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Structure, bonding and morphology of hydrothermally synthesised xonotlite

机译:水热合成硬硅钙石的结构,键合和形态

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摘要

The authors have systematically investigated the role of synthesis conditions upon the structure and morphology of xonotlite. Starting with a mechanochemically prepared, semicrystalline phase with Ca/Si=1, the authors have prepared a series of xonotlite samples hydrothermally, at temperatures between 200 and 250 degrees C. Analysis in each case was by X-ray photoelectron spectroscopy, environmental scanning electron microscopy and X-ray diffraction. The authors’ use of a much lower water/solid ratio has indirectly confirmed the ‘through solution’ mechanism of xonotlite formation, where silicate dissolution is a key precursor of xonotlite formation. Concerning the role of temperature, too low a temperature (~200 degrees C) fails to yield xonotlite or leads to increased number of structural defects in the silicate chains of xonotlite and too high a temperature (>250 degrees C) leads to degradation of the xonotlite structure, through leaching of interchain calcium. Synthesis duration meanwhile leads to increased silicate polymerisation due to diminishing of the defects in the silicate chains and more perfect crystal morphologies.
机译:作者已经系统地研究了合成条件对硬硅钙石结构和形态的作用。从以机械化学方法制备的Ca / Si = 1的半晶相开始,作者在200至250摄氏度的温度下水热制备了一系列硬硅钙石样品。每种情况下的分析均采用X射线光电子能谱,环境扫描电子显微镜和X射线衍射。作者使用低得多的水/固体比率间接证实了硬硅钙石形成的“直通溶液”机制,其中硅酸盐的溶解是硬硅钙石形成的关键前体。关于温度的作用,太低的温度(约200摄氏度)不能产生硬硅钙石或导致硬硅钙石的硅酸盐链中结构缺陷数量增加,而太高的温度(大于250摄氏度)则导致硅钙石的降解。硬硅钙石结构,通过链间钙的浸出。合成持续时间同时由于硅酸盐链中缺陷的减少和更完美的晶体形态而导致硅酸盐聚合增加。

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  • 作者

    Black L; Garbev K; Stumm A;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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