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Studying Hydrotalcite-Like Compounds Isomorphically Substituted with Iron and Cobalt via Inverse Temperature-Programmed Reduction

机译:研究通过逆温度减小使用铁和钴成像异构异常地取代的水滑石状化合物

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摘要

The reducibility of multicomponent layered double hydrotalcite-like hydroxides containing Mg~(2+), Co~(2+), Al~(3+), and Fe~(3+) at different ratios of these metal cations and products of their thermal destruction in a hydrogen flow is studied via inverse temperature-programmed reduction (bTPD). It is shown that the temperature- programmed reduction profiles for layered double hydroxides (LDHs) contain signals corresponding not only to the reduction of iron and cobalt cations incorporated into the structure of brucite-like layers, but also ones corresponding to the reduction of cobalt and iron from the mixed oxides or spinel-like phases that appear due to the thermal destruction of LDHs occurring simultaneously with a reduction in iTPR measurements. Signals presumably corresponding to the reduction of residual nitrate anions are also revealed in iTPR profiles.
机译:含有Mg〜(2+),Co〜(2+),Al〜(3+)和Fe〜(3+)的多组分分层双水滑石样氢氧氧化物的可改性在这些金属阳离子和产品的不同比例下 通过逆温度编程(BTPD)研究了氢气流中的热破坏。 结果表明,用于层状双氢氧化物(LDHS)的温度 - 编程的减析曲线含有对应于铁和钴阳离子的不仅掺入布鲁其铁石层的结构的信号,而且还对应于钴和钴的还原的信号 来自混合氧化物或尖晶石状相的铁,其由于LDH的热破坏而出现,其同时发生ITPR测量。 可能对应于残留硝酸盐阴离子的降低的信号也在ITPR型材中揭示。

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