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Chlorobenzene (abbreviated PhCl) is an and the simplest of the , consisting of a ring substituted with one atom. Its is C6H5Cl. This colorless, flammable is a common and a widely used intermediate in the manufacture of other chemicals.


Uses
The major use of chlorobenzene is as a precursor for further intermediates such as , , chloroaniline, and , which are used in the production of herbicides, dyestuffs, chemicals for rubber, and pharmaceuticals.

It is also used as a high-boiling in industrial and laboratory applications, for materials such as oils, waxes, resins, and rubber.

(2025). 9783527306732

Chlorobenzene is on a large scale to give a mixture of 2-nitrochlorobenzene and 4-nitrochlorobenzene, which are separated and used as intermediates in production of other chemicals. These mononitrochlorobenzenes are converted to related 2-nitrophenol, 2-nitroanisole, bis(2-nitrophenyl)disulfide, and 2-nitroaniline by nucleophilic displacement of the chloride, with respectively , , sodium disulfide, and . The conversions of the 4-nitro derivative are similar.


Niche and former uses
Chlorobenzene once was used in the manufacture of , most notably , by reaction with (trichloroacetaldehyde), but this application has declined with the diminished use of DDT. At one time, chlorobenzene was the main precursor for the manufacture of :
(2025). 9783527306732

C6H5Cl + NaOH → C6H5OH + NaCl

The reaction is known as the Dow process, with the reaction carried out at 350 °C using fused sodium hydroxide without solvent. Labeling experiments show that the reaction proceeds via elimination/addition, through as the intermediate.


Production
It was first described in 1851. Chlorobenzene is manufactured by chlorination of in the presence of a catalytic amount of such as , sulfur dichloride, and aluminium chloride:
(2025). 9783527303854
Industrially the reaction is conducted as a continuous process to minimize the formation of . Because chlorine is electronegative, C6H5Cl exhibits somewhat decreased susceptibility toward further chlorination.


Laboratory routes
Chlorobenzene could be produced from via benzenediazonium chloride, otherwise known as the Sandmeyer reaction.


Safety
Chlorobenzene exhibits "low to moderate" toxicity as indicated by its of 2.9 g/kg. The Occupational Safety and Health Administration has set a permissible exposure limit at 75 ppm (350 mg/m3) over an eight-hour time-weighted average for workers handling chlorobenzene. CDC - NIOSH Pocket Guide to Chemical Hazards


Toxicology and biodegradation
Chlorobenzene can persist in soil for several months, in air for about 3.5 days, and in water for less than one day. Humans may be exposed to this agent via breathing contaminated air (primarily via occupational exposure), consuming contaminated food or water, or by coming into contact with contaminated soil (typically near hazardous waste sites). However, because it has only been found at 97 out of 1,177 NPL hazardous waste sites, it is not considered a widespread environmental contaminant. The bacterium Rhodococcus phenolicus degrades chlorobenzene, dichlorobenzene and phenol as sole carbon sources. Erratum:

Upon entering the body, typically via contaminated air, chlorobenzene is excreted both via the lungs and the urinary system.


On other planets
Chlorobenzene has been detected in a sedimentary rock on . It was speculated that the chlorobenzene might have been produced when the sample was heated in the instrument sampling chamber. The heating would have triggered a reaction of organics in the Martian soil, which is known to contain perchlorate.


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