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Titlebook: Emerging Technologies in Hazardous Waste Management 7; D. William Tedder,Frederick G. Pohland Book 1997 Springer Science+Business Media Ne

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Biotreatment of Minewater-Containing Cyanides by Using Immobilized Cell Technologys analysis also showed that the calcium-alginate immobilized cells of . and . were able to remove metals (Cu, P, Zn, As, Co) present in the minewater except Pb. The present study thus concludes that (a) both cultures were able to degrade the cyanides present in the minewater to CO. and NH.; (b) exhi
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Effect of Sorption on the Microbial Reductive Dechlorination of Soil-Bound Chloroalkenes the required electrons for the reductive dechlorination process. A very small fraction (less than 0.01%) of the total reducing power used for both the methanogenesis and dechlorination processes was actually channeled towards the latter process. The results of this study indicate tha development an
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https://doi.org/10.1057/9780230505889g the activity of the chelator is often needed (Hong.1995). The list of chelating substances is long and there is little information in the literature other than specific test information which will provide guidance to the worker as to the selection of the optimum chelator.
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Mineralization of Hazardous Chemicals by Heme Reactioneme catalyzed reaction. Hazardous compounds such as pentachlorophenol, phenanthrene and benzo[a]pyrene were mineralized 20, 6, and 7%, respectively, with 30 mM heme and 1500 mM H.O., after 24 hr reaction. This catalyzed degradation of organopollutants could be used as a novel technology for hazardous waste remediation.
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