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The Formation Mechanism of Low Leaching Glassy Slag during Plasma Arc Vitrification Treatment of Fly Ash

机译:粉煤灰等离子体弧玻璃化处理期间低浸出玻璃渣的形成机制

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In this paper, the glass formation theory is applied to study the formation mechanism of the low leaching glassy slag during the process of plasma waste treatment. The research shows that SiO_2 acts as network former to form a 3-dimensional Si-O tetrahedral network in which heavy metals are bonded or encapsulated, so the Si-O tetrahedron protect heavy metals against leaching from the vitrified slag or acid corrosion. For given chemical compositions of waste, the formation ability of the vitrified slag can be represented by the ratio of the whole oxygen ions to the whole network former ions in glass (O/Si) which is appropriate in the range of 2~3. A plasma arc reactor is used to conduct the vitrification experiments of two kinds of fly ashes with additives in which effects of various parameters including arc power, cooling speed, treatment temperature are studied. The chemical compositions of fly ashes are analyzed by X-ray fluorescence (XRF) spectrometry. The experimental results show that both cooling speed and O/Si have important influence on the formation of the vitrified slag, which is qualitatively in accordance with the predictions of the glass formation theory.
机译:本文采用玻璃形成理论研究等离子体废物处理过程中低浸出玻璃渣的形成机制。研究表明,SiO_2充当网络以形成三维Si-O四面体网络,其中重金属粘合或包封,因此Si-O四面体保护重金属免受玻璃化炉渣或酸腐蚀的浸出。对于给定的废物化学组成,玻璃化炉渣的形成能力可以通过整个氧离子与整个网络前离子的比例表示,该玻璃(O / Si)在2〜3的范围内。使用等离子体弧形反应器用于进行两种飞灰的玻璃化实验,其中添加了包括电弧电源,冷却速度,处理温度的各种参数的效果。通过X射线荧光(XRF)光谱法分析飞灰的化学成分。实验结果表明,冷却速度和O / Si均对玻璃化渣的形成具有重要影响,这根据玻璃形成理论的预测而定性。

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