Interspecies sensitivity in the aquatic toxicity of aromatic amines

Author:

Ramos Eñaut Urrestarazu,Vaal Manon A,Hermens Joop L.M

Publisher

Elsevier BV

Subject

Health, Toxicology and Mutagenesis,Pharmacology,Toxicology,General Medicine

Reference63 articles.

1. Adema, D.M.M., Canton, J.H., Slooff, W., Hanstveit, A.O., 1981. Research for a useful combination of test methods to determine the aquatic toxicity of environmentally dangerous chemicals. Consecutive System of National Institute of Public Health and Environmental Hygiene, Report No. CL81/100, pp. 107.

2. A comparative study of the toxicity of 1,1,2-trichloroethane, dieldrin, pentacholorophenol, and 3,4 dichloroaniline for marine and fresh water;Adema;Chemosphere,1981

3. Bailey, H.C., Spanggord, R.J., 1983. The relationship between the toxicity and structure of nitroaromatic chemicals. In: Bishop, W.E., Cardwell, R.D., Heidolph, B.B. (Eds.), Proceedings of the 6th Symposium on Aquatic Toxicology and Hazard Assessment, ASTM STP 802, Philadelphia, PA, USA, pp. 98–107.

4. A comparative study of genotype sensitivity to acute toxic stress using clones of Daphnia magna Straus;Baird;Ecotoxicol. Environ. Saf.,1991

5. Belfroid, A., 1994. Toxicity of six organic chemicals for aquatic species: sensitivity in respect to toxicokinetics and mode of action. A literature study. Research Institute of Toxicology (RITOX), Utrecht University, The Netherlands, pp. 3–10.

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