Department of Engineering, University of Cambridge, Trumpington Street, Cambridge, CB2 1PZ, UK.
Department of Engineering, University of Cambridge, Trumpington Street, Cambridge, CB2 1PZ, UK.
Chemosphere. 2016 Feb;144:681-8. doi: 10.1016/j.chemosphere.2015.09.046. Epub 2015 Sep 25.
A new group of MgO-bearing binders has been developed recently which showed improved sustainability and technical performance compared to Portland cement (PC). However, the application of these MgO-bearing binders in the Solidification/Stabilisation (S/S) techniques is very limited. This study investigates the three-year performance of a highly contaminated soil treated by in-situ S/S using MgO-bearing binders and PC. The core quality, strength, permeability and the leaching properties of the S/S materials were evaluated. The effects of binder composition, addition of inorgano-organo-clay (IOC) and the grout content on the properties of the 3-y S/S materials are discussed. It is found that although MgO alone provided negligible strength to the soil, it is superior in immobilising both inorganic and organic contaminants. Replacing MgO by ground granulated blast-furnace slag (GGBS) significantly enhanced the strength while also performed well in immobilising the contaminants. The improved pH buffering capacity was attributed to the low solubilities of brucite and hydrotalcite-like phases formed in the MgO-bearing binders, and was also the reason for the improved performance in stabilising contaminants. The addition of IOC slightly decreased the strength and the permeability of the S/S materials but inconsistent effect on the contaminant immobilisation was found depending on the binder composition. This study showed no degradation of the S/S materials after 3 y exposure to field conditions and has proved the applicability and the advantages of MgO-bearing binders over PC in S/S.
最近开发了一种新型含氧化镁粘结剂,与波特兰水泥(PC)相比,其在可持续性和技术性能方面都有了显著提高。然而,这些含氧化镁粘结剂在固化/稳定化(S/S)技术中的应用非常有限。本研究调查了原位 S/S 处理高污染土壤的三年性能,使用了含氧化镁粘结剂和 PC。评估了 S/S 材料的核心质量、强度、渗透性和浸出特性。讨论了粘结剂组成、添加无机-有机粘土(IOC)和灌浆含量对 3 年 S/S 材料性能的影响。结果发现,虽然氧化镁单独对土壤几乎没有提供强度,但在固定无机和有机污染物方面表现出色。用磨细高炉矿渣(GGBS)代替氧化镁可显著提高强度,同时对污染物的固定效果也很好。改善的 pH 缓冲能力归因于含氧化镁粘结剂中形成的水镁石和类水滑石相的低溶解度,这也是稳定污染物性能提高的原因。添加 IOC 会略微降低 S/S 材料的强度和渗透性,但对污染物固定的影响并不一致,具体取决于粘结剂的组成。本研究表明,S/S 材料在野外条件下暴露 3 年后没有降解,证明了含氧化镁粘结剂在 S/S 中的适用性和优于 PC 的优势。