铝电解原理再探讨

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铝电解原理的离子置换理论不能解释电解液中的具体电磁过程及其运动状态。通过分析电解液中的电磁过程,我们发现磁场是电解生产的关键。任何电流都存在相应的磁场。在电解液中,直流电的能量是通过电解液的电磁场传导的。电解液的电流密度J包含了传导、磁化、极化、离子等不同电流的共同贡献。 熔融态电解液具有一定的导电性能,是因为它 The principle of ion replacement of aluminum electrolysis theory can not explain the specific electromagnetic process in the electrolyte and its state of motion. By analyzing the electromagnetic process in the electrolyte, we found that the magnetic field is the key to electrolytic production. There is a corresponding magnetic field for any current. In the electrolyte, the energy of the direct current is conducted through the electromagnetic field of the electrolyte. The current density J of the electrolyte contains the common contribution of different currents such as conduction, magnetization, polarization, and ionization. Molten state electrolyte has a certain conductivity, because it
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