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Production of thermal insulation blocks from bottom ash of fluidized bed combustion system

机译:用流化床燃烧系统底灰生产绝热块

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摘要

The issues of disposal and environmental problems are increased by the generation of bottom ash from the thermal power plants day by day; hence, its recycling is required. The present study aimed to make thermal insulation blocks using as raw material bottom ash and iron ore slime as a binder and to characterize their engineering properties. Two different fineness values of bottom ash were considered with varying amounts of iron ore slime (0-10%) to make the blocks. Blocks were dried followed by firing at 1000, 1100 and 1200℃, respectively. Cold crushing strength, density and thermal conductivity of these fired blocks showed increasing behaviour with firing temperature, fineness of bottom ash and iron ore slime content. In contrast, a reverse trend was observed in the case of porosity. With increasing firing temperature, the formation of lower melting phases like iron silicate followed by iron aluminium silicate was observed, which imparts the strength inside the blocks. The coarser particles of bottom ash increase the interparticle spaces, which enhances the apparent porosity, resulting in higher thermal insulation property in the blocks. Blocks having better thermal insulation property could be possible to make effectively from coarse bottom ash by adding iron ore slime as a binder.
机译:火力发电厂产生的底灰每天都在增加,从而增加了处置和环境问题。因此,需要对其进行回收。本研究旨在使用底灰和铁矿泥作为粘合剂制造隔热砌块,并表征其工程性能。考虑了两种不同的底灰细度值以及不同量的铁矿泥(0-10%)来制成块。将块干燥,然后分别在1000、1100和1200℃下烧制。这些烧结块的抗碎强度,密度和导热性随烧结温度,底灰细度和铁矿泥含量的增加而增加。相反,在孔隙率的情况下观察到相反的趋势。随着烧成温度的升高,观察到形成较低熔点的相,例如硅酸铁,然后形成硅酸铝铁,这赋予了块体内部的强度。底灰的较粗颗粒增加了颗粒间的空间,这增加了表观的孔隙率,从而导致块体具有更高的绝热性能。通过添加铁矿泥作为粘结剂,可以有效地从粗灰渣中制成具有更好隔热性能的砖块。

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