Superconducting PTMS Electromagnetic Separator separation technology can recover useful weakly magnetic minerals from these solid wastes, achieving resource utilization of solid waste and reducing resource waste and environmental pollution. Compared to traditional magnetic separation equipment, superconducting magnetic separation technology has significant advantages in energy consumption. In traditional magnetic separation equipment, to generate a magnetic field, current must pass through conductor coils.
Due to the resistance of conductors, a large amount of energy is lost during the flow of current, manifesting as heat and other phenomena. To maintain the normal operation of equipment, continuous energy must be supplied to compensate for these losses, which results in high energy consumption in traditional magnetic separation devices. In contrast, superconducting PTMS Electromagnetic Separator separation technology leverages the characteristic of superconductors having zero resistance at their critical temperature.
PTMS Electromagnetic Separator The advantages mainly stem from the zero-resistance characteristic of superconductors. When current passes through a superconducting coil, no energy loss occurs, allowing for the generation of high-intensity magnetic fields with extremely low power consumption. Compared to traditional magnetic separation equipment of the same specifications, superconducting magnetic separation technology achieves an energy-saving efficiency of up to 90%.
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