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It's a mistake, it's an anode.
Cell electrode discharge sequence.
Cathode (where the reduction reaction occurs): cation.
Discharge, the electronic ability is strong and the discharge is the first.
ag+>hg2+>fe3+>cu2+>h+>pb2+>sn2+>fe2+>zn2+> h+(h2o)>al3+>mg2+>na+>ca+>k+
Anode (Oxidation reaction occurs.)
Anion. Discharge or electrode discharge, discharge first with strong electron loss ability.
If the anode is an active metal (Metal Activity Sequence Table.
ag), the anions in the solution are not discharged, but the electrode material loses electrons. If the anode is inert (PT, Au, graphite), the discharge sequence is as follows:
Cu S - i br Cl oh oxynate ions.
If it helps, thank you, please ask if you don't understand.
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When the electrode material of the anode is an inert substance (such as Au, PT or graphite), the anions in the solution lose electrons on the anode after being energized, and when there are multiple anions in the solution at the same time, the ions with strong reducing properties lose electrons first and undergo oxidation reaction. The order of reducibility of common anions from strong to weak is: Cl OH oxylate ions (such as SO42, NO3, etc. Oxygen anodes.
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Hello, it is a pleasure to serve you and give you the following answers: Gas discharge anode discharge sequence: 1
First, the discharge anode is placed in the gas and the power supply is connected to the discharge anode. 2.Then, place the discharge anode into the gas and connect the power supply to the discharge anode.
3.Next, the discharge anode is placed in the gas and the power supply is connected to the discharge anode. 4.
Finally, the discharge anode is placed into the gas air position and the power supply is connected to the discharge anode. When a problem occurs, it may be due to the fact that the discharge anode is not placed deep enough in the gas, or the power supply connection is not perfect, resulting in poor discharge effect. The workaround is:
1.Check that the depth of the discharge anode is sufficient to put it into the gas, and if not, the depth of the discharge anode should be deepened. 2.
Check that the power connection is good, if not, the power supply should be reconnected. 3.Check if the temperature in the gas is sufficient, if not, the temperature of the gas should be increased.
4.Check that the humidity in the gas is sufficient, and if not, the humidity of the gas should be increased. Personal Tips:
When performing a gas discharge anodic discharge, attention should be paid to the depth at which the discharge anode is placed in the gas, the power connection, the gas temperature and humidity to ensure that the discharge is effective.
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