ГОСТ 32477—2013
Библиография
(1]ASTM International (2000). Standard guide for the determination of the bioaccumulation of sediment-
associated contaminants by benthic invertebrates. E 1688-00a. In ASTM International 2004 Annual
Book of Standards. Volume 11.05. Biological Effects and Environmental Fate; Biotechnology: Pesti
cides. ASTM International, West Conshohocken, PA
(2] EC (2003). Technical Guidance Document on Risk Assessment in support of Commission Directive
93/67/EEC on Risk Assessment for new notified substances, Commission Regulation (EC) No
1488/94 on Risk Assessment for existing substances and Directive 98/8/EC of the European Parlia
ment and of the Council concerning the placing of biocidal products on the market; Part I - IV. Office
for Official Publications of the EC (European Commission), Luxembourg
(3] OECD (1992a). Report of the OECD workshop on effects assessment of chemicals in sediment.
OECD Monographs No. 60. Organisation for Economic Co-operation and Development (OECD).
Paris
(4] IngersoJI. C.G., Ankley. G.T., Benoit D.A., Brunson. E.L., Burton. G A , Dwyer, F.J., Hoke. R.A.. Lan
drum. P. F., Norberg-King. T. J. and Winger, P.V. (1995). Toxicity and bioaccumulation of sediment-
associated contaminants using freshwater invertebrates: A review of methods and applications. Envi
ron. Toxicol. Chem. 14, 1885-1894
(5) OECD (1996a). OECD Guidelines for testing of chemicals: Bioconcentration: Flow-through fish test.
Guideline No. 305. OECD. Paris
(6] U.S. EPA (2000). Methods for measuring the toxicity and bioaccumulation of sediment-associated
contaminants with freshwater invertebrates. Second Edition. EPA 600/R-99/064. U.S. Environmental
Protection Agency. Duluth. MN. March 2000
(7] OECD (2004). Guideline for the Testing of Chemicals No. 218: ’Sediment-water chironomid toxicity
test using spiked sediment". OECD. Paris
(8] Egeler. Ph.. Rombke. J.. Meller, M., Knacker, Th.. Franke, C.. Studinger, G. & Nagel, R. (1997). Bio
accumulation of lindane and hexachlorobenzene by tubificidsludgeworms (Oligochaeta) under stan
dardised laboratory conditions. Chemosphere 35. 835-852
(9] Ingersoll. C.G.. Brunson. E.L., Wang N., Dwyer. F.J., Ankley, G.T.. Mount D.R., Huckins J., Petty. J.
and Landrum. P. F. (2003). Uptake and depuration of nonionic organic contaminants from sediment by
the oligochaete. Lumbriculusvariegatus. Environmental Toxicology and Chemistry 22, 872-885
(10) Phipps. G.L., Ankley, G.T., Benoit. D.A. and Mattson. V.R. (1993). Use of the aquatic Oligochaete
Lumbriculus variegatus for assessing the toxicity and bioaccumulation of sediment-associated con
taminants. Environ.Toxicol. Chem. 12, 269-279
(11) Egeler. Ph., Rombke. J.. Knacker. Th.. Franke. C. &Studinger. G. (1999). Workshop on ’Bioaccumu
lation: Sediment test using benthic oligochaetes’. 26.-27.04.1999. Hochheim/Main, Germany. Report
on the R+D-project No. 298 67 419, Umweltbundesamt. Berlin
(12) Egeler. Ph., Meller. M., SchallnaB. H.J. &Gilberg, D. (2006). Validation of a sediment beoaccumula-tion
test with endobenthic aquatic oligochaetes by an international ring test. Report to the Federal
Environmental Agency (Umweltbundesamt Dessau), R&D No.: 202 67 437
(13) Kelly. J.R., Levine. S.N., Buttel, L.A., Kelly, A.C.. Rudnick, D.T. & Morton. R.D. (1990). Effects of tri-
butyltin within a Thalassiaseagrass ecosystem. Estuaries 13, 301-310
(14) Nendza, M. (1991). QSARs of bioaccumulation: Validity assessment of log Kow/log BCF correla
tions. In: R. Nagel and R. Loskill (eds.): Bioaccumulation in aquatic systems. Contributions to the as
sessment. Proceedings of an international workshop. Berlin 1990. VCH. Weinheim
(15) Landrum, P.F., Lee II, H„ &Lydy, M.J. (1992). Toxicokinetics in aquatic systems: Model comparisons
and use in hazard assessment. Environ. Toxicol. Chem. 11, 1709-1725
(16) Markwell, R.D., Connell. D.W. &Gabric, A.J. (1989). Bioaccumulation of lipophilic compounds from
sediments by oligochaetes. Wat. Res. 23. 1443-1450
24