Biotechnology

Biotechnology for Waste Management and Site Restoration: by J. H. Wolfram (auth.), C. Ronneau, O. Bitchaeva (eds.)

By J. H. Wolfram (auth.), C. Ronneau, O. Bitchaeva (eds.)

Biotechnology for Waste administration and placement Restoration covers: waste administration - good, gaseous, liquid; web site recovery - radioactivity, organics, poisonous metals; academic, financial, social and enterprise facets; and overseas collaboration.
foreign collaboration is transforming into apace and lots of concrete tasks were begun. The physique of data is transforming into. Over the long run, it truly is envisaged that this overseas collaboration will bring about a long term clinical and technological approach, new applied sciences and substitute strategies, and functional implementations of biotechnology for the nuclear and business sectors of the economy.

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Extra info for Biotechnology for Waste Management and Site Restoration: Technological, Educational, Business, Political Aspects

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11 Disease Control to maintain a registry of persons exposed to toxic substances near some contaminated land remediation sites and to conduct psychological impact investigations, among other tests (Anderson. 1987). The public is often alarmed and upset that their fears and health concerns do not receive sufficient attention by public officials. When there is discussion of contaminated land and remediation techniques, citizen activists often conduct surveys of local neighborhoods that attempt to identify any concentrations of unexplained disease that may be the result of exposure to toxins from the contaminated land.

1991). Bioremediation of metal-contaminated surface and groundwaters, Geomicrobiology Journal 8, 201-223. , Taghavi, S. and Leysen, R. (1993) Immohilization of bacteria in composite membranes and development of tubular membrane reactors for heavy metal recuperation, in T. ), New 28 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15. 16. 17. 18. 19. 20. Perspeclives. Effective Membrane Processes. Kluwer Academic Publishers. Dordrechl. Ehrlich. L. (1990) Geomicrobiology. Marcel Dekker, New York. Francis. I. (1982) Microbial transformation of low-level radioactive waste.

L. (1990) Geomicrobiology. Marcel Dekker, New York. Francis. I. (1982) Microbial transformation of low-level radioactive waste. in Environmental Migration of Long-lived Radionuclides. IAEA-SM-257/72. 415. Francis. 1. (1990) Microbial dissolution and stabilization of toxic metals and radionuclides in mixed wastes, Expericnlia 46. 840-851. J. (1994) Microbial transformations of radioactive wastcs and environmental restoration through bioremediation. Journal of IIlloys and Compounds 213/214, 226-231.

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