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Insights into the macroporosity of freeze-cast hierarchical geopolymers

机译:融合冻结分层地缘聚合物的大摩托度的见解

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摘要

Geopolymer monoliths with controlled lamellar macroporosity and total porosity ranging from 60% to 70% were prepared by ice-templating a partially geopolymerized slurry. Both the maturation treatment of the starting mixture and the water specifically added for freeze-casting were tailored to modify both the geopolymerization and viscosity of the slurry, and, consequently, its freezing behavior, in order to optimize the final lamellar architecture. Following a room temperature maturation treatment, a 50% water content added for freezing developed thick lamellae and wide pores. A lower water content (30%) and curing at 80 degrees C after maturation at room temperature (for both 50% and 30% H2O) was conducive to a narrow lamellar pore width distribution in the 30-130 mm range. However, the consumption of water due to geopolymerization in samples cured at 80 degrees C led to a decreased length and thickness of the lamellae. Lastly, the interparticle meso-and macropores (0.003 to 1 mu m) within the geopolymer lamellae were only slightly modified by the maturation treatment.
机译:具有受控层状大孔隙和总孔隙率的地质聚合物整料范围从60%到70%是由冰模板化的部分geopolymerized浆料制备。两个起始混合物的熟化处理和水专门为冷冻浇铸加入被针对同时修改地质聚合和淤浆的粘度,并因此其凝固行为,为了优化最终的层状结构。以下室温熟化处理,加入50%的水含量为冻结开发厚薄片和宽孔。较低的水含量(30%)并在室温下(对于50%和30%H 2 O)成熟后,在80℃下固化有利于在狭窄的层状孔宽度在30-130毫米范围内的分布。然而,水是由于在80℃下固化样品地质聚合消耗导致了降低的薄片的长度和厚度。最后,颗粒间内消旋 - 和大孔(0.003至1μm)地质聚合物薄片内只略微通过熟化处理改性。

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  • 来源
    《RSC Advances》 |2016年第29期|共10页
  • 作者单位

    Natl Res Council Italy Inst Sci &

    Technol Ceram CNR ISTEC Via Granarolo 64 I-48018 Faenza Italy;

    Natl Res Council Italy Inst Sci &

    Technol Ceram CNR ISTEC Via Granarolo 64 I-48018 Faenza Italy;

    Univ Bologna Alma Mater Studiorum Toso Montanari Dept Ind Chem Viale Risorgimento 4 I-40136 Bologna Italy;

    Univ Bologna Alma Mater Studiorum Toso Montanari Dept Ind Chem Viale Risorgimento 4 I-40136 Bologna Italy;

    Univ Bologna Alma Mater Studiorum Toso Montanari Dept Ind Chem Viale Risorgimento 4 I-40136 Bologna Italy;

    Warsaw Univ Technol Fac Mat Sci &

    Engn 141 Woloska Str PL-02507 Warsaw Poland;

    Natl Res Council Italy Inst Sci &

    Technol Ceram CNR ISTEC Via Granarolo 64 I-48018 Faenza Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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