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Effect of Magnetic Convection on Metal Substitution Reaction under Intense Magnetic Field

机译:强磁场下对流对金属取代反应的影响

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Metal substitution reaction between solid metal and ionic solution occurs according to ionization tendency. In these reactions, the micro MHD effect and magnetic convection can affect the reaction rate under imposition of an intense magnetic field. In this study, the effects of a magnetic field up to 5T and its gradient on the metal substitution reaction of copper(ll) sulfate solution with solid iron or solid zinc were investigated. Both the micro MHD effect and magnetic convection can affect the reaction rate. The micro MHD effect, which promotes the metal substitution reaction, appears more strongly for zinc than for iron, because the ionization tendency of zinc is higher than that of iron. Magnetic convection can promote or suppress the natural convection around the metal surface in the solution. For the system of solid iron in the solution, natural convection, which is induced by the buoyancy of iron-rich solution around the solid iron, is suppressed by downward magnetic convection, because iron ions are paramagnetic, and is promoted by upward magnetic convection. In contrast, zinc ions are diamagnetic, and the effect of magnetic convection around solid zinc is opposite the effect around solid iron.
机译:固体金属与离子溶液之间的金属取代反应根据电离趋势发生。在这些反应中,在强磁场作用下,微MHD效应和磁对流会影响反应速率。在这项研究中,研究了高达5T的磁场及其梯度对硫酸铜(II)溶液与固态铁或固态锌的金属取代反应的影响。微观MHD效应和磁对流都会影响反应速率。与锌相比,促进金属取代反应的微观MHD效应要强于铁,因为锌的电离趋势高于铁。磁对流可以促进或抑制溶液中金属表面周围的自然对流。对于溶液中的固体铁系统,由于铁离子是顺磁性的,所以由向下的磁性对流抑制了固体铁周围的富铁溶液的浮力引起的自然对流,因为铁离子是顺磁性的,并且由向上的磁性对流促进。相反,锌离子是反磁性的,固体锌周围的磁对流作用与固体铁周围的对流作用相反。

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