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磁场协同作用改善阴极铜质量的机理探讨与验证 被引量:5
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作者 姚夏妍 王军辉 +3 位作者 余江鸿 鲁兴武 李彦龙 焦晓斌 《中国有色冶金》 CAS 2019年第3期14-18,共5页
阴极铜表面质量问题已成为行业难题,影响阴极铜表面质量的因素包括粗铜含镍量、电解液的含铜量、添加剂、温度等,多位专家对上述影响因素进行了研究分析,认为铜电解的最佳工艺参数难以确定,而通过增强电解液活性,降低反应所需的活化能... 阴极铜表面质量问题已成为行业难题,影响阴极铜表面质量的因素包括粗铜含镍量、电解液的含铜量、添加剂、温度等,多位专家对上述影响因素进行了研究分析,认为铜电解的最佳工艺参数难以确定,而通过增强电解液活性,降低反应所需的活化能是解决阴极铜长粒子问题最有效的方法。基于此,笔者提出利用磁场协同效应强化铜电解的工艺以改善阴极铜的质量,即通过在原铜电解循环系统上添加可调永磁体等设施,使电解液在恰当的电解工艺参数下进行铜电解。通过实地考察某铜业公司的现场生产,并进行实验验证,得出以下结论:恰当的磁处理条件可以降低电解液黏度,加快阳极泥的沉降速度,加强Cu2+的扩散;磁化效应可抑制As、Sb、Bi等杂质离子的析出,预浓缩杂质离子,提高电解液的清晰度;磁处理可细化晶粒,改善阴极铜的表面质量。 展开更多
关键词 铜电解 阴极铜表面质量 磁场协同作用 黏度 杂质离子 晶粒细化
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High-efficiency magnetophoretic separation based on synergy of magnetic force field and flow field in microchannels 被引量:1
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作者 WU XinYu WU HuiYing HU DingHua 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第12期3311-3319,共9页
Magnetophoresis is one of the most important separation methods in biological and chemical engineering. In this paper,a novel impact parameter on separation efficiency,i.e.,the angle between the vectors of magnetic fo... Magnetophoresis is one of the most important separation methods in biological and chemical engineering. In this paper,a novel impact parameter on separation efficiency,i.e.,the angle between the vectors of magnetic force and fluid velocity,was derived from the basic equation describing the motion of magnetic beads in microchannels. It is proposed that one of the most important approaches for separation efficiency enhancement is to improve the coordination of magnetic force field and fluid flow field. A T-shaped microchannel magnetophoretic separator was designed based on the angle. And then a two-dimensional dynamic model of magnetic beads moving in microchannels was established to study the separation efficiency of T-shaped microseparator by combined use of finite element method and Runge-Kutta method. The results show that the capture effi-ciency of T-shaped microseparator is much higher than that of the straight microseparator at the same conditions. For small magnetic beads at high fluid velocities,the designed T-shaped microseparator could still keep high separation efficiency whereas the conventional straight microseparator fails to separate the magnetic beads. Further analysis shows that the mechanism of separation efficiency enhancement lies in the synergy of magnetic force field and flow field,which directly leads to large deflected velocity of the magnetic beads from the main stream,and thus increasing the separation efficiency. It is anticipated that the results in this paper are theoretically helpful for the optimum design of highly efficient magnetophoretic separators. 展开更多
关键词 magnetophoretic separation T-shaped microchannel field synergy separation efficiency
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