write the chemical equation of prepearation potassium humate from humic acid
Humic acid is insoluble in acids because it contains many organic compounds with complex molecular structures. These structures make it difficult for acids to break down and dissolve humic acid molecules. Additionally, humic acid is generally resistant to acid hydrolysis due to its high aromatic content and the presence of functional groups like carboxylic acids that can form strong bonds.
Potassium is too reactive to mix with acid
To make potassium chloride and water from potassium hydroxide, you would add hydrochloric acid (HCl). The reaction would be: KOH + HCl → KCl + H2O
Potassium sulfate can be made by reacting potassium chloride with sulfuric acid. The reaction produces potassium sulfate and hydrochloric acid as byproduct. The potassium sulfate can then be extracted and purified.
To make potassium iodide, you would need to first react iodine with potassium hydroxide. This will create potassium iodate, which can then be reduced to potassium iodide using a reducing agent like sulfur dioxide or hydriodic acid.
Tartaric acid and potassium carbonate react to form potassium bitartrate (cream of tartar), water, and carbon dioxide gas.
When potassium reacts with nitric acid, it produces potassium nitrate (KNO3) and nitrogen dioxide gas (NO2). This is a redox reaction where potassium is oxidized to potassium ions while nitric acid is reduced to nitrogen dioxide gas.
Hydrochloric acid and potassium react to form potassium chloride and hydrogen gas. The balanced chemical equation for this reaction is: 2HCl + 2K -> 2KCl + H2.
Sulphuric acid. I don't recommend you try this without safeguards.
HCL (hydrochloric acid) and KOH (Potassium hydroxide)HCL + KOH = KCL + H2Oso you need hydrochloric acid and potassium hydroxide.
1. If one wanted to make 2-Chlorobenzoic acid instead of 2-Iodobenzoic acid What should be used in place of potassium iodide?
Water is formed by the combination of H+ ions from sulfuric acid and OH- ions from potassium hydroxide to produce H2O molecules. This reaction is a typical acid-base neutralization reaction where the acid and base react to form water and a salt.