Umweltrelevanz von Diphenylamin — Ein Stoff der 3. EU-Altstoffprioritätenliste

Author:

Drzyzga Oliver

Publisher

Springer Science and Business Media LLC

Subject

Pollution

Reference73 articles.

1. Alexander, W.E.;Ryan, A.J.;Wright, S.E. (1965): Metabolism of diphenylamine in rat, rabbit, and man. Food and Cosmetic Toxicol.3, 571–579

2. Aoki, K.;Ohtsuka, K.;Shinke, R.;Nishira, H. (1983): Isolation of aniline-assimilating bacteria and physiological characterization of aniline biodegradation inRhodococcus erythropolis AN-13. Agric. Biol. Chem.47, 2569–2575

3. Ardito, G.;Bramanti, B.;Bigatti, P.;Lamberti, L.;Dolara, P. (1996): Cytogenetic effect of thiabendazole and diphenylamine on cultured human lymphocytes: sister chromatid exchanges and cell cycle delay. Boll. Soc. Ital. Biol. Sper.72, 171–178

4. Bazin, B.H.;Foussereau, J.;Cavelier, C. (1986): Allergy to diphenylamine from an industrial grease. Contact Dermatitis14, 116

5. Berry, D.F.;Francis, A.J.;Bollag, J.M. (1987): Microbial metabolism of homocyclic and heterocyclic aromatic compounds under anaerobic conditions. Microbiol. Rev.51, 43–59

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