Investigation of OECD 301F ready biodegradability test to evaluate chemical fate in a realistic environment
Author:
Affiliation:
1. Sumitomo Chemical Co., Ltd. Environmental Health Science Laboratory
2. Department of Bioengineering, Graduate School of Engineering, Osaka City University
Publisher
Pesticide Science Society of Japan
Subject
Health, Toxicology and Mutagenesis,Insect Science
Link
https://www.jstage.jst.go.jp/article/jpestics/46/2/46_D20-050/_pdf
Reference39 articles.
1. 1) https://osha.europa.eu/en/legislation/directives/regulation-ec-no-1907-2006-of-the-european-parliament-and-of-the-council (Accessed 10 Sep., 2020)
2. 2) http://www.japaneselawtranslation.go.jp/law/detail/?id=3350vm=02re=01 (Accessed 10 Sep., 2020)
3. 3) A. Kowalczyk, T. J. Martin, O. R. Price, J. R. Snape, R. A. van Egmond, C. J. Finnegan, H. Schäfer, R. J. Davenport and G. D. Bending: Refinement of biodegradation tests methodologies and the proposed utility of new microbial ecology techniques. Ecotoxicol. Environ. Saf. 111, 9–22 (2015).
4. 4) OECD Guidance for Testing Chemicals: Ready Biodegradability (1992)
5. 5) A. Ott, T. J. Martin, G. F. Whale, J. R. Snape, B. Rowles, M. Galay-Burgos and R. J. Davenport: Improving the biodegradability in seawater test (OECD 306). Sci. Total Environ. 666, 399–404 (2019).
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