Produktinformation
- Clorofene
- 2-Benzyl-3-Chlorophenol
- 2-Benzyl-4-Chlor-Phenol
- 2-Benzyl-4-Chlorophenol
- 2-Benzyl-4-Chlorphenol
- 2-Benzyl-P-Chlorophenol
- 2-Hydroxy-5-chlorodiphenylmethane
- 4-Chloro-2-(phenylmethyl)phenol
- 4-Chloro-2-Benzylphenol
- 4-Chloro-α-phenyl-o-cresol
- Mehr Synonyme anzeigen
- 5-Chloro-2-Hydroxydiphenylmethane
- 5-Chloro-2-Hydroxydiphenylmethane:(Chlorophene)
- Benzyl(2-)-4-Chlorophenol
- Benzyl-P-Chlorophenol
- Bio-Clave
- Chlorofene
- Chlorophene
- Clorofen
- Clorofeno
- Clorophene
- Ketolin H
- Neosabenyl
- Nipacide BCP
- Nipacide BCP 50
- Nsc 59989
- Obco
- Phenol, 2-Benzyl-4-Chloro-
- Phenol, 4-chloro-2-(phenylmethyl)-
- Preventol BP
- Santophen
- Santophen 1
- Septiphene
- Septol
- o-Benzyl-p-Chlorophenol
- o-Cresol, 4-chloro-α-phenyl-
- p-Chloro-o-benzylphenol
2-Benzyl-4-chlorophenol is a disinfectant that is used to treat skin cells and react with the surface of the skin. It has been shown to be toxic in laboratory animals at high doses. 2-Benzyl-4-chlorophenol is also used as an analytical reagent for detecting triclosan, which is an antimicrobial agent, and other substances. The reaction mechanism of 2-benzyl-4-chlorophenol is through a process called phenolic chlorination, which involves chlorinating benzene rings by oxidation. This reaction may occur at a faster rate in the presence of sodium hydroxide (NaOH), producing sodium chloride (NaCl) and hydrogen chloride gas (HCl).
2-Benzyl-4-chlorophenol can also be used as a disinfectant for wastewater treatment. It reacts with organic matter in wastewater to form carbon dioxide (CO2) and water (H2O). This reaction occurs when the
Chemische Eigenschaften
Technische Anfrage zu: 3D-FC177337 2-Benzyl-4-chlorophenol
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