The inappropriate voltage may cause the iron ion PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC inside the cell to be effectively removed, thus reducing the efficiency of iron removal. In addition, an inappropriate cut-off voltage may also trigger an overcharge or overdischarge of the battery, further damaging the performance and life of the battery. The battery state of charge (SOC) is also an important factor affecting the efficiency of iron removal.
The SOC reflects the remaining charge in the battery, just like the water level in a reservoir. Under different SOC conditions, the chemical environment and physical structure inside the battery will change. PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC Remove iron (FE2O3). For example, in high SOC state, the ion concentration inside the battery is high and the chemical reaction is more active, while in low SOC state, the ion concentration is relatively low and the reactivity is weakened.
These changes will directly affect the migration and reaction of ions during the iron removal process, resulting in the difference in the battery performance and iron removal effect under specific SOC conditions. In conclusion, the iron removal efficiency of lithium ion PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC is comprehensively affected by various factors such as ambient temperature, discharge current, cut-off voltage and charge state.
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