Get Even More Visitors To Your Blog, Upgrade To A Business Listing >>

Refferences




Matthew Otwinowski

Scaling Analysis Of Acid Rock Drainage


REFFERENCES 

[Al] R. Albright, in Proceedings of Acid Mine Drainage Workshop; Environment Canada and Transport Canada, Halifax, NS, p. 146, 1987.

[ApK] R.J. Applegate and M.Kraatz, Rehabilitation of Rum Jungle Mine, Proc. MEND Conf, Montreal 1991.

[Ar] R. Aris, A Mathematical Theory of Reacting and Diffusing Systems,Wiley 1981.

[BaZ] G.I. Barenblatt and Y.B. Zeldovich, "A. Rev. Fluid Mech.", 4, 285 (1972).

[BaO] J.E. Bailey and D.F. Ollis, Biochemical engineering fundamentals, McGraw-Hill, New York 1986.

[Be] T. Beer, Applied Environmetrics Hydrological Tables, Applied Environmetrics, Victoria, Australia, 1991.

[BeK] B.B. Benson and D. Krouse, Jr., The concentration and isotopic fractionation of gases dissolved in fresh water in equilibrium with the atmosphere, I Oxygen, "Limnol. Oceanog.", 25, 662 (1980).

[BeP] J.W. Bennet and G. Pantelis, Construction of a waste rock dump to minimise acid mine drainage a case study, Proc. MEND Conf., Montreal 1991.

[BeR] J.W. Bennett and A.I.M. Ritchie, Measurements of the transport of oxygen into two rehabilitated waste rock dumps, Proc. MEND Conf., Montreal 1991.

[BoB] F.C. Boogerd, C. van denBeemd, T. Stoelwinder, P.Bos and J.G. Kuenen, Relative contributions of biological and chemical reactions to the overall rate of pyrite oxidation at temperatures between 30°C and 70°C, "Biotechnology and Bioengineering", 38, 109 (1991).

[BrC] British Columbia Acid Mine Drainage Task Force, Acid Rock Drainage Technical Guide, BC AMD Task Force Report, 1989.

[CaG] F.T. Carruccio, G. Geidel and M. Pelletier, "J. Energy (Amer. Soc. Civil Engineers)", 107, (1981).

[CaW] M.C. Campbell, D. Wadden, A. Marchbank, R.G.L. McCready and G. Ferroni, In-place leaching of uranium at Denison Mines Ltd., Proc. IAEA Meeting, Vienna 1985.

[CdO] J. Chadam and P. Ortoleva, "Earth Science Review", 29, 175 (1990).

[Ch] F. Chaiken, private communication (1992).

[ChB] K. Ye Cheng and P.L. Bishop, "J. Air&Waste Manage. Assoc.", 42, 164 (1992).

[Co] W.R. Cowan, "Hazardous Mat.Mgmt.", 3, 12 (1991).

[CoR1] Coastech Research, Investigation of Prediction Techniques for Acid Mine Drainage, MEND Project, West Vancouver, BC, Canada, 1989.

[CoR2] Coastech Research, Acid Rock Drainage Prediction Manual: A manual of Chemical Evaluation Procedures for the prediction of Acid Generation from Mine Wastes, Mend Project, North Vancouver, BC, Canada 1990.

[Da] S. Day, Long term kinetic acid generation studies. Cinola project, B.C. AMD Task Force, 1993.

[DaR1] G.B. Davis and A.I.M. Ritchie, A model of oxidation in pyritic mine wastes: part 1: equations and approximate solutions, "Appl. Math. Modelling", 10, 314 (1986).

[DaR2] G.B. Davis and A.I.M. Ritchie, A model of oxidation in pyritic mine wastes: part 2: comparison of numerical and approximate solutions, "Appl. Math. Modelling", 10, 323 (1986).

[DaR3] G.B. Davis and A.I.M. Ritchie, A model of oxidation in pyritic mine wastes: part 3: importance of particle size distribution, "Appl. Math. Modelling", 11, 417 (1987).

[DrA] D.W. Drott and R. Aris, Communications on the theory of diffusion and reaction-I A complete parametric study of the first-order, irreversible exothermic reaction in a flat slab of catalyst, "Chem. Engng. Sci.", 24, 541, (1969).

[DuB] D.W. Duncan and A. Bruynsteyn, Determination of the Acid Production Potential of Waste Materials, Metallurgical Society of AIME Annual Meeting, New Orleans (1979).

[DuD] J.G. Dunn, G.C. De and P.G. Fernandez, The effect of experimental variables on the multiple peaking phenomenon observed during the oxidation of pyrite, "Thermochimica Acta", 135, 267 (1988).

[ErH] P.M. Erickson, R.W. Hammack and R.L.P. Kleinman, Prediction of acid drainage potential in advance of mining, in Control of Acid Mine Drainage, USBM IC 9027.

[Es] H. Ese, Acidic mine drainage from the Killingdal Mine Norway, Proc. MEND Conf., Montreal 1991.

[Fe] K.D. Ferguson, Static and Kinetic Methods to Predict Acid Mine Drainage, Env. Canada, 1985.

[FeE] K.D. Ferguson and P.M. Erickson, Approaching the AMD Problem-from Prediction and early Detection, In. Proc. Int. Conf, on Control of Environmental Problems from Metal Mines, 1988, Roros, Norway.

[FeE1] K.D. Ferguson and P.M. Erickson, Will It Generate Acid? An Overview of Methods to Predict Acid Mine Drainage.

[FeMe] K.D. Ferguson and P.E. Mehling, Acid Mine Drainage in B.C. The Problem and Search for Solutions, Environment Canada, 1986.

[FeM] K.D. Ferguson and K.A. Morin, The prediction of Acid Rock Drainage - Lesson from the Database, Environment Canada Report, 1992.

[Ga] D.M. Galbraith, The mount Washington acid mine drainage reclamation project, Proc. MEND Conf., Montreal 1991.

[Ge] P. Gelinas and R. Guay, Acid Mine Drainage Generation from a Waste Rock Dump and Evaluation of Dry Covers Using Natural Minerals: La Mine Doyon Case Study, MEND Report (1990).

[Ge] P. Gelinas, private communication (1993).

[Go] B. Godin, private communication.

[Gol] M B. Goldhaber, Experimental study of metastable sulpfur oxyanion formation during pyrite oxidation, "Am. J. Sci.", 283, 193 (1983).

[Ha] Sophie Bierens de Haan, A review of the rate of pyrite oxidation in aqueous systems at low temperature, "Earth-Science Reviews", 31, 1, (1991).

[HoS] George R. Holdren, Jr. and Patricia M. Speyer, Reaction rate - surface area relationships during the early stages of weathering - I. Initial observations, "Geochimica et Cosmochimica Acta", 49, 675 (1985).

[HwS] C.C. Hwang, R.C. Streeter, R.K. Young and Y.T. Shah, Kinetics of the ozonation of pyrite in aqueous suspension, "Fuel", 66, 1574 (1987).

[KeW1] G.H. Kelsall and R.A. Williams, Electrochemical behavior of ferrosilicides FexSi) in Neutral Alkaline Aqueous Electrolytes. I. Thermodynamics of Fe-Si-H2O systems at 298 K, "J. Electrochem. Soc.", 138, 941 (1991).

[KoB] A. Kok, N. Bolt and J.H.N. Jergersma, "KEMA Sci.&Tech. Reports", 7, 63 (1989).

[Kw] Y.T.J. Kwong, Acid generation in waste rock as exemplified by the Mount Washingtonminesite, B.C., Canada, Proc. MEND Conf., Montreal 1991.

[Las] Antonio C. Lasaga, Chemical Kinetics of Water-Rock Interactions, "Journal of Geophysical Research", 89, 4009, (1984).

[LawR] R.W. Lawrence, G.M. Ritcey, G.W. Poling, P.B. Marchant, Strategies for the Prediction of Acid Mine Drainage, Proceedings of the 13 th Mine Reclamation Symposium, Ministry of Energy, Mines and Petroleum Resources; Victoria, 1989.

[LeW] J.H. Levy and T.J. White, The reaction ofpyrite with water vapour, "Fuel", 67, 1336 (1988).

[LGI] R. Lefebvre, P. Gelinas and D. Isabel, Heat transfer during acid mine drainage production in a waste rock dump, La Mine Doyon (Quebec), MEND Report 1.14.2.

[Low] Richard T. Lowson, Aqueous Oxidation of Pyrite by Molecular oxygen, "Chemical Reviews", 82, 461 (1982).

[Lu] George W. Luther III, Pyrite oxidation and reduction: Molecular orbital theory considerations, "Geochimica et Cosmochimica Acta", 51, 3193 (1987).

[LuF] G.W. Luther III, T.G. Ferdelman, J.E. Kostka, E.J. Tsamakis and T.M. Church, Temporal and spatial variability of reducedulpfur species andporewater parameters in salt marsh sediments, "Biogeochemistry", 14, 57 (1991).

[MaR1] C.T. Mathews and R.G. Robins, "Australais. Ins. Mining Metall", 242, 47 (1972).

[MaR2] C.T. Mathews and R.G. Robins, "Aust. Chem. Eng.", 15, 19 (1975).

[MaR3] C.T. Mathews and R.G. Robins, "Aust. Chem. Eng.", 13, 129 (1972).

[McC] R. McCandless, private communication, 1993.

[McK] Michael A. McKibben and Hubert L. Barnes, Oxidation of pyrite in low temperature acidic solutions: Rate laws and surface textures, "Geochimica et Cosmochimica Acta", 50, 1509-20 (1986).

[MiS] F.J. Millero, S. Sotolongo and M. Izaguirre, The oxidation kinetics of Fe(II) in Seawater, "Geochimica et Cosmochimica Acta", 51, 793-801 (1987).

[MoJ] K.A. Morin, E. Gerencher, C.E. Jones, D. Konasewich and J.R. Harries, Critical literature review of acid drainage from waste-rock, Nothwest Geochem, 1990.

[MoM] John W. Morse, Frank J. Millero, Jeffrey C. Cornwell and D. Rickard, The chemistry of the Hydrogen Sulfide and Iron Sulfide Systems inatural Waters, "Earth-Science Review", 24, 1 (1987).

[MsH] Carl O. Moses, Alan T. Herlihy, Janet. S. Herman and Aaron L. Molls, Ion-chromatographic analysis of mixtures of ferrous and ferric iron, "Talanta", 35, 15 (1988).

[MsH] Carl O. Moses and Janet S. Herman, Homogeneous Oxidation Kinetics of Aqueous Ferrous Iron at circumneutral pH, "Journal of Solution Chemistry", 18, 705 (1989).

[MsH] Carl O. Moses and Janet S. Herman, Pyrite oxidation at circumneutral pH, "Geochimica et Cosmochimica Acta", 55, 471 (1991).

[MsN] Carl O. Moses, D. Kirk Nordstrom, Janet S. Herman and Aaron L. Mills, Aqueous pyrite oxidation by dissolved oxygen and by ferric iron, "Geochimica et Cosmochimica Acta", 51, 1561 (1987).

[Ni] R.V. Nicholson, private communication (1993).

[NiG] Ronald V. Nicholson, Robert W. Gillham and Eric J. Reardon, Pyrite oxidation in carbonate-buffered solution: 1. Experimental kinetics, "Geochimica et Cosmochimica Acta", 52, 1077 (1988).

[NiG] Ronald V. Nicholson, Robert W. Gillham and Eric J. Reardon, Pyrite oxidation in carbonate-buffered solution: 2. Rate control by oxide coatings, "Geochimica et Cosmochimica Acta", 54, 395 (1990).

[NiP] G. Nicolis and I. Prigogine, Self-Organization in Nonequilibrium Systems, Wiley, 1977.

[NiS] R.V. Nicholson and J.M. Scharer, Laboratory Studies of Pyrrhotite Oxidation Kinetics, preprint.

[No] D.K. Nordstrom, Aqueous pyrite oxidation and the consequent formation of secondary iron minerals in Acid sulfate wearhering: pedogeochemistry and relationship to manipulation of soil materials, Soil Science Soc. Amer. Press, Madison, 1982.

[NoD] Nolan, Davis and Associates, Heath Steele Waste Rock Study, MEND Report 2.23.1a, 1992.

[NoJ] D.K. Nordstrom, E.A. Jenne and J.W. Ball, Redox equilibria of iron in acid mine waters, "ACS Symposium Series", 93, 51-59 (1979).

[Ot1] M. Otwinowski, A thermodynamic model for the spontaneous heating and combustion of coal. I: Elementary exothermic processes, "Fuel", submitted; also Alberta Energy Report, Edmonton 1991.

[Ot2] M. Otwinowski, A thermodynamic model for the spontaneous heating and combustion of coal. II. Reaction-diffusion model, "Fuel", submitted; also Alberta Energy Report, Edmonton 1991.

[Ot3] M. Otwinowski, Static and Dynamic Patterns in Equilibrium and Nonequilibrium Systems in Nonlinear Structures in Physical Systems, Chaos Pattern formation and Waves, Springer, 1990.

[OtL1] M. Otwinowski, W.G. Laidlaw and R. Paul, Structural instability of the Brusselator model with reversible chemical reactions, "Can. J. Phys.", 68, 743 (1990).

[OtL2] M. Otwinowski, W.G. Laidlaw and R. Paul, Explicit solutions to a class of nonlinear diffusion equations, "Phys. Lett.", 124, 149 (1988).

[PaR] G. Pantelis and A.I.M. Ritchie, Macroscopic transport mechanisms as a rate-limiting factor in dump leaching of pyrite ores, "Appl. Math. Modellings", 15, 136 (1991).

[PrL] I. Prigogine and R. Lefevre, "J. Chem. Phys.", 48, 1695 (1968).

[PrT] William A. Pryor and Umberto Tonnellato, Nucleophilic Displacements at Sulfur. III. The Exchange of Oxygen-18 between Sodium Thiosulfate O-18 and Water, "Journal of the American Chemical Society", 89, 3379 (1967).

[Res] Rescan Env. Services Ltd., Kutcho Creek project. Acid generation testwork, Report, 1990, Vancouver, Canada.

[ScG] J.M. Scharer, V. Garga, R. Smith and B.E. Halbert, Use of Steady-State Models for Assessing Acid Generation in Pyritic Mine Tailingsin Proceedings of the 2nd International Conference on Abatement, Montreal, p. 211, Tome 2, 1991.

[Sch] A. Schmal; Ph.D. Theses, Utrecht, 1983.

[ScD] A. Schmal, J.H. Duyzer and J.W. van Heuven, "Fuel", 64, 1969 (1985).

[Se] Senes Consultants, Description of RATAP. BMT3 Component Modules, Report, 1991.

[SiS] P.C. Singer and W. Stumm, Acidic Mine Drainage: The Rate Determining Step, "Science", 167, 1121 (1970).

[SnL] G.A. Singleton and L.M. Lavkulich, "Soil Science", 42, 984 (1978). 

[SoS] A.A. Sobek, W.A. Schuller, J.R. Freeman and R.M. Smith; US EPA Report; EPA 600/2-78-054, 1978.

[St] W. Stumm ed., Aquatic Chemical Kinetics. Reaction Rates of Processes in Natural Waters, Wiley, 1991.

[StL1] W. Stumm and G.F. Lee, "Schwei. Z. Hydrol.", 22, 295 (1960).

[StL2] W. Stumm and G.F. Lee, "Ind. Eng. Chem.", 53, 143 (1961).

[StM] W. Stumm and J.J. Morgan, Aquatic Chemistry. An introduction Emphasizing Equilibria in Natural Waters, Wiley, 1986.

[Sul] P.J. Sullivan and A.A. Sobek, Minerals and the Environment, 4, 9 (1982).

[SyT] Synergetic Technology, Quantitative Analysis of Chemical and Biological Kinetics for the Acid Mine Drainage Problem, MEND Report (1993).

[TaW2] B.E. Taylor and M.C. Wheeler and D.K. Nordstrom, Stable isotope geochemistry of acid mine drainage: Experimental oxidation of pyrite, "Geochimica et Cosmochimica Acta", 48, 2669 (1984).

[WaK] E.I. Wallick, H.R. Krouse and A. Shakur, Environmental isotopes: principles and applications in ground water geochemical studies in Alberta, Canada, in First Can. Conf. on Hydrology, 1984.

[We] Bernhard Wehrli, Redox reactions of metal ions at mineral surfaces, in Aquatic Chemical Kinetics W. Stumm ed., Willey, 1990.

[WhJ] W.W. White III and T.H. Jeffers, Chemical predictive modelling of acid mine drainage from metallic sulfide-bearing waste rock, U.S. Department of Interior, Bureau of Mines, 1992.

[WiR] C.L. Wiersma and J.D. Rimstidt, Rates of reaction of pyrite and marcasite with ferric iron at pH 2, "Geochimica et Cosmochimica Acta", 48, 85 (1984).

[YaW] E.K. Yanful, K.G. Wheeland, C. Luc and N. Kuyucak, Overview of Noranda Research on Prevention and Control of Acid Mine Drainage, Environmental Workshop 1991, Australian Mining Industry Council.

[ZiM] Z.D. Zivkovic, N. Molosavljevic and J. Sestak, Kinetics and Mechanism of Pyrite Oxidation, "Thermochimica Acta", 157, 215 (1990).






This post first appeared on Maciej Otwinowski - Synergetic Technology, please read the originial post: here

Subscribe to Maciej Otwinowski - Synergetic Technology

Get updates delivered right to your inbox!

Thank you for your subscription

×