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Feasibility of incorporating autoclaved aerated concrete waste for cement replacement in sustainable building materials

机译:将高压灭菌的加气混凝土废物掺入可持续建筑材料中以替代水泥的可行性

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Autoclaved aerated concrete waste (AACW) is a common low-strength cement-based construction and demolition waste, which is currently disposed by landfills and hard to be directly used as supplementary cementitious material. The present work proposed a potential approach incorporating AACW for cement substitution in sustainable building materials. Wet-milling technique was used to dispose and improve the fineness of AACW (median particle size, as low as 2.3 mu m). It was proved that AACW is suitable for wet-milling treatment due to its porous texture and low-strength. The pH value and electrical conductivity of the AACW slurry was notably improved. Water requirement was increased by the ultrafine AACW. Both setting time and the main hydration heat location were obviously brought forward by ultrafine AACW, indicating its early hydration acceleration. Compressive strength of ultrafine AACW replaced cement pastes present higher or equivalent value compared with pure cement paste, within 30% replacement level. Pore structure was effectively refined by the ultrafine wet-milling AACW. It was proved that AACW could be efficiently used as an alternative cementitious material in cement and concrete after wet-milling treatment, thus bring environmental and economic benefits. (C) 2019 Elsevier Ltd. All rights reserved.
机译:高压灭菌的加气混凝土废物(AACW)是一种常见的低强度水泥基建筑和拆除废物,目前由垃圾填埋场处置,很难直接用作辅助水泥材料。本工作提出了一种潜在方法,将AACW纳入可持续建筑材料中的水泥替代中。湿磨技术用于处理和改善AACW的细度(中值粒径低至2.3微米)。事实证明,由于AACW具有多孔质地和低强度,因此适用于湿磨处理。 AACW浆料的pH值和电导率显着提高。超细AACW增加了需水量。超细AACW明显地提高了凝结时间和主要水合加热位置,表明其早期水合加速。与纯水泥浆相比,超细AACW替代水泥浆的抗压强度更高或相当,替代水平在30%以内。通过超细湿磨AACW有效地细化了孔结构。事实证明,经过湿磨处理后,AACW可以有效地用作水泥和混凝土的替代胶结材料,从而带来环境和经济效益。 (C)2019 Elsevier Ltd.保留所有权利。

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