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Physico-chemical and surface characteristics of some granulated slag–fired drinking water sludge composite cement pastes

机译:某些颗粒状渣渣饮用水污泥复合水泥浆的理化和表面特性

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摘要

This investigation aims to study the physico-chemical and surface characteristics of some composite cement pastes. Granulated slag (GBFS) was substituted with fired drinking water sludge (FDWTS) with 5, 10 and 15wt% to prepare composite cements. The hydration characteristics of composite cement pastes were studied by the determination of portlandite and chemically combined water contents at different curing ages of hydration as well as the phase composition of hydration products. The surface properties were studied using the nitrogen adsorption technique. The results showed that the chemically combined water content increased by using FDWTS instead of GBFS. The free portlandite content increased up to 7days and then decreased up to 90days. Compressive strength increases with FDWTS up to 5% and then decreases with its increase up to 15% by weight. The specific surface areas (SBET, m2/g) and pore volumes (VP, ml/g) increased with FDWTS content in composite cement pastes.
机译:这项研究旨在研究某些复合水泥浆的理化和表面特性。用5、10和15wt%的燃烧饮用水污泥(FDWTS)代替粒状矿渣(GBFS),以制备复合水泥。通过测定不同水合固化年龄下的硅酸盐和化学结合水含量以及水合产物的相组成,研究了复合水泥浆的水合特性。使用氮吸附技术研究了表面性质。结果表明,使用FDWTS代替GBFS可以增加化学结合水含量。游离硅酸盐含量最多增加7天,然后减少最多90天。当FDWTS达到5%时,其抗压强度会增加,然后达到15%的重量时,其抗压强度会降低。复合水泥浆中的比表面积(SBET,m2 / g)和孔体积(VP,ml / g)随着FDWTS含量的增加而增加。

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