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Alkali-activated slag cements produced with a blended sodium carbonate/sodium silicate activator

机译:用混合碳酸钠/硅酸钠活化剂生产的碱激活的矿渣水泥

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摘要

An alkali-activated slag cement produced with a blend of sodium carbonate/sodium silicate activator was characterised. This binder hardened within 12 h and achieved a compressive strength of 20 MPa after 24 h of curing under ambient conditions, which is associated with the formation of an aluminium substituted calcium silicate hydrate as the main reaction product. Carbonates including pirssonite, vaterite, aragonite and calcite were identified along with the zeolites hydroxysodalite and analcime at early times of reaction. The partial substitution of sodium carbonate by sodium silicate reduces the concentration of carbonate ions in the pore solution, increasing the alkalinity of the system compared with a solely carbonate-activated paste, accelerating the kinetics of reaction and supplying additional silicate species to react with the calcium dissolving from the slag as the reaction proceeds. These results demonstrate that this blend of activators can be used effectively for the production of high-strength alkali-activated slag cements, with a microstructure comparable to what has been identified in aged sodium-carbonate-activated slag cements but without the extended setting time reaction usually identified when using this salt as an alkali activator.
机译:表征了用碳酸钠/硅酸钠活化剂的混合物生产的碱活化矿渣水泥。该粘合剂在12 h内硬化,在环境条件下固化24 h后达到20 MPa的压缩强度,这与形成铝取代的硅酸钙水合物作为主要反应产物有关。在反应的早期,鉴定出包括皮尔磺酸盐,球ate石,文石和方解石的碳酸盐以及沸石羟基苏打石和方沸石。用硅酸钠部分取代碳酸钠可降低孔溶液中碳酸盐离子的浓度,与仅用碳酸盐活化的糊状物相比,可提高系统的碱度,可加快反应动力学并提供额外的硅酸盐物质以与钙反应随着反应的进行从炉渣中溶解。这些结果表明,这种活化剂共混物可有效地用于生产高强度碱活化矿渣水泥,其微观结构可与老化碳酸钠活​​化矿渣水泥中的微观结构媲美,但不会延长固化时间通常在使用这种盐作为碱活化剂时发现。

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