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Unsaturated behaviour of a stabilized marine sediment: A comparison of cement and GGBS binders

机译:稳定的海洋沉积物的不饱和行为:水泥和GGBS粘合剂的比较

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In order to ascertain the contaminant-encapsulation potential of stabilized soil, an understanding of its unsaturated hydraulic behaviour, specifically the Soil Water Retention Curve (SWRC), is paramount. In this paper, centrifuge testing was used to obtain SWRCs for sediment dredged from an Irish harbour, stabilized with Ordinary Portland cement (OPC) and Ground Granulated Blast Furnace Slag (GGBS) binders. The effects of the different binder proportions and different curing times on both the Unconfined Compressive Strength (UCS) and SWRC were investigated, with the support of Scanning Electron Microscope (SEM) data. The Fredlund and Xing (1994) empirical model was found to provide the best fit to the stabilized sediment SWRCs. The water holding capacity was found to increase with increased binder content, increased GGBS proportion in the binder and increased curing time, suggesting that high-GGBS binders are most suitable for locking in contaminants. An examination of relationships between one of the model parameters (Air Entry Value, AEV) and UCS further highlights differences in strength and water retention mechanisms between the two binder combinations. In addition to its well-known environmental credentials, this research highlights the technical merits in using GGBS in contaminated sediment reuse projects.
机译:为了确定稳定土壤的污染物封装电位,了解其不饱和液压行为,特别是土壤水保留曲线(SWRC)是至关重要的。本文采用离心机检测从爱尔兰港口获得沉积物的SWRC,用普通波特兰水泥(OPC)和地粒状高炉渣(GGBS)粘合剂稳定。研究了不同的粘合剂比例和不同固化时间对非整合压缩强度(UCS)和SWRC的影响,扫描电子显微镜(SEM)数据。 Fredlund和xing(1994)发现经验模型为稳定的沉积物SWRC提供最适合。发现水持续容量随着粘合剂含量增加而增加,粘合剂中的GGB比例增加以及增加的固化时间,表明高GGBS粘合剂最适合锁定污染物。检查模型参数(空中入口值,AEV)和UC之间的关系进一步突出了两个粘合剂组合之间的强度和水保留机制的差异。除了众所周知的环境凭证之外,该研究还突出了使用GGB在受污染的沉积物重用项目中的技术优点。

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