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Soret coefficient of nanoparticles in ferrofluids in the presence of a magnetic field

机译:磁场作用下铁磁流体中纳米颗粒的Soret系数

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Experiments on a nonstationary separation of nanometer-sized Mn0.5Zn0.5Fe2O particles of hydrocarbon-based ferrocolloids in a flat vertical thermal diffusion column are performed. By using a modified separation theory which accounts for a one-dimensional mixed (thermal and concentration) convection in the column, the Soret coefficient of lyophilized nanoparticles from the separation curves are calculated. It is shown that in a zero magnetic field particles are transferring toward decreasing temperatures. The thermal diffusion ratio a,reaches a value alpha(T)approximate to+20. A significant influence of a uniform magnetic field B on particle separation is observed. If B is oriented along the temperature gradient del T, a strong decrease in thermal diffusion coefficient takes place whereas the transversal field B perpendicular to del T causes an intensification of particle thermophoretic transfer. Both effects qualitatively well agree with theoretical predictions based on a hydrodynamic theory of particle thermomagnetophoretic motion. (C) 1998 American Institute of Physics. [References: 22]
机译:在平坦的垂直热扩散柱中进行了基于烃的铁胶体的纳米尺寸Mn0.5Zn0.5Fe2O颗粒的非平稳分离实验。通过使用修正的分离理论,该理论考虑了色谱柱中的一维混合(热和浓度)对流,根据分离曲线计算了冻干纳米颗粒的Soret系数。结果表明,在零磁场中,粒子向着降低的温度方向转移。热扩散率a,达到大约+20的值α(T)。观察到均匀磁场B对颗粒分离的重大影响。如果B沿着温度梯度del T取向,则热扩散系数会大大降低,而垂直于del T的横向场B会引起粒子热泳转移的加剧。这两种效应在质量上都与基于粒子热磁自发运动的流体力学理论的理论预测吻合。 (C)1998美国物理研究所。 [参考:22]

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