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Influence of Bottom Bubbling Rate on Formation of Metal Emulsion in Al-Cu Alloy and Molten Salt System

机译:底部起泡速率对铝铜合金和熔盐体系中金属乳化液形成的影响

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摘要

In steel refining process, an increase of interfacial area between the metal and slag through the metal droplets emulsified into the slag, so-called "metal emulsion", is one prevailing view for improving the reaction rate. The formation of metal emulsion was experimentally evaluated using Al-Cu alloy as metal phase and chloride salt as slag phase under the bottom bubbling condition. Samples were collected from the center of the salt phase in the container. Large number of metal droplets were separated from the salt by dissolving it into water. The number, surface area, and weight of the droplets increased with the gas flow rate and have local maximum values. The formation and sedimentation rates of metal droplets were estimated using a mathematical model. The formation rate increased with the gas flow rate and has a local maximum value as a function of gas flow rate, while the sedimentation rate is independent of the gas flow rate under the bottom bubbling condition. Three types of formation mode of metal emulsion, which occurred by the rupture of metal film around the bubble, were observed using high speed camera. During the process, an elongated column covered with metal film was observed with the increasing gas flow rate. This elongated column sometimes reached to the top surface of the salt phase. In this case, it is considered that fine droplets were not formed and in consequence, the weight of metal emulsion decreased at higher gas flow rate.
机译:在钢的精炼过程中,通过乳化成炉渣的金属滴,即所谓的“金属乳剂”,金属与炉渣之间的界面面积的增加是一种提高反应速度的主要观点。在底部鼓泡条件下,以铝铜合金为金属相,氯化物盐为渣相,通过实验评估了金属乳液的形成。从容器中盐相的中心收集样品。通过将其溶解在水中,可以将大量的金属液滴从盐中分离出来。液滴的数量,表面积和重量随气体流速的增加而增加,并具有局部最大值。使用数学模型估算金属滴的形成和沉积速率。形成速率随气体流速而增加,并且具有作为气体流速的函数的局部最大值,而在底部鼓泡条件下,沉降速率与气体流速无关。使用高速相机观察到由气泡周围的金属膜破裂引起的三种类型的金属乳液形成模式。在此过程中,随着气体流速的增加,观察到了覆盖有金属膜的细长柱。该细长的柱有时到达盐相的顶表面。在这种情况下,认为没有形成细滴,因此,在较高的气体流速下,金属乳液的重量降低。

著录项

  • 来源
    《ISIJ international》 |2012年第6期|p.1018-1025|共8页
  • 作者单位

    Graduate School of Engineering, Tohoku University, 6-6 Aoba, Aramaki, Aoba-ku, Sendai, 980-8579 Japan;

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University,2-1-1 Katahira, Aoba-ku, Sendai, 980-8577 Japan;

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University,2-1-1 Katahira, Aoba-ku, Sendai, 980-8577 Japan,Department of Materials Engineering, Indian Institute of Science,Bangalore, 560012 India;

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University,2-1-1 Katahira, Aoba-ku, Sendai, 980-8577 Japan;

    Institute of Multidisciplinary Research for Advanced Materials, Tohoku University,2-1-1 Katahira, Aoba-ku, Sendai, 980-8577 Japan;

    Nippon Steel Corporation, 20-1 Shintomi, Futtsu, Chiba, 293-8511 Japan;

    Nippon Steel Corporation, 20-1 Shintomi, Futtsu, Chiba, 293-8511 Japan;

    Nippon Steel Corporation, 20-1 Shintomi, Futtsu, Chiba, 293-8511 Japan;

  • 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
  • 中图分类
  • 关键词

    metal emulsion; interfacial area; steelmaking; formation rate; sedimentation rate; formation mechanism of metal droplet;

    机译:金属乳液界面面积炼钢形成率沉降速度金属液滴的形成机理;
  • 入库时间 2022-08-18 00:01:33

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