ГОСТ ЗЗОЗЭ—2014
Библиография
(1)Official Journal of the European Communities L 383 A (1992). 26—47
(2) Ambrose. D. (1975). Experimental Thermodynamics. Vol.il, Le Nelndre. B., and Vodar. B.. Eds.. Butterworths.
London
(3)Weissberger R.. ed. (1959). Technique of Organic Chemistry. Physical Methods of Organic Chemistry. 3rd ed.. Vol. I,
Part I. Chapter IX. Interscience Publ.. New York
(4)Glasstone. S. (1946). Textbook of Physical Chemistry. 2nd ed.. Van Nostrand Company. New York
(5) NF T 20-048 AFNOR (September 1985). Chemical products for industrialuse — Determination of vapour pressure of
solids and liquids within a range from 10-1 to 105 Pa — Static method
(6) ASTM D 2879-86. Standard test method for vapour pressure — temperature relationship and initial decomposition
temperature of liquids by isotemscope
(7) NF T 20-047 AFNOR (September 1985). Chemical products for industrialuse — Determination ofvapour pressure of
solids and liquids within range from 10-3 to 1 Pa — Vapour pressure balance method
(8)Knudsen. M. (1909). Ann. Phys. Lpz.. 29. 1979; (1911). 34. 593
(9)Ambrose. D.. Lawrenson, I.J., Sprake. C.H.S. (1975). J. Chem. Thermodynamics 7. 1173
(10)Schmuckler. M.E.. Barefoot. A.C.. Kleier, D.A.. Cobranchl. D.P. (2000). Vapor pressures of sulfonylurea herbicides;
Pest Management Science 56, 521—532
(11)Tomlin. C.D.S. (ed.) (2000). The Pesticide Manual. Twelfth Edition
(12) Friedrich. K..Stammbach.K. (1964), Gas chromatographic determination of smallvapour pressures determination of
the vapour pressures of some tnazme herbicides. J. Chromatog. 16. 22—28
(13)Grayson. B.T.. Fosbraey. L.A. (1982). Pesticide Science 16. 269—278
(14) Rordorf. B.F. (1987), Prediction of vapor pressures, boiling points and enthalpies of fusion for twenty-nine
halogenated dibenzo-p-dioxins. Thermochimia Acta 112 Issue 1.117—122
(15) Guckel. W.. Synnatschke, G.. Ritttig. R. (1973). A Method for Determining the Volatility of Active Ingredients Used in
Plant Protection; Pesticide Science 4. 137— 147
(16)Guckel. W.. Synnatschke. G.. Ritttig. R. (1974). A Method for Determining the Volatility of Active Ingredients Used in
Plant Protection II. Application to Formulated Products; Pesticide Science 5. 393—400
(17)Guckel. VV.. Kaestel. R., Lewerenz. J.. Synnatschke. G. (1982), A Method for Determining the Volatility of Active
Ingredients Used in Plant Protection. Part III; The Temperature Relationship between Vapour Pressure and
Evaporation Rate; Pesticide Science 13. 161 —168
(18)Guckel. W.. Kaestel. R.. Kroeht. T.. Parg. A. (1995). Methods for Determining the Vapour Pressure of Active
Ingredients Used in Crop Protection. Part IV. An Improved Thermogravimetnc Determination Based on Evaporation
Rate; Pesticide Science 45. 27—31
(19) Kroehl, T.. Kaestel. R.. Koenig. W.. Ziegler. H.. Koehle. H.. Parg. A. (1998), Methods for Determining the Vapour
Pressure of Active Ingredients Used in Crop Protection. Part V: Thermogravimetry Combined with Solid Phase
MIcroExtraction (SPME); Pesticide Science 53. 300—310
(20) Tesconi. M., Yalkowsky. S.H. (1998). A Novel Thermogravimetnc Method for Estimating the Saturated Vapor
Pressure of Low-Volatility Compounds; Journal of Pharmaceutical Science 87(12). 1512—20
(21)Lide. D.R. (ed.), CRC Handbook of Chemistry and Physics. 81st ed.(2000). Vapour Pressure in the Range-25 ‘ C to
150 °C
(22) Meister. R.T. (ed.) (2002). Farm Chemicals Handbook. Vol. 88. (1)40 CFR. 796. (1993). pp. 148— 153. Office of the
Federal Register. Washington D.C.
(23)Rordorf B.F. (1985). Thermochimica Acta 85. 435
(24)Westcott et al. (1981). Environ. Sci. Technol. 15. 1375
(25)Messer G.. Rohl. P.. Grosse G.. and Jitschin W. (1987). J. Vac. Sci. Technol. (A). 5(4). 2440
(26)Comsa G.. Fremerey J.K.. and Llndenau. B. (1980). J. Vac. Sci. Technol. 17(2). 642
(27)Fremerey. J.K. (1985). J. Vac. Sci. Technol. (A). 3(3). 1715.
(28)Watson. K.M. (1943). Ind. Eng. Chem. 35. 398
(29) Lyman. W.J.. Reehl. W.F.. Rosenblatt. D.H. (1982). Handbook of Chemical Property Estimation Methods.
McGraw-Hill
(30)OECD Environmental Monograph No.67 (1993). Application of Structure-Activity Relationships to the Estimation of
Properties Important In Exposure Assessment
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