工程行为的影响在很大程度上尚未探索,包括它们对包气带土壤中典型水分循环的响应。在这项工作中,我们探索了水分条件(包括多次干湿循环)对以黄原胶为模型生物聚合物的沙子剪切行为的影响。即使在低浓度的生物高聚物中,干燥也能显著提高剪切强度,但在润湿时,剪切强度基本上会降低。剪切强度提高的程度取决于所采用的水分路径(即干湿历史),并在多次水分循环中恶化。我们提出了一个概念模型,将生物聚合物在砂粒周围的重新分布作为观察到的行为的原因,并证明生物聚合物可以在近表面条件下显著提高砂粒的剪切强度。

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