Potassium Permagnate 500 ml
Potassium permanganate (KMnO4) is a strong oxidizing agent . As an oxidizing agent it has the ability to add oxygen, remove hydrogen or remove electrons from an element or compound. Potassium permanganate is made up of 1 manganese atom surrounded by 4 oxygen atoms. The molecular weight of permanganate is 158.04 g/mol.
Potassium permanganate has the ability to “oxidize” soluble manganese and iron in drinking water to an insoluble manganese dioxide and iron oxide that can be removed by filtration. If these compounds were left untreated, they would cause staining of plumbing fixtures such as toilets, sinks and bath tubs and impart a bad taste to the water.
Potassium permanganate is recognized by its characteristic purple to pink color when made into a solution. In high concentrations it is a dark purple color.
Potassium Permanganate has been used in many applications over the years from drinking water treatment to pharmaceutical manufacture. In drinking water treatment, Potassium Permanganate is used to oxidize iron, manganese, hydrogen sulfide, arsenic, to improve taste and odor and is used as a preoxidant for disinfection by-product control. Potassium Permanganate can help to produce high quality water and to meet strict drinking water standards. In pharmaceutical applications it has been used to oxidize functional groups, such as aromatic side chains to carboxylic acids, organic sulfides to sulfones and to produce antibiotics and tranquilizers.
Listed below are some of the many applications of potassium permanganate. Permanganate is a powerful oxidizing agent. The optimum condition under which it is to be used can be easily established through technical service evaluations or laboratory testing.
Oxidation and Synthesis - Organic chemicals and intermediates manufacture. Oxidizes impurities in organic and inorganic chemicals.
Water Treatment - Oxidizes iron, manganese, and hydrogensulfide; controls taste and odor; and is an alternate pre-oxidant for Disinfection By-Product (THMs and HAAs) control.
Municipal Wastewater Treatment - Destroys hydrogen sulfide in wastewater and sludge. Improves sludge dewatering.
Industrial Wastewater Treatment - Oxidizes hydrogen sulfide, phenols, iron, manganese, and many other organic and inorganic contaminants; resultant manganese dioxide aids in removing heavy metals.
Metal Surface Treatment - Conditions mill scale and smut to facilitate subsequent removal by acid pickling in wrought metals manufacturing and jet engine cleaning.
Equipment Cleaning - Assists in cleaning organic and inorganic residues from refining and cooling towers and other processing equipment. Decontaminates hydrogen sulfides, pyrophoric iron sulfides, phenols, and others.
Purification of Gases - Removes trace impurities of sulfur, arsine, phosphine, silane, borane, and sulfides from carbon dioxide and other industrial gases.
Mining and Metallurgical - Aids in separation of molybdenum from copper; removes impurities from zinc and cadmium; oxidizes flotation compounds. Removes iron and manganese from acid mine drainage.
Hazardous Waste Treatment or Remediation - Treats phenols, chlorinated solvents (TCE, PCE), tetraethyl lead, chelated metals, cyanides, and sulfides.
Slag Quenching - Controls hydrogen sulfide and acetylene emissions during quenching of hot slag.
Food Processing - Controls sulfides, soluble animal oil, grease, organic acids, ketones, nitrogen compounds, mercaptans, and BOD.
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