Thermal Oxidative Degradation of Pure Cu2S and Industrial White Metal

IF 2.1 3区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING
M. Vázquez Vázquez, M. J. Díaz Blanco, R. A. Parra Figueroa, E. R. Balladares Varela, O. Jerez Riveros, M. Cuevas Cerda, I. Moreno-Ventas Bravo
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Abstract

The kinetics of the thermal oxidation of white metal and Cu2S have been studied by thermogravimetric analysis (TG), which was carried out under atmospheric oxidative conditions (O2 100%) with heating rates of 5, 10, 15 and 20 °C min−1. Each experiment was performed three times, the indicated values being the average of the three experiments. The experimental data were evaluated using isoconversional models based on the Arrhenius equation. The models are constructed using first-order mechanisms in the reactions and therefore, since most of them present adequate regression coefficients, it can be verified that order 1 is the most predominant order among the reactions found. In addition, the Kissinger–Akahira–Sunose model, which has the highest regression coefficient, is considered to be the most optimal. Similar behavior was recorded between Cu2S and white metal, as well as a similar regular increase in the apparent activation energy (Ea) of 10–30 kJ mol−1 for both materials. The reactions that took place during the oxidation of white metal and Cu2S were determined using a computational model based on thermodynamics developed in this work. The identified phases include CuSO4, Cu2SO4, Cu2O, CuO, CuO·CuSO4.

Abstract Image

纯Cu2S和工业白色金属的热氧化降解
采用热重分析(TG)研究了白色金属和Cu2S在常压氧化条件下(O2 100%),升温速率分别为5、10、15和20℃min - 1时的热氧化动力学。每个实验进行三次,指示值为三次实验的平均值。采用基于Arrhenius方程的等转换模型对实验数据进行了评价。这些模型是在反应中使用一阶机制构建的,因此,由于大多数反应具有足够的回归系数,因此可以验证1阶是所发现的反应中最主要的阶。此外,回归系数最高的Kissinger-Akahira-Sunose模型被认为是最优的。在Cu2S和白色金属之间记录了相似的行为,并且两种材料的表观活化能(Ea)都有相似的规律增加,为10-30 kJ mol−1。在白色金属和Cu2S氧化过程中发生的反应是使用基于热力学的计算模型来确定的。确定的相有CuSO4、Cu2SO4、Cu2O、CuO、CuO·CuSO4。
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来源期刊
Oxidation of Metals
Oxidation of Metals 工程技术-冶金工程
CiteScore
5.10
自引率
9.10%
发文量
47
审稿时长
2.2 months
期刊介绍: Oxidation of Metals is the premier source for the rapid dissemination of current research on all aspects of the science of gas-solid reactions at temperatures greater than about 400˚C, with primary focus on the high-temperature corrosion of bulk and coated systems. This authoritative bi-monthly publishes original scientific papers on kinetics, mechanisms, studies of scales from structural and morphological viewpoints, transport properties in scales, phase-boundary reactions, and much more. Articles may discuss both theoretical and experimental work related to gas-solid reactions at the surface or near-surface of a material exposed to elevated temperatures, including reactions with oxygen, nitrogen, sulfur, carbon and halogens. In addition, Oxidation of Metals publishes the results of frontier research concerned with deposit-induced attack. Review papers and short technical notes are encouraged.
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