首页> 外文OA文献 >Reduction of metal oxides by carbon in graphite furnaces. Part 2. Temporal oscillations in atomic absorption during the process of slow evaporation of Al, Mn and Yb oxides in spatially isothermal and non-isothermal graphite atomizers
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Reduction of metal oxides by carbon in graphite furnaces. Part 2. Temporal oscillations in atomic absorption during the process of slow evaporation of Al, Mn and Yb oxides in spatially isothermal and non-isothermal graphite atomizers

机译:在石墨炉中用碳还原金属氧化物。第2部分。在空间等温和非等温石墨雾化器中缓慢蒸发Al,Mn和Yb氧化物的过程中原子吸收的时间振荡

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摘要

Temporal oscillations in the kinetics of carbothermal reduction of Al, Mn and Yb oxides in spatially isothermal side-heated tubes were investigated in the first part of this study. Microgram amounts of the elements, as their nitrates, were evaporated during slow heating (1\u201320 K s\u22121) of the graphite tube. Several features of this phenomenon were investigated, including the effects of sample mass and solution volume, the influence of Sr and the type (Ar and N2) and flow rate (0\u2013250 ml min\u22121) of sheath gas on the character of the atomic absorption spikes. Essentially, all effects were similar to those found with spatially non-isothermal tubes. Results of possible effects of condensation/re-evaporation processes on temporal oscillations of atomic absorption signals from Al and Yb oxides in spatially non-isothermal tubes are presented in the second part of this study. No influence of transport processes on the temporal oscillations during common conditions of sampling and heating was evident. The results suggest that the origin of the temporal oscillations lies with the primary sample residue. All the above support the gaseous carbide mechanism of formation of temporal oscillations in the atomic absorption signals.
机译:在本研究的第一部分中,研究了在空间等温侧热管中碳热还原Al,Mn和Yb氧化物的碳热还原动力学中的时间振荡。在石墨管的缓慢加热期间(1 \ u201320 K s \ u22121),蒸发了微克量的元素(作为其硝酸盐)。研究了该现象的几个特征,包括样品质量和溶液体积的影响,Sr和鞘气类型(Ar和N2)以及流速(0 \ u2013250 ml min \ u22121)的影响。原子吸收峰值。从本质上讲,所有效果都类似于在空间非等温管中发现的效果。在本研究的第二部分中介绍了冷凝/再蒸发过程对空间非等温管中Al和Yb氧化物的原子吸收信号的时间振荡可能产生的影响的结果。在通常的采样和加热条件下,运输过程对时间振荡没有影响是显而易见的。结果表明,时间振荡的起源在于原始样品残留。以上所有都支持了在原子吸收信号中形成时间振荡的气态碳化物机理。

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