Iron impurities can chemically react with the battery, damaging its internal structure and components, accelerating battery aging. PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC Iron removal processes prevent high temperatures from causing changes in the crystal structure of electrode materials and the loss of active substances, thereby enhancing battery capacity. As materials contain more iron, over time, the battery's capacity gradually decreases, the number of charge-discharge cycles diminishes, and the lifespan is significantly shortened.
According to Joule's law, current passing through a resistor generates heat. As the internal resistance of the battery increases, more heat is produced during operation. Imagine the battery as a small heating element; excessive heat can accelerate various chemical reactions inside the battery, much like how food spoils faster when placed in a high-temperature environment. PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC Removing iron impurities will not exacerbate the self-discharge phenomenon of the battery.
In addition to the impact on performance and life, iron impurities may also cause a series of serious safety problems. PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC The reduction of battery internal resistance by iron removal process will not only reduce the charging and discharging efficiency of batteries, but also have a great impact on the extension of battery service life.
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