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Effects of alkali on one-part alkali-activated cement synthesized by calcining bentonite with dolomite and Na2CO3

机译:碱对白云石和Na2CO3煅烧膨润土合成部分碱活化水泥的影响

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A novel approach was employed to synthesize one-part alkali-activated cements (AACs) for potential property/cost ratio advantage by calcining low-quality bentonite with dolomite and Na2CO3. The clinkers and the corresponding 80 degrees C-cured hydrates were characterized with multiple analytical methods. The primitively optimized 80 degrees C-cured paste made from the clinker calcined at 1100 degrees C with (CaO + MgO)/SiO2 at a molar ratio of 2.1 and R2O/SiO2 at a molar ratio of 0.4 resulted in the highest 28 day compressive strength of 383 MPa, which was twice of that without alkali additive. Accompanied with glassy phases, the poorly crystallized cementing active minerals in the optimum clinker contained C(3)A, belite, and MgO, as identified by X-ray diffraction analysis. MgO remained inert during hydration of clinkers calcined at 1200 degrees C or without Na2CO3 additive. Release of Ca(OH)(2) during hydration of belite only appeared in the hydrates of the clinkers calcined without alkali additive, and it was used up in the hydrates of belite-containing clinkers with Na2CO3 additive. The 80 degrees C-cured optimum hydrate was subject to the most seriously carbonization along with the most compact microstructures among all hydrates. The alkali additive improved the cementing activities of one-part R2O-MO-Al2O3-SiO2 cement system in two ways as it not only optimized the phase composition of the clinkers but also facilitated the hydration. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过用白云石和Na2CO3煅烧劣质膨润土,采用一种新颖的方法来合成单份碱活化水泥(AAC),以获得潜在的性能/成本比优势。用多种分析方法表征了熟料和相应的80℃固化的水合物。由在1100摄氏度下煅烧的熟料制成的原始优化的80摄氏度固化糊状物,其摩尔比为2.1的(CaO + MgO)/ SiO2和摩尔比为0.4的R2O / SiO2产生了28天的最高抗压强度383 MPa,是没有碱添加剂的两倍。 X射线衍射分析表明,在最佳的熟料中,伴随着玻璃相的结晶不良的胶凝活性矿物含有C(3)A,贝利特和MgO。在1200摄氏度或无Na2CO3添加剂煅烧的熟料水合过程中,MgO保持惰性。 Ca(OH)(2)在珍珠岩水合过程中的释放仅出现在未添加碱添加剂的煅烧熟料的水合物中,并在含有Na2CO3添加剂的含珍珠岩熟料的水合物中被耗尽。 80°C固化的最佳水合物在所有水合物中都经历了最严重的碳化以及最紧凑的微观结构。碱添加剂以两种方式改善了单组分R2O-MO-Al2O3-SiO2水泥体系的胶凝活性,因为它不仅优化了熟料的相组成,而且促进了水合。 (C)2017 Elsevier B.V.保留所有权利。

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