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Hypochlorite

Hypochlorite structure

Hypochlorite 

structure
  • CAS No:

    14380-61-1

  • Formula:

    ClO

  • Chemical Name:

    Hypochlorite

  • Synonyms:

    Hypochlorite;Hypochlorous acid,ion(1-);Hypochlorite anion;Hypochlorite ion;Chlorine oxide (ClO1-);Chlorine monoxide ion(1-);12590-98-6

Description

Salts between a metal ion (most commonly the sodium ion, calcium ion, or potassium ion) and the hypochlorite group ClO-. Toxic by ingestion and inhalation. Powerful irritants to the skin, eyes and mucous membranes. May cause ignition when in contact with organic materials. When involved in a fire they may accelerate combustion or cause an explosion.


Salts between a metal ion (most commonly the sodium ion, calcium ion, or potassium ion) and the hypochlorite group ClO-. Toxic by ingestion and inhalation. Powerful irritants to the skin, eyes and mucous membranes. May cause ignition when in contact with organic materials. When involved in a fire they may accelerate combustion or cause an explosion.|Hypochlorite is a chlorine oxoanion, a chlorine oxide and a monovalent inorganic anion. It is a conjugate base of a hypochlorous acid.|Hypochlorite is an ion composed of chlorine and oxygen with the chemical formula ClO−. Being unstable in the pure form, hypochlorite is most commonly used for bleaching, disinfectation, and water treatment purposes in its salt form, sodium hypochlorite. Hypochlorite is often used as a chemical reagent for chlorination and oxidation reactions.|An oxyacid of chlorine (HClO) containing monovalent chlorine that acts as an oxidizing or reducing agent.

Hypochlorite Basic Attributes

51.45 g/mol

50.9637673 g/mol

T5UM7HB19N

3212

DTXSID8073136

Characteristics

23.1 Ų

Decomposes at 40 (sodium hypochlorite)

Soluble (sodium hypochlorite)

Water soluble. Decompose slowly in water generating chlorine.

Salts, Basic

Strong Oxidizing Agent

HYPOCHLORITES, INORGANIC, N.O.S. are oxidizing agents. Can generate chlorine, a toxic gas, if mixed with strong acids. May react with reducing agents to generate heat and products that may be gaseous (causing pressurization of closed containers). The products may themselves be capable of further reactions. May react vigorously with carbon; reacts potentially explosively with finely divided carbon. Reacts with acetylene to form explosive chloroacetylenes. Reactions with organic matter, oil, hydrocarbons; alcohols may lead to explosions. Reactions with nitromethane, methanol, ethanol (and other alcohols) can become violent after a delay. Reacts with possible ignition and/or explosion with organic sulfur compounds and with sulfides. Decomposes evolving oxygen, a change that can be catalyzed by rust on metal containers. Forms highly explosive NCl3 on contact with urea or ammonia. Evolves highly toxic gaseous chlorine gas when heated or on contact with acids [Sax, 9th ed., 1996, p. 1905]. A mixture with damp sulfur reacted violently, and molten sulfur was ejected [Chem Eng. News, 1965, 46(29), 6]. The combination of calcium hypochlorite, sodium hydrogen sulfate, starch, and sodium carbonate, when compressed, caused the materials to incandescence, followed by explosion, [Ind. Eng. Chem., 1937, 15, 282].

Safety Information

Excerpt from ERG Guide 140 [Oxidizers]: These substances will accelerate burning when involved in a fire. Some may decompose explosively when heated or involved in a fire. May explode from heat or contamination. Some will react explosively with hydrocarbons (fuels). May ignite combustibles (wood, paper, oil, clothing, etc.). Containers may explode when heated. Runoff may create fire or explosion hazard. (ERG, 2016)

Excerpt from ERG Guide 140 [Oxidizers]: SMALL FIRE: Use water. Do not use dry chemicals or foams. CO2 or Halon® may provide limited control. LARGE FIRE: Flood fire area with water from a distance. Do not move cargo or vehicle if cargo has been exposed to heat. Move containers from fire area if you can do it without risk. FIRE INVOLVING TANKS OR CAR/TRAILER LOADS: Fight fire from maximum distance or use unmanned hose holders or monitor nozzles. Cool containers with flooding quantities of water until well after fire is out. ALWAYS stay away from tanks engulfed in fire. For massive fire, use unmanned hose holders or monitor nozzles; if this is impossible, withdraw from area and let fire burn. (ERG, 2016)

Excerpt from ERG Guide 140 [Oxidizers]: As an immediate precautionary measure, isolate spill or leak area in all directions for at least 50 meters (150 feet) for liquids and at least 25 meters (75 feet) for solids. LARGE SPILL: Consider initial downwind evacuation for at least 100 meters (330 feet). FIRE: If tank, rail car or tank truck is involved in a fire, ISOLATE for 800 meters (1/2 mile) in all directions; also, consider initial evacuation for 800 meters (1/2 mile) in all directions. (ERG, 2016)

Excerpt from ERG Guide 140 [Oxidizers]: Keep combustibles (wood, paper, oil, etc.) away from spilled material. Do not touch damaged containers or spilled material unless wearing appropriate protective clothing. Stop leak if you can do it without risk. Do not get water inside containers. SMALL DRY SPILL: With clean shovel, place material into clean, dry container and cover loosely; move containers from spill area. SMALL LIQUID SPILL: Use a non-combustible material like vermiculite or sand to soak up the product and place into a container for later disposal. LARGE SPILL: Dike far ahead of liquid spill for later disposal. Following product recovery, flush area with water. (ERG, 2016)

Excerpt from ERG Guide 140 [Oxidizers]: Wear positive pressure self-contained breathing apparatus (SCBA). Wear chemical protective clothing that is specifically recommended by the manufacturer. It may provide little or no thermal protection. Structural firefighters' protective clothing will only provide limited protection. (ERG, 2016)

Toxicity

Oral LD50 of sodium hypochlorite in an acute oral toxicity study was 5800 mg/kg in mouse [MSDS].

This pharmacokinetic parameter does not apply for this drug.

Drug Information

Indicated for over-the-counter use as a disinfectant agent in the sodium hypochlorite form.

Sodium hypochlorite exerts antimicrobial actions that depends on the concentration of the available chlorine and the pH of the solution. The concentration of the hypochlorite depends on the overall efficiency of disinfection.

Electron-accepting molecules in chemical reactions in which electrons are transferred from one molecule to another (OXIDATION-REDUCTION). (See all compounds classified as Oxidants.)

This pharmacokinetic parameter does not apply for this drug.

This pharmacokinetic parameter does not apply for this drug. Hypochlorite salts are expected to undergo dissociation.

This pharmacokinetic parameter does not apply for this drug.

Sodium hypochlorite mediate its antimicrobial action by reacting with fatty acids and amino acids. Via saponification reaction, it acts as an organic and fat solvent, degrading fatty acids to form fatty acids and glycerol. This reduces the surface tension of the remaining solution. Sodium hypochlorite may react with amino acids to neutralize them and form water and salt. Hypochlorous acids (HOCl-) present in sodium hypochlorite solutions may act as solvents in contact with organic tissue to release chlorine, which forms chloramines when combined with the protein amino group that disrupt cell metabolism. Chlorine in the solution is a strong oxidant that inhibits essential bacterial enzymes leading to an irreversible oxidation of SH groups. Eventually hypochlorous acid and hypochlorite ions degrade and hydrolyze amino acids.

Excerpt from ERG Guide 140 [Oxidizers]: Inhalation, ingestion or contact (skin, eyes) with vapors or substance may cause severe injury, burns or death. Fire may produce irritating, corrosive and/or toxic gases. Runoff from fire control or dilution water may cause pollution. (ERG, 2016)

Excerpt from ERG Guide 140 [Oxidizers]: Ensure that medical personnel are aware of the material(s) involved and take precautions to protect themselves. Move victim to fresh air. Call 911 or emergency medical service. Give artificial respiration if victim is not breathing. Administer oxygen if breathing is difficult. Remove and isolate contaminated clothing and shoes. Contaminated clothing may be a fire risk when dry. In case of contact with substance, immediately flush skin or eyes with running water for at least 20 minutes. Keep victim calm and warm. (ERG, 2016)

Hypochlorite

Computed Properties

Molecular Weight:51.45
XLogP3:0.2
Hydrogen Bond Acceptor Count:1
Exact Mass:50.9637673
Monoisotopic Mass:50.9637673
Topological Polar Surface Area:23.1
Heavy Atom Count:2
Formal Charge:-1
Complexity:2
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

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