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Water vapor sorption isotherms, pore structure, and moisture transport characteristics of alkali-activated and Portland cement-based binders

机译:水蒸气吸附等温线,孔隙结构和碱活性和波特兰水泥基粘合剂的水分运输特性

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Moisture transport plays a key role in determining the different durability-related features of cementitious materials. In this paper, moisture sorption in a range of low-calcium (geopolymer-type) and calcium-rich alkali-activated binders are studied and compared with that of Portland cement-based binders. Through the analysis of water vapor sorption isotherms (WVSI) and mercury intrusion porosimetry (MIP) test results, two vastly different pore structures were observed. Fly ash-based geopolymer-type binders showed a very porous structure where a large volume of mesopores coexisted with a significant volume of macropores. Alkali-activated slag binders, however, had a very fine pore structure, with a relative lack of large macropores. The different pore structure of fly ash-based and slag-based binders led to amplification of pore blocking and cavitation in blended systems by the addition of slag. Analysis of the sorption kinetics showed the prominent effect of the presence of calcium in the matrix to reduce the permeability.
机译:水分运输在确定水泥材料的不同耐久性相关特征方面发挥着关键作用。本文研究了一系列低钙(地缘聚合物型)和富含钙的碱活化粘合剂的水分吸附,并与门泥水泥基粘合剂进行比较。通过分析水蒸气吸附等温(WVSI)和汞侵入孔隙瘤(MIP)测试结果,观察到两个巨大不同的孔结构。粉煤灰的地质聚合物型粘合剂显示出一种非常多孔的结构,其中大量的中孔与大量的大孔共存。然而,碱活性渣粘合剂具有非常精细的孔隙结构,具有相对缺乏大型宏粒。粉煤灰和渣基粘合剂的不同孔结构导致通过添加炉渣扩增混合系统中的孔阻挡和空化。吸附动力学的分析表明,基质中钙的存在突出效果,以降低渗透性。

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