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Compressive strength of soils amended with a bacterial succinoglycan: effects of soluble salts and organic matter

机译:用细菌琥珀聚糖修饰的土壤的抗压强度:可溶性盐和有机物的影响

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摘要

The ability to stabilize soils in a cost effective and efficient manner has utility in both civil and military applications. This study examines the ability of a bacterial succinoglycan to bind and strengthen the silt fractions of three geochemically different surface soils. Small-scale specimen preparation and uniaxial compression test methods were developed to observe effects of biopolymer concentration and silt surface condition on specimen stress–strain response. Results indicate that the biopolymer was effective at strengthening all three natural silts and when applied at concentrations of 1–15 mg·mL-1, the increase in strength was linear. Silt surface condition was then modified by sequential removal of soluble salts and organic matter. For two of the silts, the removal of salts and organic matter had significant and cumulative negative effects on specimen compressive strength, deformation at peak stress, time to failure, and absorbed strain energy at failure. For a silt characterized by a high cation exchange capacity, high pH, and low aggregate percentage, the removal of organic matter did not reduce compressive strength beyond the level associated with the removal of soluble salts. Results from this study indicate that surface modification can significantly affect the compressive strength of silt materials and identified aggregate content as a principal determinant.
机译:以经济有效的方式稳定土壤的能力在民用和军事应用中都有用。这项研究检查了细菌琥珀酸聚糖结合和增强三种地球化学不同表层土壤的淤泥成分的能力。开发了小规模的标本制备和单轴压缩测试方法,以观察生物聚合物浓度和淤泥表面状况对标本应力-应变响应的影响。结果表明,该生物聚合物可有效地增强所有三种天然淤泥,当以1–15 mg·mL-1的浓度施用时,强度的增加呈线性变化。然后通过依次去除可溶性盐和有机物来改变淤泥表面状况。对于其中两种淤泥,去除盐分和有机物会对样品的抗压强度,峰值应力下的变形,破坏时间以及破坏时吸收的应变能产生显着且累积的负面影响。对于以高阳离子交换容量,高pH和低聚集百分比为特征的淤泥,有机物的去除不会将抗压强度降低到超过与可溶性盐去除相关的水平。这项研究的结果表明,表面改性会显着影响淤泥材料的抗压强度,并将骨料含量确定为主要决定因素。

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