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首页> 外文期刊>Journal of Thermal Analysis and Calorimetry >Use of emanation thermal analysis to characterize thermal reactivity of brannerite mineral
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Use of emanation thermal analysis to characterize thermal reactivity of brannerite mineral

机译:使用发射热分析表征褐铁矿矿物的热反应性

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Emanation thermal analysis (ETA) was used to characterize the thermal reactivity of amorphous brannerite mineral of general formula U1–xTi2+xO6 (locality El Cabril, near Cordoba, Spain). It was demonstrated that on sample heating up to 880°C microstructure changes taking place in the sample were accompanied by the formation of new radon diffusion paths, followed by their closing up during the final transformation of amorphous to crystalline brannerite in the range 900–1020 °C. Relative changes in structure irregularities that served as radon diffusion paths during heating and subsequent cooling of the sample to temperatures of 300, 550, 750, 880, 1020 and 1130°C, respectively, were determined from the ETA results. Mass losses in temperature ranges of 230–315, 570–760 and 840–1040°C were observed by thermogravimetry. Mass spectrometry indicated the release of CO2 mainly due to the decomposition of minor carbon amount in the brannerite mineral sample.
机译:发射热分析(ETA)用于表征通式为U1–x Ti2 + x O6 的无定形brannerite矿物(西班牙卡多巴附近的El Cabril)的热反应性。结果表明,在样品加热到880°C时,样品中的微观结构发生变化,同时形成了新的ra扩散路径,随后它们在900-1020范围内的无定形向晶状褐铁矿的最终转变过程中被封闭。 ℃。由ETA结果确定了分别在加热和随后将样品冷却至300、550、750、880、1020和1130°C的温度期间充当ra扩散路径的结构不规则性的相对变化。通过热重法观察到在230–315、570–760和840–1040°C温度范围内的质量损失。质谱表明CO 2的释放主要是由于褐煤矿物样品中少量碳的分解。

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