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Soft clay stabilization using ladle slag-ground granulated blastfurnace slag blend

机译:使用钢包渣磨碎的高炉矿渣掺合料软化粘土

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Ladle furnace basic slag (ladle slag, LS) is a by-product of the steel refining process. There is a great amount of LS generated worldwide every year and the current solution is simply landfilling it, which causes both economic and environmental issues. This study attempts to use LS to activate ground granulated blastfurnace slag (GGBS) for stabilization of soft clay, as well as immobilization of heavy metals in LS. The LS-GGBS-stabilized clays with different binder contents and LS:GGBS ratios were cured for different periods, and then subjected to unconfined compressive strength (UCS) test, leaching test, and X-ray diffraction (XRD). The results indicated that the LSGGBS-stabilized clays with LS:GGBS ratio of 2:8-5:5 could achieve similar or higher UCS compared to ordinary Portland cement-stabilized clay after 56 days of curing. The leaching of potential heavy metals was not detected for the LS-GGBS stabilized clays. According to XRD analysis, the main hydration products of LS-GGBS-stabilized clay were calcium silicate hydrates (CSH) and ettringite, which were responsible for the strength development of LS-GGBS-stabilized clays.
机译:钢包炉基本炉渣(钢包炉渣,LS)是钢精炼过程的副产品。全世界每年都会产生大量的LS,而当前的解决方案仅仅是将其填埋,这会引起经济和环境问题。这项研究试图使用LS来活化磨碎的高炉矿渣(GGBS),以稳定软粘土以及将LS中的重金属固定化。将具有不同粘合剂含量和LS:GGBS比的LS-GGBS稳定的粘土固化不同的时间,然后进行无侧限抗压强度(UCS)测试,浸出测试和X射线衍射(XRD)。结果表明,与普通波特兰水泥稳定粘土相比,LS:GGBS比率为2:8-5:5的LSGGBS稳定粘土在固化56天后可达到相似或更高的UCS。对于LS-GGBS稳定的粘土,未检测到潜在重金属的浸出。根据XRD分析,LS-GGBS稳定粘土的主要水合产物是硅酸钙水合物(CSH)和钙矾石,它们是LS-GGBS稳定粘土的强度发展的原因。

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