By G. S. Sayler (auth.), Gary S. Sayler, John Sanseverino, Kimberly L. Davis (eds.)
Demanding situations and possibilities within the zone of Environmental Biotechnology; G.S. Sayler.Advances in Sustainable Biotechnology: worldwide developments Affecting eco-friendly expertise; D. Miller. eco-friendly Chemistry: utilizing Enzymes As Benign Substitutes for man made chemical compounds and cruel stipulations in business tactics; G.E. Nedwin.TheState-of-The-Science in Environmental Biotechnology and Remediation: Phytoremediation functions for removal Heavy steel illness from Soil and Water; B.D. Ensley, et al. The function of Microbial PCB Dechlorination in normal recovery and Bioremediation; D.L. Bedard,H.M. Van Dort.Environmental Biotechnology at domestic and Abroad: Environmental Biotechnology matters within the usa Federal govt; D.J. Grimes.Environmental tracking, possibility research, andApplications to Bioremediation: Environmentally applicable Endpoints: The clinical method of Clean-Up degrees; D. Ritter.Advances inWastewater therapy Technology: Biotreatability Kinetics: A severe part within the Scale-Up of Wastewater remedy platforms; C.P.L.Grady, Jr., et al.Summary: Biotechnology within the Sustainable setting: A evaluation; J.J. Gauthier. 23 extra Artricles. Index.
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Additional info for Biotechnology in the Sustainable Environment
1995. , 1996. A Down-to-Earth Approach to Clean Production, Technology Review, January/February, 48-54. IIIman, D. , 1994. Environmentally Benign Chemistry Aims for Processes that Don't Pollute, Chemical & Engineering News, September 5: 22-27. , Klungness. 1.. , 1994. , 1995. Enzymatic Activation of the Middle Lamella-Lignin of Wood Fibres as a Means for the Production of Binder-Free Fibre Boards. The 6th International Conference on Biotechnology in the Pulp and Paper Industry, Vienna, Austria.
Kulla, H. , Ludeke. , and Leisinger, T.. 1983. Interference of aromatic sulfo groups in microbial degradation of azo dyes Orange I and Orange II, Arch. Microbio!. 135: 1-7. Kulla, H. , Krieg, R .. Zimmermann. , and Leisinger, T.. 1984. Biodegradation of xenobiotics. Experimental evaluation of azo dye-degrading bacteria, in: Current Perspectives in Microbial Ecology (M. J. Klug and C. A. l, American Society for Microbiology, Washington DC. pp. 663-667. Lin, G. H. Y. and Solodar W. , 1988. Structure activity relationship studies on the mutagenicity of some azo dyes in the Salmonella/microsome assay, Mutagenesis 3:311-315.
Plenum Press, New York, 1997 33 34 A. Paszczynski et al. Ames mutagenicity test indicated that the heteroatoms N, 0, S increased mutagenicity, while decreased mutagenic potential was shown after increasing the size of the dye molecule. A recent review of the literature regarding the toxicity and mutagenicity of azo dyes (Brown and de Vito, 1993) concluded that azo dyes are toxic and carcinogenic only after reduction and cleavage to aromatic amines. After oxidation to reactive species, the aromatic amines can bind to DNA.