We can chemanalyze the iron content in graphite samples before and after iron removal, use atomic absorption spectroscopy or chemical titration to determine the iron content, and then calculate the removal rate of PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC iron impurities. High purity graphite can improve the performance of the battery, battery charge and discharge efficiency, cycle life, etc.
A certain amount of raw graphite sample was taken, and after accurate weighing, the iron content was determined by appropriate chemical analysis method. The iron content was measured again in the graphite sample treated by PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC iron removal equipment, and the iron impurity removal rate was calculated by using the formula.
PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC The magnetic field strength, the uniformity of magnetic field distribution, and the structural design inside the equipment (whether it is conducive to the full contact and separation of graphite and iron impurities) will all affect the removal rate of iron impurities. If the magnetic field is insufficient, iron impurities may not be fully absorbed; uneven magnetic field distribution may lead to incomplete iron removal in some areas.
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