PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC The functional group is like an outstretched hand, accurately capturing the iron ions, so that it can no longer walk freely in the solution, so as to realize the adsorption and separation of the iron ions. Moreover, for some oxidized reagents, such as oxidants, they also play a key role in iron removal. Divalent ferric ions can be oxidized to trivalent ferric ions, thus changing their chemical properties.
Divalent iron ions are relatively active, while ferric ions are more stable and more different from lithium ions. This oxidation process is like wearing a different "coat" on the iron ion, making it easier to be identified and separated, and more conducive to the subsequent PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC iron removal operation.
In short, the chemical principle of lithium ion iron removal is a process full of wisdom and strategy. Through in-depth study of the chemical properties and reaction rules of substances, we have carefully designed a variety of effective PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC iron removal methods, which has laid a solid foundation for the performance improvement and wide application of lithium ion batteries.
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