-
1
-
-
31544474867
-
Heavy metal removal mechanism of acid mine drainage in wetlands: a critical view
-
Sheoran A.S., and Sheoran V. Heavy metal removal mechanism of acid mine drainage in wetlands: a critical view. Miner. Eng. 19 (2006) 105-116
-
(2006)
Miner. Eng.
, vol.19
, pp. 105-116
-
-
Sheoran, A.S.1
Sheoran, V.2
-
2
-
-
0034997171
-
Microbial community composition and ecology of an acidic aquatic environment: the Tinto river, Spain
-
López-Archilla A.I., Marín I., and Amils R. Microbial community composition and ecology of an acidic aquatic environment: the Tinto river, Spain. Microb. Ecol. 41 (2001) 20-35
-
(2001)
Microb. Ecol.
, vol.41
, pp. 20-35
-
-
López-Archilla, A.I.1
Marín, I.2
Amils, R.3
-
4
-
-
0025962432
-
Pilot plant studies on biological sulphate removal from industrial effluent
-
Maree J.P., Hulse G., Dods D., and Schutte C.E. Pilot plant studies on biological sulphate removal from industrial effluent. Water Sci. Technol. 23 (1991) 1293-1300
-
(1991)
Water Sci. Technol.
, vol.23
, pp. 1293-1300
-
-
Maree, J.P.1
Hulse, G.2
Dods, D.3
Schutte, C.E.4
-
5
-
-
0026911032
-
Treatment of metal-contaminated water using bacterial sulfate reduction: results from pilot-scale reactors
-
Dvorak D.H., Hedin R.S., Edenborn H.M., and McIntire P.E. Treatment of metal-contaminated water using bacterial sulfate reduction: results from pilot-scale reactors. Biotechnol. Bioeng. 40 (1992) 609-616
-
(1992)
Biotechnol. Bioeng.
, vol.40
, pp. 609-616
-
-
Dvorak, D.H.1
Hedin, R.S.2
Edenborn, H.M.3
McIntire, P.E.4
-
7
-
-
0001228577
-
Biological treatment of acid mine drainage under sulphate reducing conditions with solid waste materials as substrate
-
Chang I.S., Shin P.K., and Kim B.H. Biological treatment of acid mine drainage under sulphate reducing conditions with solid waste materials as substrate. Water Res. 34 (2000) 1269-1277
-
(2000)
Water Res.
, vol.34
, pp. 1269-1277
-
-
Chang, I.S.1
Shin, P.K.2
Kim, B.H.3
-
8
-
-
0038049889
-
Removal of sulfate and heavy metals by sulfate reducing bacteria in short-term bench scale upflow anaerobic packed bed reactor runs
-
Jong T., and Parry D.L. Removal of sulfate and heavy metals by sulfate reducing bacteria in short-term bench scale upflow anaerobic packed bed reactor runs. Water Res. 37 (2003) 3379-3389
-
(2003)
Water Res.
, vol.37
, pp. 3379-3389
-
-
Jong, T.1
Parry, D.L.2
-
10
-
-
2942587154
-
Precipitation of mixed metal residues from wastewater utilising biogenic sulphide
-
Bhagat M., Burges J.E., Antunes P.B., Whiteley C.G., and Duncan J.R. Precipitation of mixed metal residues from wastewater utilising biogenic sulphide. Miner. Eng. 17 (2004) 925-932
-
(2004)
Miner. Eng.
, vol.17
, pp. 925-932
-
-
Bhagat, M.1
Burges, J.E.2
Antunes, P.B.3
Whiteley, C.G.4
Duncan, J.R.5
-
11
-
-
2942691762
-
Tannery effluent as a carbon source for biological sulphate reduction
-
Boshoff G., Duncan J., and Rose P.D. Tannery effluent as a carbon source for biological sulphate reduction. Water Res. 38 (2004) 2651-2658
-
(2004)
Water Res.
, vol.38
, pp. 2651-2658
-
-
Boshoff, G.1
Duncan, J.2
Rose, P.D.3
-
12
-
-
33646110266
-
Use of microbes for cost reduction of metal removal from metals and mining industry waste streams
-
Cohen R.R.H. Use of microbes for cost reduction of metal removal from metals and mining industry waste streams. J. Clean. Prod. 14 (2006) 1146-1157
-
(2006)
J. Clean. Prod.
, vol.14
, pp. 1146-1157
-
-
Cohen, R.R.H.1
-
13
-
-
33746369759
-
Immobilization of heavy metals in the saturated zone by sorption and in situ bioprecipitation process
-
Van Roy S.V., Vanbroekhoven K., Dehonghe W., and Diles L. Immobilization of heavy metals in the saturated zone by sorption and in situ bioprecipitation process. Hydrometallurgy 83 (2006) 195-203
-
(2006)
Hydrometallurgy
, vol.83
, pp. 195-203
-
-
Van Roy, S.V.1
Vanbroekhoven, K.2
Dehonghe, W.3
Diles, L.4
-
14
-
-
33846205229
-
Zinc precipitation by heavy-metal tolerant sulfate-reducing bacteria enriched on phosphogysum as sulfate source
-
Azabou S., Mechichi T., and Sayadi S. Zinc precipitation by heavy-metal tolerant sulfate-reducing bacteria enriched on phosphogysum as sulfate source. Miner. Eng. 20 (2007) 173-178
-
(2007)
Miner. Eng.
, vol.20
, pp. 173-178
-
-
Azabou, S.1
Mechichi, T.2
Sayadi, S.3
-
15
-
-
34047121738
-
Effect of sulfate reduction activity on biological treatment of hexavalent chromium [Cr(VI)] contaminated electroplating wastewater under sulfate-rich condition
-
Chang I.S., and Kim B.H. Effect of sulfate reduction activity on biological treatment of hexavalent chromium [Cr(VI)] contaminated electroplating wastewater under sulfate-rich condition. Chemosphere 68 (2007) 218-226
-
(2007)
Chemosphere
, vol.68
, pp. 218-226
-
-
Chang, I.S.1
Kim, B.H.2
-
17
-
-
0026658392
-
The removal of nickel from mine waters using bacterial sulfate reduction
-
Hammack R.W., and Edenborn H.M. The removal of nickel from mine waters using bacterial sulfate reduction. Appl. Microbiol. Biotechnol. 37 (1992) 674-678
-
(1992)
Appl. Microbiol. Biotechnol.
, vol.37
, pp. 674-678
-
-
Hammack, R.W.1
Edenborn, H.M.2
-
18
-
-
0033485876
-
Treatment of metal-contaminated wastes: why select a biological process?
-
Eccles H. Treatment of metal-contaminated wastes: why select a biological process?. TIBTECH Biotopic 17 (1999) 462-465
-
(1999)
TIBTECH Biotopic
, vol.17
, pp. 462-465
-
-
Eccles, H.1
-
19
-
-
0034213091
-
Kinetic and process considerations on biological reduction of soluble and scarcely soluble sulfates
-
Ghigliazza R., Lodi A., and Rovatti M. Kinetic and process considerations on biological reduction of soluble and scarcely soluble sulfates. Resour. Conserv. Recy. 29 (2000) 181-194
-
(2000)
Resour. Conserv. Recy.
, vol.29
, pp. 181-194
-
-
Ghigliazza, R.1
Lodi, A.2
Rovatti, M.3
-
20
-
-
0030199998
-
Interactions between methanogenic, sulphate-reducing and syntrophic acetogenic bacteria in the anaerobic degradation of benzoate
-
Li Y.Y., Lam S., and Fang H.H.P. Interactions between methanogenic, sulphate-reducing and syntrophic acetogenic bacteria in the anaerobic degradation of benzoate. Water Res. 30 (1996) 1555-1562
-
(1996)
Water Res.
, vol.30
, pp. 1555-1562
-
-
Li, Y.Y.1
Lam, S.2
Fang, H.H.P.3
-
21
-
-
0012088403
-
Effect of ferrous ion availability on growth of a corroding sulfate-reducing bacterium
-
Marchal R., Chaussepied B., and Warzywoda M. Effect of ferrous ion availability on growth of a corroding sulfate-reducing bacterium. Int. Biodeter. Biodegr. 47 (2001) 125-131
-
(2001)
Int. Biodeter. Biodegr.
, vol.47
, pp. 125-131
-
-
Marchal, R.1
Chaussepied, B.2
Warzywoda, M.3
-
22
-
-
0027987891
-
Self-oscillating coexistence of methanogens and sulfate-reducers under hydrogen-sulphide inhibition and the pH-regulating effect
-
Vavilin V.A., Vasiliev V.B., Rytov S.V., and Ponomarev A.V. Self-oscillating coexistence of methanogens and sulfate-reducers under hydrogen-sulphide inhibition and the pH-regulating effect. Bioresour. Technol. 49 (1994) 105-119
-
(1994)
Bioresour. Technol.
, vol.49
, pp. 105-119
-
-
Vavilin, V.A.1
Vasiliev, V.B.2
Rytov, S.V.3
Ponomarev, A.V.4
-
23
-
-
34250365000
-
Hexavalent chromium reduction by Acinetobacter haemolyticus isolated from heavy-metal contaminated wastewater
-
Zakaria Z.A., Zakaria Z., Surif S., and Ahrnad W.A. Hexavalent chromium reduction by Acinetobacter haemolyticus isolated from heavy-metal contaminated wastewater. J. Hazard. Mater. 146 (2007) 30-38
-
(2007)
J. Hazard. Mater.
, vol.146
, pp. 30-38
-
-
Zakaria, Z.A.1
Zakaria, Z.2
Surif, S.3
Ahrnad, W.A.4
-
25
-
-
0033038389
-
A continuous process for the biological treatment of heavy metals contaminated acid mine water
-
Van Hille R.P., Boshoff G.A., Rose P.D., and Duncan J.R. A continuous process for the biological treatment of heavy metals contaminated acid mine water. Resour. Conserv. Recy. 27 (1999) 157-167
-
(1999)
Resour. Conserv. Recy.
, vol.27
, pp. 157-167
-
-
Van Hille, R.P.1
Boshoff, G.A.2
Rose, P.D.3
Duncan, J.R.4
-
26
-
-
0035570929
-
Biological sulphate reduction using molasses as a carbon source
-
Annachhatre A.P., and Suktrakoolvait S. Biological sulphate reduction using molasses as a carbon source. Water Environ. Res. 73 (2001) 118-126
-
(2001)
Water Environ. Res.
, vol.73
, pp. 118-126
-
-
Annachhatre, A.P.1
Suktrakoolvait, S.2
-
27
-
-
0030176784
-
Treatment of acid mine water by sulfate-reducing bacteria: results from a bench scale experiment
-
Christensen B., Laake M., and Lien T. Treatment of acid mine water by sulfate-reducing bacteria: results from a bench scale experiment. Water Res. 30 (1996) 1617-1629
-
(1996)
Water Res.
, vol.30
, pp. 1617-1629
-
-
Christensen, B.1
Laake, M.2
Lien, T.3
-
28
-
-
33646828927
-
Toxic effects of dissolved heavy metals on Desulfovibrio vulgaris and Desulfovibrio sp. strains
-
Cabrera G., Pérez R., Gómez J.M., Ábalos A., and Cantero D. Toxic effects of dissolved heavy metals on Desulfovibrio vulgaris and Desulfovibrio sp. strains. J. Hazard. Mater. 135 (2006) 40-46
-
(2006)
J. Hazard. Mater.
, vol.135
, pp. 40-46
-
-
Cabrera, G.1
Pérez, R.2
Gómez, J.M.3
Ábalos, A.4
Cantero, D.5
-
29
-
-
38349175613
-
Microbial sulphate reduction and metal attenuation in pH 4 acid mine water
-
Article number 10
-
Church C.D., Wilkin R.T., Alpers C.N., Rye R.O., and Blaine R.B. Microbial sulphate reduction and metal attenuation in pH 4 acid mine water. Geochem. Transact. 8 (2007) Article number 10
-
(2007)
Geochem. Transact.
, vol.8
-
-
Church, C.D.1
Wilkin, R.T.2
Alpers, C.N.3
Rye, R.O.4
Blaine, R.B.5
-
30
-
-
0032851601
-
Treatment of acid mine drainage with anaerobic solid-substrate reactors
-
Drury W.J. Treatment of acid mine drainage with anaerobic solid-substrate reactors. Water Environ. Res. 71 (1999) 1244-1250
-
(1999)
Water Environ. Res.
, vol.71
, pp. 1244-1250
-
-
Drury, W.J.1
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