Download Emerging Technologies in Hazardous Waste Management V by D. William Tedder, Frederick G. Pohland PDF

By D. William Tedder, Frederick G. Pohland

content material: rising applied sciences in detrimental waste administration V : an summary / Frederick G. Pohland and D. William Tedder --
Electrokinetic extraction of chromate from unsaturated soils / Earl D. Mattson and Eric R. Lindgren --
initial effects from the research of thermal results in electrokinetic soil remediation / T.R. Krause and B. Tarman --
Modeling and monetary research of in situ remediation of Cr(VI)-contaminated soil by way of electromigration / Roy F. Thornton and Andrew P. Shapiro --
Numerical simulation of electrokinetic phenomena / Eric R. Lindgren, R.R. Rao, and B.A. Finlayson --
remedy of an anionic steel by way of adsorption on iron oxides / E. Lee Bagby and Charles M. West --
using secondary lead smelters for the reclamation of lead from Superfund websites / Stephen W. Paff and Brian Bosilovich --
restoration of phosphates from elemental phosphorus-bearing wastes / Ronald E. Edwards, Jack M. Sullivan, and Oscar E. Moore --
Vitrification applied sciences for the remedy of infected soil / Laurel J. Staley --
Iron-enriched basalt waste kinds / G.A. Reimann, J.D. Grandy, and G.L. Anderson --
Thermal plasma destruction of unsafe waste with simultaneous construction of necessary coproducts / Q.Y. Han, Q.D. Zhuang, J.V.R. Heberlein, and W. Tormanen --
Plasma-assisted cleansing of flue gasoline from a sooting combustion : case of natural nitrates / A. Czernichowski, Ph. Labbé, F. Laval, and H. Lesueur --
Air-nitric acid harmful oxidation of natural wastes / James R. Smith --
Oxidative and catalytic elimination of hydrogen sulfide from spent caustic liquors via manganese compounds / Bhupendra R. Patel and Philip A. Vella --
Photocatalytic destruction of atrazine utilizing TiO₂ mesh / Kathleen C. Pugh, Douglas J. Kiserow, Jack M. Sullivan, and John H. Grinstead, Jr. --
Bench-scale chemical treatability examine of the Berkeley Pit water / Hsin-Hsiung Huang and Qi Liu --
Chelating extraction of zinc from soil utilizing N-(2-acetamido)iminodiacetic acid / Andrew P. Hong, Ting-Chien Chen, and Robert W. Okey --
stronger elimination of natural contaminants by way of solvent flushing / D.C.M. Augustijn and P.S.C. Rao --
scorching water more suitable remediation of hydrocarbon spills / Eva L. Davis --
Metabolism of alkanes via Rhodococcus erythropolis / John Lofgren, Sandra Haddad, and Kevin Kendall --
selection of bioavailability and biodegradation kinetics of polycyclic fragrant hydrocarbons in soil / Henry H. Tabak, Rakesh Govind, Chao Gao, Lei Lai, Xuesheng Yan, and Steven Pfanstiel --
Uncouplers of oxidative phosphorylation : modeling and predicting their influence on wastewater therapy and the surroundings / Robert W. Okey and H.D. Stensel.

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Winterkorn, H. F. Nat. -Natl. Research Council, Publication No. 359, Highway Research Board, National Research Council, Washington, DC, 1955; No. 108, pp. 1-24. 26. Tarman, B. M. S. Thesis, Lehigh University, Bethlehem, PA, 1992. 27. Campanella, R. ; Mitchell, J. K. J. Soil Mech. Found. Div. E, Am. Soc. Civ. , 1968, 93(SM3), pp. 709-734. 28. Lindgren, E. ; Kozak, M. ; Mattson, E. D. In Proceedings of the Information Exchange Meeting on Waste Retrieval, Treatment, and Processing; U. S. Department of Energy, U.

No determination of chromium speciation was attempted during these initial tests. Results and Discussion Open system. Open system experiments were conducted at three temperatures, 21, 42, and 55 °C, for a period of 7 hours. Three samples were processed at each temperature to indicate the reproducibility of the results. Since chromium is in an anionic form, either C r 0 or C r 0 , under conditions generated by the electrokinetic processing, it will migrate due to the potential difference towards the anode.

Ch004 40 EMERGING TECHNOLOGIES IN HAZARDOUS WASTE MANAGEMENT V Figure 5. Effect of number of electrodes (for 150 V , 2-meter deep contamination, 100 ppm Cr); (a) on remediation time and current, (b) on power, electrolyte flow, temperature rise, and specific energy. Figure 6. Effect of applied voltage (for 5 electrode pairs, 2-meter deep contamination, 100 ppm Cr); (a) on remediation time and current, (b) on power, electrolyte flow, temperature rise, and specific energy. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1995.

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