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Enhancing the geotechnical properties of soil using xanthan gum—an eco-friendly alternative to traditional stabilizers

机译:使用黄原胶 - 一种传统稳定剂的生态友好替代品,增强土壤的岩土性质

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摘要

Several soil stabilization techniques have been adopted to favorably modify the geotechnical properties like hydraulic conductivity, strength, and compressibility of soil. In this study, xanthan gum (XG), an anionic bacterial extracellular polysaccharide is used to modify the geotechnical properties of the soil, particularly its strength and hydraulic conductivity. The addition of xanthan gum to soil improves its strength and stiffness and also decreases its hydraulic conductivity. The addition of xanthan gum induces polymer cross-linking, forms interconnected network of hydrogels in the voids of the soil matrix and causes preferential adsorption of the biopolymer molecules and cations on the soil surface. These interactions between the soil and the biopolymer alter the geotechnical properties of the treated soil matrix favorably. The decrease in permeability is nearly 1000 times with a small addition of 0.25% xanthan gum to the soil. Xanthan gum tends to aggregate the particles at lower concentration and at higher concentrations forms more viscous hydrogels that fill the pore spaces and clogs the pores. Strength also shows a similar increase and hence xanthan gum can be recommended for soil stabilization.
机译:已经采用了几种土壤稳定技术,以有利地改变土壤的液压导电性,强度和压缩性等岩土性质。在该研究中,X原康胶(XG),一种阴离子细菌细胞外多糖用于改变土壤的岩土性质,特别是其强度和液压导电性。向土壤添加黄原胶改善其强度和刚度,并且还降低了其液压导电性。添加黄原胶诱导聚合物交联,在土壤基质的空隙中形成互连的水凝胶网络,并导致生物聚合物分子和阳离子对土壤表面的优先吸附。这些土壤和生物聚合物之间的这些相互作用有利地改变了处理过的土壤基质的岩土性质。渗透性的降低近1000次,少量加入到土壤中的0.25%黄原胶。黄原胶倾向于以较低浓度聚集颗粒,并且在较高的浓度下形成更多粘孔空间的粘性水凝胶,并堵塞孔隙。强度也显示出类似的增加,因此可以推荐黄原胶用于土壤稳定化。

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