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Environmental chemistry - new

Bockris J.O.M. Environmental Chemistry. New York Plenum Press, 1977. [Pg.332]

For Further Reading C. Baird, Environmental Chemistry (New York W. H. Freeman and Company, 1995), pp. 13-76. R. Monastersky, Drop in ozone killers means global gain, Science News, Mar. 9, 1996, p. 151. The Royal Swedish Academy of Sciences, Press Release The 1995 Nobel Prize in Chemistry The ozone layer—the Achilles heel of the biosphere, http /Avww.nobel.se/laureates/chemistry-1995-press.html)... [Pg.782]

Brimblecombe, P. Shooter, D. Watts, S. 194th A.C.S. National Meeting, Divison of Environmental Chemistry, New Orleans 30 Aug-4 Sept. 1987, Book of Abstracts, p 96. [Pg.475]

Jungclaus, G.A., Cohen, S.Z. (1986) Extended Abstracts, 191st National Meeting of the American Chemical Society, Division of Environmental Chemistry, New York, N.Y. American Chemical Society Washington, DC, 1986 paper 6. [Pg.332]

Gibson DT. 1980. Microbial metabolism. In Hutzinger O, ed. The handbook of environmental chemistry. New York, NY Springer-Verlag, 161-192. [Pg.383]

Moore, J. W., and E. A. Moore. 1976. Environmental chemistry. New York Academic Press. [Pg.578]

P. K. Hopke, Receptor Modeling in Environmental Chemistry, oEn Wiley Sons, Inc., New York, 1985. [Pg.387]

E. A. Clarke and R. Anliker, Environmental Chemistry, A.nthropogenic Compounds, Vol. 3, Part A, Springer-Vedag, New York, 1980, p. 181. [Pg.389]

L. Fishbeia, "Anthropogenic Compounds," ia G. Hutziager, A., Aromatic Amenes, The Handbook of Environmental Chemistry, Vol. 3, Spriager-Vedag, Berlin, Heidelberg, New York, Tokyo, 1984. [Pg.394]

See papers presented at the ACS Symposium on Production and Use of Carbon-Based Materials for Environmental Cleanup (New Orleans, LA, USA, March 1996), published in ACS Preprints (Fuel Chemistry Division), 1996, 4 ( ) and Energy Fuels, 1997, 11(2). [Pg.115]

Allen, D. (1992). The Role of Catalysis in Industrial Waste Reduction. Industrial Environmental Chemistry, ed. D. T. Sawyer, and A. E. Martell, 89-98. New York Plenum Press. [Pg.137]

Degens, E. T., Kempe, S. and Spitzy, A. (1984). Carbon dioxide a biogeochemical portrait. In "The Handbook of Environmental Chemistry" (O. Hutzinger, ed.), Vol. 1 (Part C). Springer-Verlag, New York. [Pg.311]

The Handbook of Environmental Chemistry is available both in print and online via www.springerlink.com/content/110354/. Articles are published online as soon as they have been approved for publication. Authors, Volume Editors and Editors-in-Chief are rewarded by the broad acceptance of The Handbook of Environmental Chemistry by the scientific community, from whom suggestions for new topics to the Editors-in-Chief are always very welcome. [Pg.247]

Crosby, D.G. (1998). Environmental Toxicology and Chemistry. New York Oxford University Press. [Pg.343]

Schwarzenbach, R.P., Gschwend, P.M., and Imboden, D.M. (1993). Environmental Organic Chemistry. New York John Wiley. [Pg.367]

Catalysis at interfaces between two immiscible liquid media is a rather wide topic extensively studied in various fields such as organic synthesis, bioenergetics, and environmental chemistry. One of the most common catalytic processes discussed in the literature involves the transfer of a reactant from one phase to another assisted by ionic species referred to as phase-transfer catalyst (PTC). It is generally assumed that the reaction process proceeds via formation of an ion-pair complex between the reactant and the catalyst, allowing the former to transfer to the adjacent phase in order to carry out a reaction homogeneously [179]. However, detailed comparisons between interfacial processes taking place at externally biased and open-circuit junctions have produced new insights into the role of PTC [86,180]. [Pg.231]

Sanjay V. Malhotra, Department of Chemistry and Environmental Science New Jersey Institute of Technology... [Pg.589]

Barnard TE (1995) Environmental Sampling, in The handbook of environmental chemistry (Ed. O. Hutzinger), Vol 2, Part G Chemometrics in environmental chemistry - statistical methods (Vol. Ed. J. Einax), Springer, Berlin Heidelberg New York, 1-47... [Pg.64]

Bowen H.J.M. Environmental Chemistry of the Elements. New York Academic Press, 1979. [Pg.332]

Brooks R.R. Pollution through trace elements. In Environmental Chemistry, Bockris J.O.M., ed. New York Plenum Press, 1977. [Pg.332]

Baird, C. (1995). Environmental Chemistry. W.H. Freeman and Company, New York Craig, N.C. (1992). Entropy Analysis. VCH Publishers, New York... [Pg.123]

Developed from a symposium sponsored by the Divisions of Environmental Chemistry and Nuclear Chemistry and Technology at the 191st Meeting of the American Chemical Society, New York, New York, April 13-18, 1986. ... [Pg.4]

Methods for determining acrylonitrile in environmental samples are quite good. It may be assumed that the normal incentives for both research and the development of commercial methods of analysis will result in new analytical methods for acrylonitrile that have improved sensitivity and selectivity. Degradation products of acrylonitrile in environmental media are difficult to determine. This difficulty is not as much an analytical problem as it is a problem of knowing the fundamental environmental chemistry of these compounds in water, soil, air and biological systems. [Pg.96]


See other pages where Environmental chemistry - new is mentioned: [Pg.689]    [Pg.94]    [Pg.321]    [Pg.689]    [Pg.94]    [Pg.321]    [Pg.134]    [Pg.531]    [Pg.436]    [Pg.424]    [Pg.550]    [Pg.293]    [Pg.58]    [Pg.227]    [Pg.12]    [Pg.5]    [Pg.105]    [Pg.67]    [Pg.394]    [Pg.28]    [Pg.42]   
See also in sourсe #XX -- [ Pg.301 ]




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