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首页> 外文期刊>Journal of Cleaner Production >Recycling of expired cement and aged supplementary cementitious materials based on close packing theory and space filling effect
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Recycling of expired cement and aged supplementary cementitious materials based on close packing theory and space filling effect

机译:基于紧密堆积理论和空间填充效应的过期水泥和陈旧补充胶凝材料的回收

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To reduce the pressure of energy crisis and greenhouse effect from cement manufacturing, this paper proposes a technique on recycling of expired cement by blending with aged silica fume and slag through particle close packing design. To verify the accessibility of optimal packing arrangement, several porous structure measurements are conducted, including mercury intrusion porosimetry, nitrogen adsorption, scanning electron microscopy, nuclear magnetic resonance and hardened strength development with thermal gravimetric analysis. The obtained results manifest that the porous structure of hardened paste is mainly divided into three ranges as <11 nm, 11-50 nm and around 80 mu m diameters; while attributed to the filling effect of aged silica fume on pores below 12.2 nm and slag filling effect on over 12.2 nm, the optimal mixture presents obviously better pore distribution than pastes without close packing design; moreover the scanning photography factually verifies the fine particle and hydration products filling effect in air pore spaces, and the liquid magnetic signal intensity further displays the microstructure density modification especially after 28days. As a whole, the close packing design is proved as an efficient method to reutilize the expired cement with aged silica fume and slag, and this proposition will significantly turn three unqualified construction wastes into useful material on eco-friendly consideration. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了减少水泥生产带来的能源危机和温室效应的压力,本文提出了一种通过颗粒密堆积设计与老化的硅粉和矿渣混合来回收过期水泥的技术。为了验证最佳填料排列的可及性,进行了几种多孔结构测量,包括压汞法,氮吸附,扫描电子显微镜,核磁共振和通过热重分析得出的硬化强度。所得结果表明,硬化糊剂的多孔结构主要分为<11nm,11-50nm和约80μm直径的三个范围。尽管归因于老化的硅粉对低于12.2 nm的孔的填充效果和对超过12.2 nm的炉渣的填充效果,但最佳混合物的孔分布明显优于没有紧密包装设计的糊剂。此外,扫描摄影实际上验证了在气孔空间中的微粒和水合产物的填充效果,并且液体磁信号强度进一步显示出微结构密度的改变,尤其是在28天之后。总体而言,紧密包装设计被证明是一种可有效利用老化的硅粉和矿渣再利用已过期水泥的方法,并且这一提议将从环保角度考虑,将三种不合格的建筑垃圾转化为有用的材料。 (C)2019 Elsevier Ltd.保留所有权利。

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