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Mullitization kinetics from silica- and alumina-rich wastes

机译:富含二氧化硅和氧化铝的废料的成木动力学

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摘要

Mullite was produced from a mixture of raw wastes with high contents of silica and aluminium hydroxides. The first were wastes from slate rocks and had muscovite, chlorite and quartz as their main crystalline phases. The second were aluminium sludges resulting from the physico-chemical treatment of the wastewaters generated by aluminium surface treatment industries. As-received raw materials were weighed to produce the 2:1 alumina:silica stoichiometric mixture, corresponding to an excess of alumina relatively to the ideal 3:2 mullite composition. The non-isothermal activation energies for primary (431 kJ/mol) and secondary mullite crystallization (454 kJ/mol) were determined by differential dilatometry. Sintered products were composites of mullite and a-alumina dispersed in a glassy phase and presented flexural strengths higher than 100 MPa after sintering temperatures at 1285 deg C.
机译:莫来石是由具有高含量二氧化硅和氢氧化铝的原始废料的混合物制成的。第一种是板岩岩石产生的废物,其主要结晶相为白云母,绿泥石和石英。第二种是铝的污泥,是通过对铝表面处理行业产生的废水进行物理化学处理而产生的。称量所接收的原材料以产生2:1的氧化铝:二氧化硅化学计量的混合物,这对应于相对于理想的3:2莫来石组成的过量的氧化铝。通过微分膨胀法测定了一次(431kJ / mol)和二次莫来石结晶的非等温活化能(454kJ / mol)。烧结产品是莫来石和a-氧化铝的复合物,分散在玻璃态中,在1285摄氏度的温度下烧结后,弯曲强度高于100 MPa。

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