Arsenic, Selenium, and Sulfate Removal using an Ethanol-Enhanced Sulfate-Reducing Bioreactor
Tóm tắt
Từ khóa
Tài liệu tham khảo
Adams DJ, Pickett TM (1998) Microbial and cell-free selenium bioreduction in mining waters. In: Frankenberger WT, Engberg RA Jr (eds) Environmental chemistry of selenium. Marcel Dekker, NY, pp 479–499
Ashley RP, Savage KS (2001) Analytical data for waters of the Harvard Open Pit, Jamestown Mine, Tuolumne County, California, March 1998–September 1999. US Geological Survey, Menlo Park, CA, USA, p 15. http://wrgis.wr.usgs.gov/open-file/of01-074/of01-074.pdf
Clesceri LS, Greenberg AE, Eaton AD (1998) Standard methods for the examination of water and wastewater, 20th edn. American Public Health Association, Washington DC, pp 4–176
EPA (2000) Technologies and costs for removal of arsenic from drinking water. EPA 815-R-00-028, p 284. http://www.epa.gov/safewater
EPA (2006) Compost-free bioreactor treatment of acid rock drainage, Leviathan California. National Risk Management Research Laboratory, US EPA, EPA/540/R-06/009, p 93
Fang HHP, Liu Y, Chen T (1997) Effect of sulfate on anaerobic degradation of benzoate in UASB reactors. J Environ Eng 123(4):320–328
Isa ZS, Grusenmeyer S, Verstraete W (1986) Sulfate reduction relative to methane production in high-rate anaerobic digestion: technical aspects. Appl Environ Microbiol 51(3):572–579
Jong T, Parry DL (2003) Removal of sulfate and heavy metals by sulfate-reducing bacteria in short-term bench scale upflow anaerobic packed bed reactor runs. Water Res 37(14):3379–3389
Kaksonen AH, Franzmann PD, Puhakka JA (2004) Effects of hydraulic retention time and sulfide toxicity on ethanol and acetate oxidation in a sulfate-reducing metal-precipitation fluidized-bed reactor. Biotechnol Bioeng 86:332–343
Li YY, Shirley L, Fang HHP (1996) Interactions between methanogenic, sulfate-reducing and syntrophic acetogenic bacteria in the anaerobic degradation of benzoate. Water Res 30(7):1555–1562
Maillacheruvu KY, Parkin GF, Chen YP, Kou WC, Oonge ZI, Lebduschka V (1993) Sulfide toxicity in anaerobic systems fed sulfate and various organics. Water Environ Res 65(2):100–108
Migdisov AA, Williams-Jones AE, Lkkshtanov LZ, Alekhin YV (2002) Estimates of the second dissociation constant of H2S from the surface sulfidation of crystalline sulfur. Geochim Cosmochim Acta 66(10):1713–1726
Miller GC, Hoonhout C, Miller WW, Miller MM (1999) Geochemistry of closed heaps: a rationale for drainage water quality. In: Kosich D, Miller GC (eds) Closure, remediation and management of precious metals heap leach facilities. University of Reno, NV, pp 37–46
Miller GC, Kempton H, Figueroa L, Pantano J (2006) Management and treatment of water from hard rock mines. EPA Engineering Issue, EPA/625/R-06/014
Morel FMM, Hering JG (1993) Principles and applications of aquatic chemistry. Wiley, NY, p 179
MSE Technology Applications Inc (2001) Selenium treatment/removal alternatives demonstration project. Mine waste technology program activity III, Project 20, EPA/600/R-01/077, MSE Technology Applications, Inc., Butte, MT, USA, p 133
Oleszkiewicz JA, Marstaller T, McCartney DM (1989) Effects of pH on sulfide toxicity to anaerobic processes. Environ Technol Lett 10:815–822
Oremland RS, Hollibaugh JT, Maest AS, Presser TS, Miller LG, Culbertson CW (1989) Selenate reduction to elemental selenium by anaerobic bacteria in sediments and culture: biogeochemical significance of a novel, sulfate-independent respiration. Appl Environ Microbiol 55(9):2333–2343
Oude Elferink SJWH, Visser A, Hulshoffpol LW, Stams AJM (1994) Sulfate reduction in methanogenic bioreactors. FEMS Microbiol Rev 15:119–136
Postgate JR (1979) The sulfate-reducing bacteria, 2nd edn. Cambridge University Press, Cambridge, p 26
Seby S, Potin-gautier M, Giffaut E, Borge G, Donard OFX (2001) A critical review of thermodynamic data for selenium species at 25°C. Chem Geol 171(3):173–194
Simonton S, Thomson B, Barton L, Dimsha M (2000) Long term stability of metals immobilized by in-situ bioremediation processes. In: Proceedings of 2000 conference on hazardous waste research, Great Plains/Rocky Mountain Hazardous Waste Research Center, Denver, CO, USA, pp 394–403
Stephens DW, Waddell B (1998) Selenium sources and effects on biota in the Green River Basin of Wyoming, Colorado, and Utah. In: Frankenberger WT, Engberg RA (eds) Environmental chemistry of selenium. Marcel Dekker, NY, pp 183–204
Tsukamoto TK, Killion HA, Miller GC (2004) Column experiment of acid mine drainage: low-temperature, low-pH and matrix investigations. Water Res 38(6):1405–1418
Tucker MD, Barton LL, Thomson BM (1998) Reduction of Cr, Mo, Se and U by Desulfovibrio desulfuricans immobilized in polyacrylamide gels. J Ind Microbiol Biotechnol 20:13–19
Twidwell LG, McCloskey J, Miranda P, Gale M (2000) Technologies and potential technologies for removing selenium from process and mine wastewaters. In: Proceedings of minor elements 2000, SME, Salt Lake City, UT, USA, pp 53–66
Wilkin RT, Wallschlager D, Gord RG (2003) Speciation of arsenic in sulfidic waters. Geochem Trans 4:1–7