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Solid-solid interactions in Fe2O3/MgO system doped with aluminium and zinc oxides

机译:铝和氧化锌掺杂的Fe2O3 / MgO系统中的固-固相互作用

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摘要

The solid-solid interactions between MgO and Fe2O3 in the presence and absence of small amounts of Al2O3 and ZnO (2 and 6 mol%) have been investigated using DTA and XRD techniques. Equimolar proportions of magnesium basic carbonate and alpha-Fe2O3 were employed and aluminium and zinc were added as aluminium and zinc nitrates. Pure and doped mixed solids were subjected to heat treatment at 500-1100 degreesC. The results obtained revealed that the addition of small amounts of dopant nitrates to the reacting mixed solids much enhanced the thermal decomposition of magnesium carbonate to an extent proportional to their amounts added. The decomposition temperature of magnesium carbonate decreased from 520.6 to 382.8 and 375.7 degreesC in the presence of 12 mol% aluminium nitrate and 6 mol% zinc nitrate, respectively. MgO underwent solid-solid interaction with Fe2O3 at temperatures starting from 700degreesC producing MgFe2O4. The degree of propagation of this reaction increases progressively by increasing the precalcination temperature and the amounts of dopant added. The heating of pure and dopedmixed solids at 1100degreesC for 6 h was not sufficient to effect the complete conversion of the reacting solids into MgFe2O4. However, the amounts of unreacted oxides much decreased as a function of the amount of ZnO or Al2O3 added. The stimulation effect of ZnO, and Al2O3 towards the thermal decomposition of magnesium carbonate and the ferrite formation was attributed to an effective increase in the mobility of the various reacting cations. The activation energy of formation (DeltaE(a)) of magnesium ferrite was determined for pure and different doped solids and the values obtained were 114, 78, 62, 91 and 76 kJ mol(-1) for pure mixed solids and those doped with 2 and 6 mol% ZnO and 2 and 6 mol% Al2O3, respectively. (C) 2003 Published by Elsevier B.V. [References: 30]
机译:使用DTA和XRD技术研究了在存在和不存在少量Al2O3和ZnO(2和6 mol%)的情况下MgO和Fe2O3之间的固-固相互作用。使用等摩尔比例的碱性碳酸镁和α-Fe2 O 3,并添加铝和锌作为铝和硝酸锌。将纯净的和掺杂的混合固体在500-1100℃下进行热处理。获得的结果表明,向反应的混合固体中添加少量的硝酸盐掺杂剂大大增强了碳酸镁的热分解,其程度与它们的添加量成比例。在存在12摩尔%的硝酸铝和6摩尔%的硝酸锌的情况下,碳酸镁的分解温度分别从520.6降低到382.8和375.7℃。从700℃开始,MgO与Fe2O3发生固-固相互作用,生成MgFe2O4。通过增加预煅烧温度和添加的掺杂剂量,该反应的传播程度逐渐增加。将纯净的和掺杂的混合固体在1100℃下加热6小时不足以使反应的固体完全转化为MgFe2O4。然而,未反应的氧化物的量随着所添加的ZnO或Al 2 O 3的量而大大减少。 ZnO和Al2O3对碳酸镁热分解和铁素体形成的刺激作用归因于各种反应阳离子迁移率的有效提高。确定了纯铁素体和不同掺杂固体的形成铁素体镁的活化能(DeltaE(a)),纯混合固体和掺杂了铁氧体的固体获得的值为114、78、62、91和76 kJ mol(-1)。分别为2和6 mol%的ZnO和2和6 mol%的Al2O3。 (C)2003年由Elsevier B.V.出版[参考:30]

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