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Development of low-waste technology for the processing of sulphur into polysulphides and materials based on them

机译:基于它们的低废物技术开发低废物技术,将硫加工成多硅酸盐和材料

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The interaction of sulphur with silicate and aluminium chloride was studied, the regularities of inorganic polysulfide formation, its structure and properties were established. The materials obtained on their basis have high physicomechanical properties, which are due to the chemical interaction of sulphur with aluminium, fixed on the surface of the silica-containing material, as well as with oxygen and silicon of the silica itself through the donor-acceptor mechanism with the formation of polysulphides. The results of IR spectroscopy, X-ray, electron-paramagnetic analysis, and quantum-chemical calculations are presented. Modification of silicate with aluminium chloride contributes to an increase in the active centres of the surface of silicate, the disclosure of sulphur rings. The use of electrophilic activator (aluminium chloride) contributes to the binding of sulphur with the formation of polysulphides and the question of the formation of toxic sulphur compounds.
机译:研究了硅与硅酸铝和氯化铝的相互作用,建立了无机多硫化物形成的规律,其结构和性能。基于其基础获得的材料具有高的物理机械性能,这是由于硫磺的化学相互作用,通过供体 - 受体固定在二氧化硅材料的表面上,以及二氧化硅的氧和硅本身通过供体 - 受体具有聚硫化物形成的机制。介绍了IR光谱,X射线,电子顺磁分析和量子化学计算的结果。硅酸铝的改性有助于增加硅酸盐表面的活性中心,硫环的公开内容。使用亲电子活化剂(氯化铝)有助于硫的结合与形成多硅氧烷和毒性硫化合物的形成问题。

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