首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of elemental iron on the carbothermic reduction of the anatase and rutile forms of titanium dioxide
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Effect of elemental iron on the carbothermic reduction of the anatase and rutile forms of titanium dioxide

机译:元素铁对锐钛矿和金红石型二氧化钛的碳热还原的影响

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Effect of iron on the carbothermic reduction of anatase and rutile forms of titanium dioxide was studied. Differential thermogravimetric analysis indicated a significantly different reduction route in the presence of iron with a number of clear minima in the rate of mass loss observed. X-ray diffraction of the products at these minima indicated that rutile initially formed FeTiO_3 which reduced to gamma-Ti_3O_5, whilst anatase reduced through the mixed Ti(HI/TV) phases of general formula Ti_nO_(2n-1) to D-Ti_3O_5. The final stage was the reduction of Ti_3O_5 to the sub-stoichiometric carbide, TiC_(0.5). Iron was found to stabilise the Ti_3O_5 phases which were absent from an iron-free system, this is presumed to be due to partial substitution of trivalent iron for trivalent titanium.
机译:研究了铁对锐钛矿的碳热还原和金红石型二氧化钛的影响。差示热重分析表明,在存在铁的情况下,还原途径有明显不同,观察到的质量损失率明显较低。产物在这些最小值的X射线衍射表明,金红石最初形成FeTiO_3,其还原为γ-Ti_3O_5,而锐钛矿通过通式Ti_nO_(2n-1)的混合Ti(HI / TV)相还原为D-Ti_3O_5。最后阶段是将Ti_3O_5还原为亚化学计量的碳化物TiC_(0.5)。发现铁稳定了无铁系统中不存在的Ti_3O_5相,这被认为是由于三价铁被三价钛部分取代所致。

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