Publication | Closed Access
Optimization of High Gradient Magnetic Separation Filter Units for the Purification of Fermentation Products
35
Citations
17
References
2014
Year
EngineeringMechanical EngineeringMagnetic ResonanceNew Filter MatrixChemical Engineering SeparationsFerrofluidMagnetismChemical EngineeringSeparation MatrixSelective SeparationBiochemical EngineeringMagnetohydrodynamicsWater TreatmentAnalytical ChemistrySeparation TechniquePurification MethodMicrofluidicsAdvanced SeparationBiophysicsChromatographyFermentation ProductsSeparation TechnologyMultiphase FlowMicro-magnetic ModelingBiomanufacturingBiotechnologySoftware Comsol MultiphysicsMedicineMultiscale Modeling
High gradient magnetic separation (HGMS) has been established since the early 1970s. A more recent application of these systems is the use in bioprocesses. To integrate the HGMS in a fermentation process, it is necessary to optimize the separation matrix with regard to the magnetic separation characteristics and permeability of the non-magnetizable components of the fermentation broth. As part of the work presented here, a combined fluidic and magnetic force finite element model simulation was created using the software COMSOL Multiphysics and compared with separation experiments. Finally, as optimal lattice orientation of the separation matrix, a transversal rhombohedral arrangement was defined. The high suitability of the new filter matrix has been verified by separation experiments.
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