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Inertially focused diamagnetic particle separation in ferrofluids

机译:铁磁流体中惯性聚焦的反磁性粒子分离

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摘要

Continuous flow separation of target particles from a mixture is essential to many chemical and biomedical applications. There has recently been an increasing interest in the integration of active and passive particle separation techniques for enhanced sensitivity and flexibility. We demonstrate herein the proof-of-concept of a ferrofluid-based hybrid microfluidic technique that combines passive inertial focusing with active magnetic deflection to separate diamagnetic particles by size. The two operations take place in series in a continuous flow through a straight rectangular microchannel with a nearby permanent magnet. We also develop a three-dimensional numerical model to simulate the transport of diamagnetic particles during their inertial focusing and magnetic separation processes in the entire microchannel. The predicted particle trajectories are found to be approximately consistent with the experimental observations at different ferrofluid flow rates and ferrofluid concentrations.
机译:从混合物中连续分离目标颗粒对于许多化学和生物医学应用都是必不可少的。最近,人们越来越关注主动和被动颗粒分离技术的集成,以提高灵敏度和灵活性。我们在本文中演示了基于铁磁流体的混合微流体技术的概念验证,该技术结合了被动惯性聚焦与主动磁偏转以按尺寸分离抗磁粒子。这两个操作连续地通过具有附近永磁体的直矩形微通道连续进行。我们还开发了三维数值模型,以模拟反磁性粒子在整个微通道中的惯性聚焦和磁分离过程中的传输。发现在不同的铁磁流体流速和铁磁流体浓度下,预测的粒子轨迹与实验观察结果大致一致。

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