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首页> 外文期刊>Canadian Geotechnical Journal >Mechanism of reactive magnesia - ground granulated blastfurnace slag (GGBS) soil stabilization
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Mechanism of reactive magnesia - ground granulated blastfurnace slag (GGBS) soil stabilization

机译:反应性氧化镁-颗粒状高炉矿渣(GGBS)土壤稳定的机理

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Reactive magnesia (MgO)-activated ground granulated blastfurnace slag (GGBS), with fixed GGBS dosages but varying MgO/GGBS ratios, was used for stabilization of two soils and compared with brucite (Mg(OH)(2))-activated GGBS and hydrated lime (Ca(OH)(2))-activated GGBS. A range of tests, including unconfined compressive strength testing, X-ray diffraction, and scanning electron microscopy, was conducted to study the mechanical, chemical, and microstructural properties of the stabilized soils, and then to investigate the mechanism of MgO-GGBS soil stabilization. Results indicate that the Mg(OH)(2) had a minimal activating efficacy for GGBS-stabilized soil, while the reactive MgO yielded a higher activating efficacy than the Ca(OH)(2). The activator-soil reactions in the stabilized soil slowed down the activating reaction rate for GGBS; this effect was less significant in MgO-GGBS-stabilized soil than in Ca(OH)(2)-GGBS-stabilized soil, and hence the GGBS hydration rate in the former was less reduced by the soil than the latter. The Mg2+ and OH-ions produced from MgO dissolution participated in the GGBS hydration reactions without precipitating Mg(OH)(2). The common hydration products in all GGBS-stabilized soils were calcium silicate hydrate-like compounds. Additionally, hydrotalcite and calcite could be produced in MgO-GGBS- and Ca(OH)(2)-GGBS-stabilized soils, respectively, especially with a high activator/GGBS ratio.
机译:具有固定GGBS剂量但变化的MgO / GGBS比率的反应性氧化镁(MgO)活化的粉状高炉矿渣(GGBS)用于稳定两种土壤,并与水镁石(Mg(OH)(2))活化的GGBS和熟石灰(Ca(OH)(2))活化的GGBS。进行了一系列测试,包括无侧限抗压强度测试,X射线衍射和扫描电子显微镜,以研究稳定化土壤的力学,化学和微观结构特性,然后研究MgO-GGBS土壤稳定化的机理。结果表明,Mg(OH)(2)对GGBS稳定的土壤具有最小的活化作用,而活性MgO的活化作用比Ca(OH)(2)高。稳定土壤中的活化剂-土壤反应减慢了GGBS的活化反应速率。这种作用在MgO-GGBS稳定的土壤中不如在Ca(OH)(2)-GGBS稳定的土壤中显着,因此,前者中的GGBS水合速率比后者少。由MgO溶解产生的Mg2 +和OH离子参与了GGBS水化反应,而没有沉淀Mg(OH)(2)。在所有GGBS稳定化的土壤中,常见的水合产物是硅酸钙水合物样化合物。此外,水滑石和方解石可以分别在MgO-GGBS-和Ca(OH)(2)-GGBS稳定的土壤中产生,尤其是在活化剂/ GGBS比率高的情况下。

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