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Physical-mechanical and environmental properties of sintered municipal incinerator fly ash

机译:烧结市政焚烧粉煤灰的物理机械和环境性能

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摘要

A step-wise treatment of Municipal Solid Waste (MSW) incinerator fly ash including washing, milling and sintering was investigated in order to manufacture ceramic materials with improved physical, mechanical and environmental properties and, possibly, to reduce the power input of the sintering process. An interpretation of the test results based on the microstructure of sintered products and sintering kinetic modeling was also attempted to identify the densification mechanisms. It was found that milling of washed fly ash represents a basic step for manufacturing high-density ceramic materials with very high compressive strengths (up to 500N/mm~2). A significant reduction in the power input of the sintering process (reduction of firing temperature from 1210 deg C for washed fly ash to 1140 deg C for milled-washed fly ash) is also achieved. A dense, well-sintered microstructure is formed through an intermediate-stage, liquid-phase sintering mechanism controlled by liquid-phase diffusion and grain shape accommodation. Such a microstructure is able to strongly immobilise heavy metals, thus giving good environmental properties to sintered product.
机译:为了制造具有改善的物理,机械和环境性能的陶瓷材料,并可能减少烧结过程的功率输入,研究了包括洗涤,研磨和烧结在内的城市垃圾焚化炉粉煤灰的分步处理方法。 。还尝试根据烧结产品的微观结构和烧结动力学模型对测试结果进行解释,以确定致密化机理。已经发现,洗过的粉煤灰的研磨是制造具有非常高的抗压强度(高达500N / mm〜2)的高密度陶瓷材料的基本步骤。烧结过程的功率输入也大大降低了(烧成温度从洗过的粉煤灰的1210摄氏度降低到碾磨过的洗过的粉煤灰的1140摄氏度)。通过由液相扩散和晶粒形状调节控制的中间阶段液相烧结机制,形成致密,烧结良好的微观结构。这种微结构能够牢固地固定重金属,从而为烧结产品提供良好的环境性能。

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