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Experimental study on the effects of multiple corrosive ion coexistence on soil-cement characteristics

机译:多种腐蚀性离子共存对土壤水泥特性影响的试验研究

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In some coastal areas, soft soils have high contents of Mg2+, Cl- and SO42-, which negatively affect the soil-cement strength when they are treated with cement. In this paper, laboratory macro- and micro-tests were carried out to study the effects of these three ions on the properties of soil-cement. First, unconfined compressive strength tests were conducted to study the effects of single ions and multiple ions on the strength of soil-cement under different curing times. Then, the soil-cement composition and the microstructure were observed using X-ray diffraction (XRD) and scanning electron microscopy (SEM). The action mechanisms of these three ions were explored through an examination of the chemical reaction process. It was found that the strength of the soil-cement decreased with an increasing ion content and that the coexistence of multiple corrosive ions had a greater effect than any single ion. When Mg2+, Cl- and SO42- coexist in soil-cement, they restrain the formation of cement hydration products, reduce the gelling property of these products and destroy the soil-cement structure, resulting in a reduction in strength. The research results provide a reference for developing a modified technique for the production of salt-rich soft soils reinforced by cement. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:在一些沿海地区,软土中的Mg2 +,Cl-和SO42-含量较高,这在用水泥处理时会对土壤水泥强度产生负面影响。本文通过实验室宏观和微观测试来研究这三种离子对土壤水泥性能的影响。首先,进行无侧限抗压强度试验,研究不同固化时间下单离子和多离子对土壤水泥强度的影响。然后,使用X射线衍射(XRD)和扫描电子显微镜(SEM)观察土壤水泥的组成和微观结构。通过检查化学反应过程探索了这三种离子的作用机理。结果发现,水泥土的强度随离子含量的增加而降低,并且多种腐蚀性离子的共存比单一离子的影响更大。当Mg2 +,Cl-和SO42-共存于土壤水泥中时,它们会抑制水泥水合产物的形成,降低这些产物的胶凝性能并破坏土壤水泥结构,从而导致强度降低。研究结果为开发改良方法生产水泥加固的富盐软土提供了参考。 (C)2019年由Elsevier B.V.代表日本岩土工程学会制作和主持。

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