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Hydrogen peroxide is a common compound that can decolorize acidified potassium permanganate solution as it undergoes oxidation by permanganate, causing the purple color to disappear.
Sulfur dioxide gas is known to decolorize potassium permanganate because it is a reducing agent that converts permanganate (purple) to colorless manganese(IV) oxide.
Benzene can be converted to benzaldehyde through a reaction involving oxidation using a strong oxidizing agent, such as chromic acid (H2CrO4) or potassium permanganate (KMnO4). The oxidation of benzene results in the formation of benzaldehyde.
The valency of potassium permanganate is +7.
The reaction between acidified potassium permanganate and toluene results in the oxidation of toluene to benzoic acid. The balanced chemical equation for this reaction is: C7H8 + 2KMnO4 + 8H2SO4 → 2MnSO4 + K2SO4 + 7H2O + 7H2O + C6H5CO2H
Hydrogen peroxide is a common compound that can decolorize acidified potassium permanganate solution as it undergoes oxidation by permanganate, causing the purple color to disappear.
You can decolorize potassium permanganate with something that a considerable amount of Vitamin C. Like orange juice or Lime juice or any citrus fruit for that matter.
Sulfur dioxide gas is known to decolorize potassium permanganate because it is a reducing agent that converts permanganate (purple) to colorless manganese(IV) oxide.
Benzene can be converted to benzaldehyde through a reaction involving oxidation using a strong oxidizing agent, such as chromic acid (H2CrO4) or potassium permanganate (KMnO4). The oxidation of benzene results in the formation of benzaldehyde.
KMnO4 is potassium permanganate.
The valency of potassium permanganate is +7.
The reaction between acidified potassium permanganate and toluene results in the oxidation of toluene to benzoic acid. The balanced chemical equation for this reaction is: C7H8 + 2KMnO4 + 8H2SO4 → 2MnSO4 + K2SO4 + 7H2O + 7H2O + C6H5CO2H
Benzene does not react directly with potassium permanganate (KMnO4) under normal conditions. Benzene is a stable aromatic compound and does not undergo typical alkene or alkane reactions with oxidizing agents like KMnO4.
Potassium permanganate, KMnO4, has charge = 0
A molecule of potassium permanganate, KMnO4.
The molecular formula of potassium permanganate is KMnO4.
Alkaline potassium permanganate solution is a solution of potassium permanganate containing an alkali. The alkali can be sodium hydroxide or potassium hydroxide.