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首页> 外文期刊>ISIJ international >Abstracts of the papers published in Tetsu-to-Hagane Vol. 106 (2020), No. 3
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Abstracts of the papers published in Tetsu-to-Hagane Vol. 106 (2020), No. 3

机译:Tetsu-to-Hagane卷上发表的论文摘要。 106(2020),第3号

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摘要

The authors investigated the change in the interfacial tension with time for various combinations of molten slag and liquid Fe to elucidate the mechanism of the change in interfacial tension between liquid Fe alloy and molten slag over time accompanying reduction/oxidation reactions. The behavior of the change in the interfacial tension over time can be explained by the adsorption of oxygen at the interface and the diffusion of oxygen from the interface into the bulk of the liquid Fe and molten slag. In addition to that, we found that the interfacial tension decreases slowly and greatly from its initial value to a minimum point and then increases slowly to the final equilibrium state when molten silicate slag with low viscosity is brought into contact with liquid Fe without Al content and some of its SiO_2 decomposes and dissolves into the liquid Fe. From these results, we suggest that the detachment of oxygen adsorbed at the interface into the liquid Fe is very slow and may be the rate-limiting step.
机译:作者研究了熔渣和液态铁的各种组合的界面张力随时间的变化,以阐明伴随还原/氧化反应的液态铁合金与熔渣之间的界面张力随时间变化的机理。界面张力随时间变化的行为可以通过界面处氧气的吸附以及氧气从界面向液体铁和熔渣的大部分中的扩散来解释。除此之外,我们发现当低粘度的熔融硅酸盐炉渣与不含铝和铁的液态铁接触时,界面张力从其初始值到最小点会缓慢而缓慢地减小,然后缓慢地增加到最终的平衡状态。它的一些SiO_2分解并溶解在液态铁中。根据这些结果,我们认为在界面处吸附的氧向液体Fe的脱离非常缓慢,这可能是限速步骤。

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    《ISIJ international》 |2020年第3期|A5-A6|共2页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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