A Case for Employing Near-field Measurements to Detect Important Effluents from Nuclear Material Processing Operations
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[1] D. Mackay,et al. Fugacity revisited. The fugacity approach to environmental transport , 1982 .
[2] C. Rice,et al. Marine arctic fog: An accumulator of currently used pesticide , 1997 .
[3] M Matthies,et al. Comparing representations of the environmental spatial scale of organic chemicals , 2001, Environmental toxicology and chemistry.
[4] D. Mackay,et al. Calculating fugacity. , 1981, Environmental science & technology.
[5] T. E. McKone,et al. CalTOX, a multimedia total exposure model for hazardous-waste sites; Part 1, Executive summary , 1993 .
[6] I. Zwiebel. Nuclear chemical engineering. (Part of the McGraw‐Hill Series in Nuclear Engineering) Manson Benedict, Professor, Nuclear Engineering, M.I.T., and Thomas H. Pigford, Associote Professor, Nuclear Engineering, M.I.T. McGraw Hill Book Company, Inc., New York (1957). 594 pages. $9.50. , 1958 .
[7] T. Bidleman,et al. Atmospheric processes: wet and dry deposition of organic compounds are controlled by their vapor-particle partitioning , 1988 .
[8] Michael Matthies,et al. General Formulation of Characteristic Travel Distance for Semivolatile Organic Chemicals in a Multimedia Environment , 1998 .
[9] J. T. Long,et al. Engineering for nuclear fuel reprocessing , 1967 .
[10] Gour-Tsyh Yeh,et al. Three-dimensional air pollutant modeling in the lower atmosphere , 1975 .
[11] J. Seiber,et al. Pesticides in fog , 1987, Nature.
[12] D. L. Strenge,et al. Overview of the Multimedia Environmental Pollutant Assessment System (MEPAS) , 1992 .
[13] D. Mackay,et al. Finding fugacity feasible , 1979 .
[14] A. D. Maughan,et al. Potential Signatures of Semi-volatile Compounds Associated With Nuclear Processing , 2002 .
[15] D Mackay,et al. Fugacity revisited. , 1982, Environmental science & technology.
[16] Jan-Olov Liljenzin,et al. Radiochemistry And Nuclear Chemistry , 1995 .
[17] Michael S. Majewski,et al. Distribution of several organophosphorus insecticides and their oxygen analogues in a foggy atmosphere. , 1990 .
[18] Frank Wania,et al. Evaluating environmental persistence , 1998 .
[19] K. Goss,et al. Adsorption of organic vapors on polar mineral surfaces and on a bulk water surface: development of an empirical predictive model. , 1994, Environmental science & technology.
[20] M Matthies,et al. Long-range transport in the environment , 2001, Environmental science and pollution research international.
[21] Keith G. McGregor,et al. Chemistry of fog waters in California's Central Valley: 1. In situ photoformation of hydroxyl radical and singlet molecular oxygen , 2001 .
[22] F. L. Culler,et al. Solvent Extraction Separation of Uranium and Plutonium from Fission Products. , 1955 .
[23] Louis J. Thibodeaux,et al. On the enrichment of hydrophobic organic compounds in fog droplets , 1993 .
[24] James N. Seiber,et al. Air and fog deposition residues of four organophosphate insecticides used on dormant orchards in the San Joaquin Valley, California , 1993 .
[25] T E McKone,et al. Screening the potential risks of toxic substances using a multimedia compartment model: estimation of human exposure. , 1986, Regulatory toxicology and pharmacology : RTP.
[26] Donald Mackay,et al. Multimedia Environmental Models: The Fugacity Approach, Second Edition , 2001 .
[27] Michael Matthies,et al. Assessing Long-Range Transport Potential of Persistent Organic Pollutants , 2000 .
[28] T. Forshaw. Everything you always wanted to know , 1977 .
[29] M. L. Sanches,et al. Chemical Weapons Convention (CWC) signatures analysis. Final report, 4 Jan-15 Aug 91 , 1991 .
[30] M Matthies,et al. Long-Range transport potential of semivolatile organic chemicals in coupled air-water systems , 2001, Environmental science and pollution research international.
[31] Keith G. McGregor,et al. Chemistry of fog waters in California's Central Valley: 2. Photochemical transformations of amino acids and alkyl amines , 2001 .
[32] M. Levenson,et al. The Nuclear Fuel Cycle , 1976 .
[33] Kai-Uwe Goss,et al. Predicting the enrichment of organic compounds in fog caused by adsorption on the water surface , 1994 .
[34] McKone. CalTOX: A multimedia total-exposure model for hazardous-wastes sites. Part 3, The multiple-pathway exposure model , 1992 .
[35] James N. Seiber,et al. Pesticide occurrence and distribution in fog collected near Monterey, California , 1991 .
[36] J. M. Cleveland. The chemistry of plutonium , 1970 .
[37] R. S. Schemenauer,et al. Pollutant wet deposition mechanisms in precipitation and fog water , 1986 .
[38] Konrad Hungerbühler,et al. The spatial scale of organic chemicals in multimedia fate modeling , 2001, Environmental science and pollution research international.
[39] B. E. Clark,et al. An introduction to the Purex Plant , 1954 .