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Effects of industrial by-product based geopolymers on the strength development of a soft soil

机译:工业副产品基地质聚合物对软土强度发展的影响

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Portland cement is traditionally used as a binder in ground improvement projects on soft soil foundations. The use of cement in ground improvement projects, however, is fraught with both, financial and environmental concerns due to its relatively high cost, the use of natural resources and the high carbon footprint from cement production. Attempts are being made to find alternative environmentally friendly binders with a low carbon footprint using industrial by-products such as fly ash (FA) and slag (S). Using waste byproducts such as FA and S to produce geopolymer binders, as novel green cementitious materials, may provide an environmentally friendly and effective ground improvement option. In this study, the effect of adding geopolymers to a soft soil was investigated for usage in deep soil mixing (DSM) applications. The soil was a soft marine clay known as Coode Island Silt (CIS). Different combinations of FA and S with six combinations of sodium and potassium based liquid alkaline activators (L) were added to the soil to study the effects on its engineering and chemical properties. These changes were evaluated via an unconfined compression strength (UCS) test, scanning electron microscopy (SEM) imaging and energy-dispersive X-ray spectroscopy (EDS) tests. The tests were conducted after 3, 7, 14 and 28 days of curing. Based on the results, the important role of L in strength development was studied, and the combination of 30% NaOH with 70% Na2SiO3 was found to achieve the highest strengths. Furthermore, increasing the S content was found to result in significant improvements in strength. The excellent correlation between strength and stiffness shown in the results are expected to help in the development of relationships for strength prediction of these green binders in geotechnical applications. This study shows that FA and S based geopolymers can be used as sustainable binders in DSM projects, with significant environmental benefits. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:传统上,波特兰水泥在软土地基上的地面改良项目中用作粘合剂。然而,由于水泥的相对较高的成本,自然资源的使用以及水泥生产产生的高碳足迹,在地面改善项目中使用水泥时,财务和环境问题都充满了担忧。人们正在尝试使用粉煤灰(FA)和矿渣(S)等工业副产品寻找具有低碳足迹的替代性环保粘合剂。使用诸如FA和S之类的废副产品生产作为新型绿色水泥材料的地聚合物粘合剂,可能会提供一种环境友好,有效的地面改良方案。在这项研究中,研究了将地质聚合物添加到软土中的效果,以用于深层土壤混合(DSM)应用中。土壤是一种柔软的海洋粘土,称为Coode Island Silt(CIS)。将FA和S的不同组合以及钠和钾基液体碱性活化剂(L)的六种组合添加到土壤中,以研究对其工程和化学性质的影响。通过无限制抗压强度(UCS)测试,扫描电子显微镜(SEM)成像和能量色散X射线光谱(EDS)测试评估了这些变化。在固化3、7、14和28天后进行测试。根据这些结果,研究了L在强度发展中的重要作用,发现30%NaOH和70%Na2SiO3的组合达到了最高强度。此外,发现增加S含量导致强度的显着提高。结果中显示的强度和刚度之间的极好的相关性有望帮助开发这些绿色粘合剂在岩土工程应用中的强度预测关系。这项研究表明,基于FA和S的地质聚合物可用作DSM项目中的可持续粘合剂,具有显着的环境效益。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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