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  2. Potassium hypochlorite - Wikipedia

    en.wikipedia.org/wiki/Potassium_hypochlorite

    Potassium hypochlorite is produced by the disproportionation reaction of chlorine with a solution of potassium hydroxide: [2] Cl 2 + 2 KOH → KCl + KOCl + H 2 O. This is the traditional method, first used by Claude Louis Berthollet in 1789. [3] Another production method is electrolysis of potassium chloride solution.

  3. Potassium chlorate - Wikipedia

    en.wikipedia.org/wiki/Potassium_chlorate

    Potassium chlorate can be produced in small amounts by disproportionation in a sodium hypochlorite solution followed by metathesis reaction with potassium chloride: [7] 3 NaOCl → 2 NaCl + NaClO 3 KCl + NaClO 3 → NaCl + KClO 3. It can also be produced by passing chlorine gas into a hot solution of caustic potash: [8] 3 Cl 2 + 6 KOH → KClO ...

  4. Potassium hydroxide - Wikipedia

    en.wikipedia.org/wiki/Potassium_hydroxide

    This reaction is manifested by the "greasy" feel that KOH gives when touched; fats on the skin are rapidly converted to soap and glycerol. Molten KOH is used to displace halides and other leaving groups. The reaction is especially useful for aromatic reagents to give the corresponding phenols. [16]

  5. Chloralkali process - Wikipedia

    en.wikipedia.org/wiki/Chloralkali_process

    2 NaCl + 2 H 2 O → 2 NaOH + H 2 + Cl 2. Without a membrane, the OH − ions produced at the cathode are free to diffuse throughout the electrolyte. As the electrolyte becomes more basic due to the production of OH −, less Cl 2 emerges from the solution as it begins to disproportionate to form chloride and hypochlorite ions at the anode:

  6. Potassium permanganate - Wikipedia

    en.wikipedia.org/wiki/Potassium_permanganate

    The chemical reaction, in which ethylene (C 2 H 4) is oxidised by potassium permanganate (KMnO 4) to carbon dioxide (CO 2), manganese oxide (MnO 2) and potassium hydroxide (KOH), in the presence of water, is presented as follows: [55] 3 C 2 H 4 + 12 KMnO 4 + 2 H 2 O → 6 CO 2 + 2 H 2 O + 12 MnO 2 + 12 KOH

  7. Chlorate - Wikipedia

    en.wikipedia.org/wiki/Chlorate

    Metal chlorates can be prepared by adding chlorine to hot metal hydroxides like KOH: 3 Cl 2 + 6 KOH 5 KCl + KClO 3 + 3 H 2 O {\displaystyle {\ce {3 Cl2 + 6 KOH -> 5 KCl + KClO3 + 3 H2O}}} In this reaction, chlorine undergoes disproportionation , both reduction and oxidation.

  8. Potassium chloride - Wikipedia

    en.wikipedia.org/wiki/Potassium_chloride

    Potassium chloride (KCl, or potassium salt) is a metal halide salt composed of potassium and chlorine.It is odorless and has a white or colorless vitreous crystal appearance. The solid dissolves readily in water, and its solutions have a salt-like taste.

  9. Geminal halide hydrolysis - Wikipedia

    en.wikipedia.org/wiki/Geminal_halide_hydrolysis

    The first part of the reaction mechanism consists of an ordinary nucleophilic aliphatic substitution to produce a gem-halohydrin: . RCH(Cl) 2 + KOH RCH(OH)Cl + KCl. The remaining halide is a good leaving group and this enables the newly created hydroxy group to convert into a carbonyl group by expelling the halide: