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Open-gradient Magnetic Separator With Racetrack Coils Suitable for Cleaning Aqueous Solutions

机译:带有赛马场线圈的开放式梯度磁选机,适用于清洗水溶液

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Superconductivity enables magnetic fields in a magnitude of 5–10 times greater than conventional electromagnets. Applied to magnetic separation, use of superconducting magnets opens the possibility to separate sub-micron sized paramagnetic particles. Open-gradient magnetic separation (OGMS) enables continuous operation without the need of matrix-elements. Such a separator consisting of liquid helium cryostat and an$ Nb_3 Sn$coils were designed and constructed for testing the separation of various slurries. The separation parameters, such as size and magnetic susceptibility of particles to be separated, applied magnetic force density, and flow velocity have to be experimentally optimized. In isodynamic separation, high gradient and nearly constant and homogenous magnetic force density distribution in separation zone are created by magnet design. Here the superconducting OGMS was used in purification of synthetically made solutions emulating industrial wastewaters. Performance of the used$ Nb_3 Sn$magnet is discussed and proposals for developing the performance of racetrack magnets are given. Finally, a simple permanent magnet separator was constructed and tested with wastewater.
机译:超导电性使磁场强度比传统电磁体大5-10倍。应用于磁分离时,超导磁体的使用为分离亚微米级顺磁性颗粒提供了可能性。开放梯度磁分离(OGMS)无需基质元素即可实现连续操作。设计并构造了由液氦低温恒温器和Nb_3 Sn $卷组成的这种分离器,用于测试各种浆料的分离。分离参数,例如要分离的颗粒的大小和磁化率,施加的磁力密度和流速必须通过实验进行优化。在等动力分离中,通过磁体设计可在分离区中产生高梯度以及几乎恒定且均匀的磁力密度分布。在这里,超导OGMS用于纯化模拟工业废水的合成溶液。讨论了用过的Nb_3 Sn $磁体的性能,并提出了开发跑道磁体性能的建议。最后,构建了一个简单的永磁分离器,并对其进行了废水测试。

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