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Production Of Fired Ceramic Materials From Fly Ash With Witherite Additive

机译:用粉煤灰和Witherite添加剂生产烧制陶瓷材料

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摘要

In this study, the effect of witherite (BaCO3) addition on the sintering of lignite coal fly ash taken from the Seyitomer power plant of Kutahya/Turkey was examined at temperatures of 1100, 1150 and 1200 0C in air atmosphere. Bloating of the fly ash samples sintered at 1150 0C was prevented by shifting the decomposition temperature of CaSO4 in the fly ash to a higher temperature, and their physico- mechanical properties (porosity, water absorption, bulk density and bending strength) were improved with BaCO3 addition owing to the phase transformation from CaSO4 (anhydrite) to BaSO4 (Barite) as supported by XRD analysis. Positive effects of BaCO3, however, were not seen on the fly ash samples sintered at 1100 0C. All the fly ash samples sintered at 1200 0C were bloated due to the gas evolving during the thermal decomposition metal sulphates, and also they melted.
机译:在这项研究中,在大气,大气温度为1100、1150和1200 0C的温度下,研究了添加碳酸钙(BaCO3)对烧结来自Kutahya / Turkey Seyitomer电厂的褐煤粉煤灰的烧结的影响。通过将CaSO4在粉煤灰中的分解温度转移到更高的温度,可以防止在1150 0C烧结的粉煤灰样品膨胀,并用BaCO3改善了它们的物理力学性能(孔隙度,吸水率,堆积密度和弯曲强度)。由于X射线衍射(XRD)分析支持,从CaSO4(无水石膏)到BaSO4(重晶石)的相变。但是,在1100 0C烧结的粉煤灰样品上未观察到BaCO3的积极作用。由于在热分解金属硫酸盐过程中产生的气体,所有在1200 0C烧结的粉煤灰样品都膨胀了,并熔化了。

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