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Evaluation of fly ash- and slag-based geopolymers for the improvement of a soft marine clay by deep soil mixing

机译:评估粉煤灰和矿渣基地质聚合物对土壤深层搅拌的改善作用

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摘要

The use of deep soil mixing (DSM) in ground-improvement projects, for structures subjected to low to medium loads, has increased over the past decade due to its convenient and practical implementation and its economic advantages. Traditionally, Portland cement and lime have been the most popular binders for DSM applications. However, the ground-improvement industry has been keen to explore environmentally friendly alternatives with low carbon dioxide emission. The aim of this research is to investigate the use of two stockpiled industrial waste by-products, namely, fly ash (FA) and slag (S), as alternative green binders in ground-improvement projects that would reduce the carbon footprint of these projects. In this research, combinations of FA and S, activated by a liquid alkaline activator (L), were evaluated for the ground improvement of a soft marine clay, namely, Coode Island Silt (CIS). The performance of the FA + S geopolymers was compared with that of traditional cement and lime control binders. The soil moisture content was set at 0.75, 1.0 and 1.25 of the liquid limit (LL) of the soil to replicate the field conditions. 10, 20 and 30% binders, by dry soil mass, were added to the soil, and the samples were cured for 7 and 28 days. Unconfined compression strength (UCS), flexural beam and scanning electron microscopy (SEM) imaging tests were conducted to evaluate the changes in the engineering behavior and the microstructure of the mixtures. The results indicated that the strength and stiffness of the soft clay were significantly increased by the use of these new FA + S binders, which substantiated them as alternatives to traditional cement or lime binders. The optimum binder content was found to be 20%, while CIS + 5%FA + 15%S was found to be the optimum mixture. Furthermore, correlations between the UCS and the modulus of elasticity (E-50) and between the UCS and the modulus of rupture (R) for the geopolymer mixtures were proposed. They will be valuable to both designers and practitioners of ground-improvement works. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:在过去的十年中,由于其便捷实用的实施方式以及其经济优势,在用于中低负荷结构的地面改善项目中,深层土壤搅拌(DSM)的使用有所增加。传统上,硅酸盐水泥和石灰一直是DSM应用中最受欢迎的粘合剂。但是,地面改良行业一直热衷于探索二氧化碳排放量低的环保替代品。这项研究的目的是调查在地面改良项目中使用两种储存的工业废物副产品粉煤灰(FA)和矿渣(S)作为替代绿色粘合剂的方法,这些粘合剂可以减少这些项目的碳足迹。在这项研究中,评估了由液态碱性活化剂(L)活化的FA和S的组合对软质海洋粘土即Coode Island Silt(CIS)的地面改良作用。将FA + S地质聚合物的性能与传统的水泥和石灰控制粘合剂进行了比较。将土壤含水量设置为土壤液位(LL)的0.75、1.0和1.25,以复制田间条件。将按干土壤质量计的10%,20%和30%的粘结剂添加到土壤中,并将样品固化7天和28天。进行无侧限抗压强度(UCS),弯曲束和扫描电子显微镜(SEM)成像测试以评估混合物的工程性能和微观结构的变化。结果表明,通过使用这些新型的FA + S粘合剂,软粘土的强度和刚度得到了显着提高,从而证实了它们是传统水泥或石灰粘合剂的替代品。发现最佳粘合剂含量为20%,而发现CIS + 5%FA + 15%S为最佳混合物。此外,还提出了土工聚合物混合物的UCS与弹性模量(E-50)之间以及UCS与断裂模量(R)之间的相关性。它们对于地面改善工程的设计者和实践者都是有价值的。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

著录项

  • 来源
    《Soils and foundations 》 |2018年第6期| 1358-1370| 共13页
  • 作者单位

    Swinburne Univ Technol, Dept Civil & Construct Engn, 1 John St, Melbourne, Vic 3122, Australia;

    Swinburne Univ Technol, Dept Civil & Construct Engn, 1 John St, Melbourne, Vic 3122, Australia;

    Univ Melbourne, Dept Infrastruct Engn, Melbourne, Vic, Australia;

    Suranaree Univ Technol, Sch Civil Engn, 111 Univ Ave, Muang Dist 30000, Nakhon Ratchasi, Thailand|Suranaree Univ Technol, Ctr Excellence Innovat Sustainable Infrastruct De, Nakhon Ratchasima, Thailand;

    Bo & Associates Inc, Mississauga, ON, Canada;

    Geofrontiers Grp Pty Ltd, Melbourne, Vic, Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geopolymers; Ground improvement; Marine clay; Binders;

    机译:地质聚合物;地基改良;海洋粘土;粘结剂;

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