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Comparison of the effect of lithium bentonite and sodium bentonite on the engineering properties of bentonite-cement-sodium silicate grout

机译:膨润土锂和膨润土钠对膨润土-水泥-硅酸钠灌浆工程性能影响的比较

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This paper focuses on the engineering properties of Bentonite-Cement-Sodium silicate (BCS) grout, which was prepared by partially replacing the ordinary Portland cement in Cement-Sodium silicate grout with lithium bentonite (Li-bent) and sodium bentonite (Na-bent), respectively. The effect of different Water-to-Solid ratio (W/S) and various replacement percentages of bentonite on the apparent viscosity, bleeding, setting time, and early compressive strength of BCS grout were investigated. The XRD method was used to detect its hydration products. The results showed that both bentonites played a positive role in the stability of BCS grout, increased its apparent viscosity. Na-bent prolonged the setting time of BCS, while 5% of Li-bent shortened the setting time of BCS. The XRD analysis indicated that the hydration products between the mixture containing Na-bent and Li-bent did not differ much. Using bentonite as supplementary cementitious material (SCM) to replace partial cement is a promising way to cut down on carbon dioxide emissions and to produce low-cost, eco-friendly, non-toxic, and water-resistant grout. In addition, Li-bent was superior to Na-bent in improving the strength and the thickening of BCS grouts.
机译:本文着重研究膨润土-水泥-硅酸钠(BCS)灌浆的工程性能,该膨润土-水泥-硅酸钠(BCS)灌浆是通过用锂膨润土(锂-弯曲)和钠膨润土(钠-弯曲)部分替代水泥-硅酸钠灌浆中的普通波特兰水泥而制得的。 ), 分别。研究了不同的水固比(W / S)和膨润土的不同置换百分比对BCS灌浆的表观粘度,渗出,凝固时间和早期抗压强度的影响。 XRD方法用于检测其水合产物。结果表明,两种膨润土均对BCS砂浆的稳定性起积极作用,增加了其表观粘度。 Nabent延长了BCS的凝固时间,而5%Li-bent缩短了BCS的凝固时间。 XRD分析表明,含Na-弯曲的和Li-弯曲的混合物之间的水合产物相差不大。使用膨润土作为补充胶凝材料(SCM)来代替部分水泥是减少二氧化碳排放并生产低成本,环保,无毒且防水的灌浆的有前途的方法。此外,在改善BCS灌浆的强度和增稠方面,Li-bent优于Na-bent。

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