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Recycling of harmful waste lead-zinc mine tailings and fly ash for preparation of inorganic porous ceramics

机译:对有害废物铅锌矿尾矿和粉煤灰的回收用于制备无机多孔陶瓷

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摘要

The porous ceramics were prepared by directly sintering of lead-zinc mine tailings and fly ash as the raw materials without any additional sintering and foaming agent. The effects of fly ash addition on the crystalline phases, pore structure, physical chemical porosities and mechanical strength were investigated. The results showed that the bulk density decreased firstly and then increased while the porosity and water absorption presented the opposite tendency with the increase of fly ash content. Meanwhile, the chemical stability improved and the flexural strength had the same variation tendency of the bulk density. The phase evolution of sample with 60 wt% fly ash addition indicated that anorthite phase was formed at low temperature (1000 degrees C). The thermal behavior illustrated that the foaming process was initiated by the reaction of internal constituents in the lead-zinc mine tailings. Different pore structures indicated different foaming mechanisms that probably occurred at different temperatures. The porous ceramics with 60 wt% fly ash addition exhibited excellent properties, including bulk density of 0.93 g/cm(3), porosity of 65.6%, and flexural strength of 11.9 MPa.
机译:通过直接烧结铅锌矿尾矿和粉煤灰作为原材料制备多孔陶瓷,没有任何额外的烧结和发泡剂。研究了粉煤灰对晶体相,孔隙结构,物理化学孔隙和机械强度的影响。结果表明,堆积密度首先下降,然后增加,而孔隙率和吸水率呈现出与粉煤灰含量的增加相反的趋势。同时,化学稳定性改善,弯曲强度具有相同的堆积密度的变化趋势。具有60wt%飞灰的样品的相位演化表明,在低温(1000℃)下形成钙高相。热行为所示的热行为通过铅锌矿尾矿中的内部成分反应引发了发泡过程。不同的孔结构表示可能发生在不同温度下的不同发泡机制。具有60wt%飞灰的多孔陶瓷具有优异的性能,包括0.93g / cm(3)的堆积密度,孔隙率为65.6%,弯曲强度为11.9mPa。

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