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Understanding Study of Silicate based Gel formed during the Setting Ceramic Materials

机译:陶瓷材料中形成的硅酸盐基凝胶的理解研究

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Consolidation of cementitious and geopolymeric materials involves silicate-based gel formation. This in situ mechanism is difficult to identify because it occurs in a complex and developing system representing only a minority phase. A study based on the behaviour of acidified sodium silicate solutions in alkaline medium, was therefore initiated in order to define the conditions of irreversible setting. A concentrated sodium silicate solution ([Si]=7 mol/l, pH=11.56, Si/Na=1.71) was used as starting solution. Si NMR spectroscopy, SAXS and elementary chemical analyses (ICP-AES) were used to characterize the various solutions. Acidification of initial solution, leads in a range of relatively low pH and silicon concentration to various gels formation: (i) reversible transparent gels made up of aggregates of particles (Si_7O_(18)H4Na4) and which do not change over time, (ii) soluble white gels that lead to gradual formation of a soluble solid consisting of colloid composition of NaSi_(1.87)O_(4.24), (iii) "irreversible" gels which provide a syneresis phenomenon leading to formation of a strongly consolidated solid made up of soluble phase rich in sodium similar to white gels (NaSi_(1.87)O_(4.24)) and an insoluble phase type silica of composition NaSi_(12.66)O_(25.82).
机译:固结水泥和聚合物材料涉及基于硅酸盐的凝胶形成。这种原位机制难以识别,因为它发生在仅代表少数阶段的复杂和显影系统中。因此开始基于酸化硅酸钠溶液在碱性介质中的行为的研究,以便定义不可逆设置的条件。浓缩硅酸钠溶液([Si] = 7mol / L,pH = 11.56,Si / Na = 1.71)作为起始溶液。 Si NMR光谱,萨克斯和基本化学分析(ICP-AES)用于表征各种溶液。初始溶液的酸化,在相对低的pH和硅浓度范围内导致各种凝胶形成:(i)由颗粒的聚集体组成的可逆透明凝胶(Si_7O_(18)H4NA4),其不会随时间变化,(II )可溶性白凝胶,其导致逐渐形成的可溶性固体组成的NASI_(1.87)O_(4.24),(III)“不可逆”凝胶,其提供了一种营养现象,其导致形成强烈综合的固体富含白凝胶的可溶相(NASI_(1.87)O_(4.24))和组合物NASI_(12.66)O_(25.82)的不溶性相型二氧化硅。

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