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首页> 外文期刊>Fuel Processing Technology >Study of the hydrothermal treatments of residues from fluidized bed combustors for the manufacture of ettringite-based building elements
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Study of the hydrothermal treatments of residues from fluidized bed combustors for the manufacture of ettringite-based building elements

机译:对流化床燃烧器中残留物进行水热处理以制造基于钙矾石的建筑构件的研究

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摘要

Fluidized bed combustion (FBC) waste is generally unsuitable for making ordinary cements and concretes, and its alternative uses are therefore worthy of consideration. In the present work, FBC waste is investigated as a potentially suitable single raw material for the manufacture of building components based on ettringite, a compound characterized by low density, high fire resistance, significant mechanical strength and usefulness as the main component of preformed lightweight building materials. The hydration behaviour of two FBC waste samples (a fly and a bottom ash) was explored within curing periods comprised between 2 and 24 h at 55 °C, 70 °C and 85 °C. X-ray diffraction and differential thermal analysis were employed as main experimental techniques in order to evaluate the distribution of the hydration products. The role of the raw ash chemical and mineralogicat composition, operating temperature and time in the ettringite formation was highlighted. The fly ash was more prone to generate ettringite which, after 2 h-curing time, tended to form and decompose earlier, as the curing temperature and time were further increased. The selectivity of the reactants toward ettringite can be enhanced by the addition of blending components.
机译:流化床燃烧(FBC)废物通常不适合用于制造普通水泥和混凝土,因此值得考虑使用其替代用途。在目前的工作中,FBC废料被研究为潜在有用的单一原料,用于制造基于钙矾石的建筑部件,该化合物以低密度,高耐火性,显着的机械强度和实用性为特征,是预制轻质建筑的主要成分材料。在55°C,70°C和85°C下2至24小时的固化时间内,研究了两个FBC废料样品(粉煤灰和底灰)的水合行为。 X射线衍射和差热分析被用作主要实验技术,以评估水合产物的分布。着重指出了原灰化学和矿物组成,操作温度和时间在钙矾石形成中的作用。粉煤灰更容易产生钙矾石,其在固化2小时后,随着固化温度和时间的进一步增加,趋于更早地形成和分解。通过添加共混组分可以提高反应物对钙矾石的选择性。

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