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Alkali-Activated Aluminium-Silicate Composites as Insulation Materials for Industrial Application

机译:碱活化的铝 - 硅酸盐复合材料作为工业应用的绝缘材料

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The article reports on the study of thermal stability of alkali-activated aluminium-silicate composites (ASC) at temperature 800-1100°C. ASC were prepared by using calcined kaolinite clay, aluminium scrap recycling waste, lead-silicate glass waste and quartz sand. As alkali activator, commercial sodium silicate solution modified with an addition of sodium hydroxide was used. The obtained alkali activation solution had silica modulus Ms=1.67. Components of aluminium scrap recycling waste (aluminium nitride (A1N) and iron sulphite (FeSO3)) react in the alkali media and create gases - ammonia and sulphur dioxide, which provide the porous structure of the material [1]. Changes in the chemical composition of ASC during heating were identified and quantitatively analysed by using DTA/TG, dimension changes during the heating process were determined by using HTOM, pore microstructure was examined by SEM, and mineralogical composition of ASC was determined by XRD. The density of ASC was measured in accordance with EN 1097-7. ASC with density around 560 kg/m and heat resistance up to 1100°C with shrinkage less than 5% were obtained. The intended use of this material is the application as an insulation material for industrial purposes at elevated temperatures.
机译:本文报道了在800-1100℃温度下碱活化铝硅酸铝 - 硅酸盐复合材料(ASC)的热稳定性的研究。通过使用煅烧的高岭石粘土,铝废料回收废物,铅硅酸盐玻璃废料和石英砂制备ASC。作为碱活化剂,使用加入氢氧化钠改性的商业硅酸钠溶液。所得碱活化溶液具有二氧化硅模量Ms = 1.67。铝废料回收废物(氮化铝(A1N)和硫酸铁(FeSO3))的组分在碱培养基中反应,并产生气体 - 氨和二氧化硫,其提供材料的多孔结构[1]。通过使用DTA / Tg来确定加热过程中ASC的化学成分的变化,通过使用HTOM测定加热过程中的尺寸变化,通过SEM检查孔隙微观结构,通过XRD测定孔隙微观结构。根据EN 1097-7测量ASC的密度。获得密度约为560kg / m的密度,并获得高达1100℃的耐热性小于5%。这种材料的预期用途是在高温下的工业用途作为工业用途的应用。

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