ТЕПЛОИЗОЛЯЦИОННЫЙ МАТЕРИАЛ НА ОСНОВЕ ОСТАТКОВ ПИРОЛИЗА УГЛЯ И ОТХОДОВ СТЕКЛА

M. V. Abrahamyan, B. V. Movsisyan, R. A. Avetyan, G. H. Torosyan
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Abstract

In recent decades, materials with high thermal resistance, refractory, non-toxic, with high mechanical characteristics, durable, affordable easy-to-install thermal insulation materials are of great interest. Durability of available thermal insulating materials, for example cotton insulators is from 10 to 20 years, foam is from 7 to 10 years. During burning process of foam plastics, high-toxic material called phosgene is released. At the same time, fungus forms during the process, and it has adhesion incompatibility with cement. Mineral wool decomposes over time, turning into powder, and the installation of external thermal insulation materials in buildings requires surface finishing to protect it from direct weathering, which incurs additional costs. Recently, composite glasses, glass-crystalline materials synthesized from slag-ash wastes of rocks are in great demand. The goal of this research is to study coal and solid waste of coal pyrolysis as a raw material for the foam glass production. In this work, the chemical, phase and mineralogical composition of coal from the Magavuz deposit in the Republic of Artsakh and solid residues of its catalytic pyrolysis have been studied by the modern methods of analysis. Based on the results, a heat-insulating material has been developed, in which pyrolysis waste also plays the role of a gas generator. The selected heat treatment mode ensures the production of heat-insulating foam with high porosity, uniformly distributed in the volume, with sufficient mechanical properties.
燃煤和玻璃废料残余物隔热材料
近几十年来,具有高热阻、耐火、无毒、具有高机械特性、经久耐用、价格合理、易于安装的保温材料受到极大的关注。可用的保温材料的耐久性,例如棉绝缘体为10至20年,泡沫为7至10年。泡沫塑料在燃烧过程中会释放出高毒性物质光气。同时,在此过程中形成真菌,与水泥具有粘连不相容性。矿棉随着时间的推移会分解,变成粉末,并且在建筑物中安装外部保温材料需要表面处理以保护其免受直接风化,这会产生额外的成本。近年来,从岩石的矿渣废料中合成的玻璃晶体材料——复合玻璃需求量很大。本研究的目的是研究煤和煤热解后的固体废弃物作为泡沫玻璃生产的原料。在这项工作中,用现代分析方法研究了来自Artsakh共和国Magavuz矿床的煤的化学、相和矿物组成及其催化热解的固体残留物。在此基础上,开发了一种隔热材料,其中热解废弃物也起到了气体发生器的作用。所选择的热处理方式保证了生产出孔隙率高、体积分布均匀、力学性能充足的隔热泡沫。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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