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CODEXIS® ... 222/2004 Sb. Vyhláška, kterou se u chemických látek a chemických přípravků stanoví základní metody pro zkoušení fyzikálně-chemických vlastností, výbušných vlastností a vlastností nebezpečných pro životní prostředí XXIV.4. Literatura

XXIV.4. Literatura

222/2004 Sb. Vyhláška, kterou se u chemických látek a chemických přípravků stanoví základní metody pro zkoušení fyzikálně-chemických vlastností, výbušných vlastností a vlastností nebezpečných pro životní prostředí

XXIV.4. Literatura

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(2) Commission for registration of pesticides: Application for registration of a pesticide. (1991). Part G. Behaviour of the product and its metabolites in soil, water and air, Section G.2.1 (a). The Netherlands.

(3) MAFF Pesticides Safety Directorate. (1992). Preliminary guideline for the conduct of biodegradability tests on pesticides in natural sediment/water systems. Ref No SC 9046. United Kingdom.

(4) Agriculture Canada: Environmental chemistry and fate. (1987). Guidelines for registration of pesticides in Canada. Aquatic (Laboratory) - Anaerobic and aerobic. Canada. 35 - 37.

(5) US-EPA: Pesticide assessment guidelines, Subdivision N. Chemistry: Environmental fate (1982). Section 162 - 3, Anaerobic aquatic metabolism.

(6) SETAC-Europe publication. (1995). Procedures for assessing the environmental fate and ecotoxicity of pesticides. Vyd. Dr. Mark R. Lynch. SETAC-Europe, Brussels.

(7) OECD Test Guidelines Programme. (1995). Final Report of the OECD Workshop on Selection of Soils/sediments, Belgirate, Italy, 18. - 20. ledna 1995.

(8) ISO 5667-12. (1995). Water quality - Sampling - Part 12: Guidance on sampling of bottom sediments, Technical Committee ISO/TC 146/SC 6.

(9) US-EPA (1998a). Sediment/water microcosm biodegradation test. Harmonised Test Guidelines (OPPTS 835.3180). EPA 712-C-98-080.

(10) DFG: Pesticide Bound Residues in Soil. Wiley-VCH (1998).

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(12) OECD Test Guideline 304A: Inherent Biodegradability in Soil (přijato 12. května 1981).

(13) OECD (1993): Guidelines for Testing of Chemicals. Paris. OECD (1994 - 2000): Addenda 6 - 11 to Guidelines for the Testing of Chemicals.

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(17) Steber, J., Wierich, P. (1987). The anaerobic degradation of detergent range fatty alcohol ethoxylates. Studies with 14C-1abelled model surfactants. Water Research 21, 661 - 667.

(18) Black, C. A. (1965). Methods of Soil Analysis. Agronomy Monograph No. 9. American Society of Agronomy, Madison.

(19) APHA (1989). Standard Methods for Examination of Water and Wastewater (17. vyd.). American Public Health Association, American Water Works Association and Water Pollution Control Federation, Washington D. C.

(20) Rowell, D. L. (1994). Soil Science Methods and Applications. Longman.

(21) Light, T. S. (1972). Standard solution for redox potential measurements. Anal. Chem. 44, 1038 - 1039.

(22) SETAC-Europe publication (1991). Guidance document on testing procedures for pesticides in freshwater mesocosms. From the Workshop "A Meeting of Experts on Guidelines for Static Field Mesocosms Tests", 3. - 4. června 1991.

(23) SETAC-Europe publication. (1993). Guidance document on sediment toxicity tests and bioassays for freshwater and marine environments. From the Workshop "On Sediment Toxicity Assessment (WOSTA)", 8. - 10. listopadu 1993. Vyd. I. R. Hill, P. Matthiessen, F. Heimbach.

(24) Vink, J. P. M., van der Zee, S. E. A. T. M. (1997). Pesticide biotransformation in surface waters: multivariate analyses of environmental factors at field sites. Water Research 31, 2858 - 2868.

(25) Vink, J. P. M., Schraa, G., van der Zee, S. E. A. T. M. (1999). Nutrient effects on microbial transformation of pesticides in nitrifying waters. Environ. Toxicol, 329 - 338.

(26) Anderson, T. H., Domsch, K. H. (1985). Maintenance carbon requirements of actively-metabolising microbial populations under in-situ conditions. Soil Biol. Biochem. 17, 197 - 203.

(27) ISO-14240-2. (1997). Soil quality - Determination of soil microbial biomass - Part 2: Fumigation-extraction method.

(28) Beelen, P. Van, F. Van Keulen. (1990), The Kinetics of the Degradation of Chloroform and Benzen in Anaerobic Sediment from the River Rhine. Hydrobiol. Bull. 24 (1), 13 - 21.

(29) Shelton, D. R., Tiedje, J. M. (1984). General method for determining anaerobic biodegradation potential. App. Environ. Microbiol. 47, 850 - 857.

(30) Birch, R. R., Biver, C., Campagna, R., Gledhill, W. E., Pagga, U., Steber, J., Reust, H., Bontinck, W. J. (1989). Screening of chemicals for anaerobic biodegradation. Chemosphere, 19, 1527 - 1550.

(31) Pagga, U., Beimborn, D. B. (1993). Anaerobic biodegradation tests for organic compounds. Chemosphere, 27, 1499 - 1509.

(32) Nuck, B. A., Federle, T. W. (1986). A batch test for assessing the mineralisation of 14C-radiolabelled compounds under realistic anaerobic conditions. Environ. Sci. Technol. 30, 3597 - 3603.

(33) US-EPA (1998b). Anaerobic biodegradability of organic chemicals. Harmonised Test Guidelines (OPPTS 835.3400). EPA 712-C-98-090.

(34) Sijm, Haller, Schrap (1997). Influence of storage on sediment characteristics and drying sediment on sorption coefficients of organic contaminants. Bulletin Environ. Contam. Toxicol. 58, 961 - 968.

(35) Timme, G., Frehse, H., Laska, V. (1986) Statistical interpretation and graphic representation of the degradational behaviour of pesticide residues II. Pflanzenschutz - Nachrichten Bayer, 39, 187 - 203.

(36) Timme, G., Frehse, H. (1980) Statistical interpretation and graphic representation of the degradational behaviour of pesticide residues I. Pflanzenschutz - Nachrichten Bayer, 33, 47 - 60.

(37) Carlton, R.R., Allen, R. (1994). The use of a compartment model for evaluating the fate of pesticides in sediment/water systems. Brighton Crop Protection Conference - Pest and Diseases, 1349 - 1354.