Mineral Separation Method - Magnetic Separation

The magnetic separation method is a method of separating minerals according to the magnetic strength of minerals.

A magnetic separation

Magnetic separation is the most common method of mineral separation. The purpose of magnetic separation is to separate the ferromagnetic minerals from the sample. Ferromagnetic minerals are low, only the magnetic iron ore, pyrrhotite, titanium magnetite, ferrites, iron and platinum mines, copper mines yellow square, maghemite (Fe203 a gamma]) and the like. The most commonly used tools for magnetic separation are permanent magnets and magnetic separators.

B Automatic Magnetic Separator

Automatic magnetic separation equipment is the most commonly used separation instrument for mineral separation. Pure minerals can be separated by adjusting the horizontal inclination and side inclination of the instrument and then adjusting the magnetic field strength according to the mineral susceptibility. The magnetic field strength of the instrument is high (maximum magnetic field strength is 1. 5-2.5T). It is easy to adjust and can be continuously adjusted. The horizontal inclination and side inclination of the instrument can be adjusted at will according to the separation effect of minerals. The separation process can be carried out automatically. well.

C Electromagnetic liquid separator

Electromagnetic liquid separation is the use of a paramagnetic liquid (separation medium) under the action of a non-uniform external magnetic field, which can produce a special physical phenomenon - aggravation, and the minerals are similarly re-selected by adjusting the degree of weighting of the medium. The form is separated by the difference in density and magnetization coefficient.

The whole process of electromagnetic liquid separation works by separating the medium. The physical and chemical properties of the separation medium greatly affect the separation effect of the separation instrument. Therefore, it is important to choose a medium. The requirements for the separation medium are: high magnetic susceptibility, light color transparency, low viscosity, stable chemical properties, non-toxicity, low price, and sufficient source. The paramagnetic liquid is generally preferably an aqueous solution of Mn(N03)2-6H20 and MnCl2 · 4H20.

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