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EFFECTS OF ALUMINUM SULFATE AND POLYELECTROLYTE SOLUTIONS ON THE GEOTECHNICAL PROPERTIES OF ORGANIC CLAY

机译:硫酸铝和高分子电解质溶液对有机粘土的土工性质的影响

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References(16) Cited-By(4) This paper presents the effects of dilute polyelectrolyte solution used in combination with aluminum sulfate on the geotechnical properties of a homogeneous high-plasticity organic clay derived from the purification of turbid water. Apart from the chemical additives, the alum-polyelectrolyte clay (APC) and untreated clay were similar in composition, comprising 41% micro-fibrous amorphous organic solids by dry mass. However, the geomechanical behavior of the APC material was enhanced by polymer-particle bridging phenomenon, which contributed to higher stress-strain modulus, 10-20% greater shear strength in undrained triaxial compression, a higher effective angle of shearing resistance value, reduced compressibility and a slower rate of consolidation compared to the untreated clay. Hence, this study raises the possibility of using dilute polyelectrolyte solution in combination with aluminum sulfate as an alternative soil improvement measure for organic residues and ultra-soft organic clay deposits.
机译:参考文献(16)By(4)介绍了稀硫酸与硫酸铝混合使用对纯净高塑性有机黏土的土工特性的影响。除化学添加剂外,明矾-聚电解质粘土(APC)和未处理的粘土的成分相似,以干重计包含41%的微纤维状非晶态有机固体。但是,聚合物颗粒桥接现象增强了APC材料的地质力学行为,这有助于提高应力应变模量,在不排水的三轴压缩中剪切强度提高10-20%,较高的抗剪切力有效角,降低可压缩性与未处理的粘土相比,固结速度较慢。因此,这项研究提出了将稀聚电解质溶液与硫酸铝结合使用作为有机残留物和超软有机粘土沉积物的替代土壤改良措施的可能性。

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