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Contributions to the study of porosity in fly ash-based geopolymers. Relationship between degree of reaction, porosity and compressive strength

机译:对粉煤灰基地质聚合物中孔隙率研究的贡献。反应程度,孔隙率和抗压强度之间的关系

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The main contribution of this paper relates to the development of a systematic study involving a set of parameters which could potentially have an impact on geopolymer properties: curing temperature, type of activating solution, alkali metal in solution, incorporation of slag (Ca source) and type of slag used. The microstructures, degrees of reaction, porosities and compressive strengths of geopolymers have been evaluated. Geopolymers prepared with soluble silicate presented a more compacted and closed structure, a larger amount of gel, lower porosity and greater compressive strength than those prepared with hydroxides. On the other hand, Na-geopolymers were more porous but more resistant than K-geopolymers. Although there is an inverse relation between degree of reaction and porosity, between compressive strength and porosity it is not always inversely proportional and could, in some cases, be masked by changes produced in other influencing parameters.
机译:本文的主要贡献涉及系统研究的发展,该系统研究涉及一组可能对地聚合物的性能产生潜在影响的参数:固化温度,活化溶液的类型,溶液中的碱金属,矿渣(Ca源)的掺入和使用的炉渣类型。已经评估了地质聚合物的微观结构,反应程度,孔隙率和抗压强度。与用氢氧化物制备的地聚合物相比,用可溶性硅酸盐制备的地聚合物呈现出更致密和封闭的结构,更多的凝胶,更低的孔隙率和更高的抗压强度。另一方面,Na-地聚合物比K-地聚合物更多孔但更耐腐蚀。尽管反应程度与孔隙率之间存在反比关系,但在抗压强度与孔隙率之间却并不总是成反比关系,在某些情况下,其他影响参数所产生的变化可能会掩盖它。

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