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Development and materials characteristics of fly ash- slag-based grout for use in sulfate-rich environments

机译:在富含硫酸盐的环境中使用粉煤灰渣基灌浆的发展及材料特性

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摘要

This study improves cement-water glass two-shot grouting materials by adding fly ash and slag, making a new kind of anti-seepage grouting material for the prevention of soil contamination. The chemical corrosion mechanism and chemical resistance properties of the new grouting material were studied, and the contamination prevention performance of the anti-seepage system in complex geological environments, such as tailings ponds and heavy metal-contaminated sites, was also evaluated. The basic properties of the grouting materials, including stability and mobility, were tested. Sodium sulfate was used to corrode the grout gels after demolding, and the effects of chemical corrosion on mechanical properties were tested by unconfined compressive strength tests. The strength of the solution gels increased rather than decreased when fly ash and slag were added. The effect of chemical corrosion on grouting material composition was analyzed by X-ray diffraction. The results show that CaSO4 center dot 2H(2)O crystals have a higher diffraction peak under sodium sulfate corrosion than in standard curing conditions. This difference explains the reason for the increasing strength of the material. The effect of chemical corrosion on the gels' microstructure was analyzed by SEM. Numbers of clubbed tri-sulfur calcium sulphoaluminate and diamond-shaped gypsum crystals were found.
机译:本研究通过添加粉煤灰和矿渣改良水泥-水玻璃二次注浆材料,从而制成一种新型的防渗注浆材料,以防止土壤污染。研究了这种新型灌浆材料的化学腐蚀机理和耐化学性能,并评估了在复杂地质环境(如尾矿池和重金属污染场地)中防渗系统的防污染性能。测试了灌浆材料的基本性能,包括稳定性和流动性。脱模后用硫酸钠腐蚀灌浆凝胶,并通过无侧限抗压强度试验测试化学腐蚀对机械性能的影响。当添加粉煤灰和矿渣时,溶液凝胶的强度增加而不是降低。通过X射线衍射分析化学腐蚀对灌浆材料成分的影响。结果表明,CaSO4中心点2H(2)O晶体在硫酸钠腐蚀下比在标准固化条件下具有更高的衍射峰。这种差异解释了材料强度增加的原因。用SEM分析了化学腐蚀对凝胶微观结构的影响。发现了棒状三硫磺铝酸钙和菱形石膏晶体的数量。

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