Shake Flask Biodegradation of 14 Commercial Phthalate Esters

Author:

Sugatt Richard H.1,O'Grady Dean P.1,Banerjee Sujit1,Howard Philip H.1,Gledhill W. E.1

Affiliation:

1. Life and Environmental Sciences Division, Syracuse Research Corporation, Syracuse, New York 13210, and Monsanto Company, St. Louis, Missouri 631662

Abstract

An acclimated shake flask CO 2 evolution test was used to study the biodegradability of 14 commercial phthalate esters that are commonly used as plasticizers. Both CO 2 evolution (ultimate biodegradation) and loss of parent phthalate esters (primary biodegradation) were measured. With only a few exceptions, primary biodegradation was 90% or higher, and ultimate biodegradation was in excess of 55% of theoretical results in 28 days. The results showed that all of the commercial phthalate esters were susceptible to biodegradation by mixed populations of microorganisms from natural sources. The results also provide considerable insight into the utility and reproducibility of a standard biodegradation test that is being recommended for widespread screening of chemicals.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference14 articles.

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2. Baughman G. L. D. F. Paris and W. C. Steen. 1980. Quantitative expression of biotransformation rate p. 105-111. In A. W. Maki K. L. Dickson and J. Cairns Jr. (ed.) Biotransformation and fate of chemicals in the aquatic environment. American Society for Microbiology Washington D.C.

3. Screening test of assessment of ultimate biodegradability: linear alkylbenzene sulfonates;Gledhill W.;Appl. Microbiol.,1975

4. Phthalate ester plasticizers-why and how they are used;Graham P. R.;Environ. Health Perspect.,1973

5. Biodegradation of di-nbutyl and di-2-ethyl hexyl phthalate in freshwater hydrosoil;Johnson B. T.;J. Fish. Res. Board Can.,1975

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