Deflection of a ferromagnetic fiber in a Helmholtz coil
Institut für Mechanische Verfahrenstechnik und Mechanik
Karlsruher Institut für Technologie (KIT)
Geb. 30.70
Straße am Forum 8
D-76131 Karlsruhe
Magnetic effects in gas-particle separation technology
Filtering separators are used to separate solid or liquid particles from the gas phase as much as possible. Depending on their design, mode of operation and area of application, filtering separators are mainly divided into depth filters and surface filters. While depth filters are generally not regenerated, surface filters are usually regenerated by flow reversal (pressure surge) or backwashing, and in special cases also by mechanical shaking or rapping.
For applications that allow only a small pressure drop and no flow reversal, "magnetic" cleaning would be conceivable. A filter consisting of magnetizable filter fibers, which act as collectors for non-magnetic particles, could be set in motion by applying a magnetic field and thus, throw off the attached particles. Magnetic filters and filter systems are already used in solid-liquid separation in many industrial applications, for example in the purification of hydraulic oils, slurries and liquid pharmaceutical products. In most applications, ferromagnetic particles are separated from a liquid phase. Regarding the "magnetic" separation of inert particles from a gas phase, no fundamental investigations are known yet. Therefore, the aim of this research project is to establish a foundation for "magnetic" separation in gas-particle separation technology. Based on experiments on a magnetizable single fiber or a fiber array, particle detachment processes of the fibers will be investigated. In this connection, the magnetic influence of the fibers as well as the inertial and adhesive forces of the particles on the fibers play a decisive role.
Title | Type | Time |
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Untersuchungen zur Bildung unterschiedlicher Partikelstrukturen an einer ferromagnetischen Einzelfaser | Bachelor or Master Thesis | upon agreement |
Untersuchung der Faserbewegung durch magnetische Influenz mittels optischer Bildauswertung | Bachelor or Master Thesis | upon agreement |
Title | Authors | Source |
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Simultaneous measurement of spatially resolved particle emissions in a pilot plant scale baghouse filter applying distributed low-cost particulate matter sensors | P. Bächler, J. Szabadi, J. Meyer, A. Dittler |
Journal of Aerosol Science, 2020, 150, 105644, https://doi.org/10.1016/j.jaerosci.2020.105644 (open access) |
Impact of residential real-world wood stove operation on air quality concerning PM2.5 immission | J.R.D. Thieringer, J. Szabadi, J. Meyer, A. Dittler |
Processes 2022, 10, 545, https://doi.org/10.3390/pr10030545 (open access) |
Simultaneous temporal, spatial and size-resolved measurements of aerosol particles in closed indoor environments applying mobile filters in various use-cases | J. Szabadi, J. Meyer, M. Lehmann, A. Dittler |
Journal of Aerosol Science, 2022, 160, 105906, https://doi.org/10.1016/j.jaerosci.2021.105906 |