Environmental Engineering Reference
In-Depth Information
8. Davis P.B. (2001) Cystic fibrosis. Pediatr. Rev. , 22, 257-264.
9. Bishop P. (1997) Biofilm structure and kinetics. Water. Sci. Technol. , 36, 287-294.
10. Cunnigham A.B., Sharp R.R., Hiebert R., and James G. (2003) Subsurface biofilm barriers for
the containment and remediation of contaminated groundwater. Bioremediat. J. , 7, 151-164.
11. Wang W., Zhang X., and Wang D. (2002) Adsorption of p-cholorophenol by biofilm
components. Wa t e r R e s ., 36, 551-560.
12. Piatt J.J., Backhus D.A., Capel P.D., and Eisenreich S.J. (1996) Temperature-dependent sorp-
tion of naphthalene, phenanthrene, and pyrene to low organic carbon aquifer sediments.
Environ. Sci. Technol. , 30, 751-760.
13. Holmén B.A. and Gschwend P.M. (1997) Estimating sorption rates of hydrophobic organic
compounds in iron oxide- and aluminosilicate clay-coated aquifer sands. Environ. Sci.
Technol. , 31, 105-113.
14. Eriksson M., Dalhammar G., and Mohn W.W. (2002) Bacterial growth and biofilm production
on pyrene. FEMS Microbiol. Ecol. , 40, 21-27.
15. Rodrigues A.C., Wurtz S., Brito A.G. and Melo L.F. (2005) Fluorene and phenanthene uptake
by Psedomonas putida ATCC 17514: kinetics and physiological aspect. Biotechnol. Bioeng .,
90, 281-289.
16. Seo Y. and Bishop P.L. (2007) The influence of nonionic surfactant on attached biofilm for-
mation and phenanthrene bioavailablity during simulated surfactant enhanced bioremediation.
Environ. Sci. Technol. , 41, 7107-7113.
17. Lamarche P., Lauzon F., Tetreault M., and Barker J.F. (2001) Biodegradation of naphthalene
plume in a funnel-and-gate system. In: Bioaugmentation, Biobarriers, and Biogeochemistry ,
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95-103.
18. Kao C.M., Chen S.C., and Liu J.K. (2001) Development of a biobarrier for the remediation of
PCE-contaminated aquifer. Chemosphere , 43, 1071-1078.
19. Miller K.D. and Johnson P.C., and Bruce C.L. (2001) Full-scale in-situ biobarrier demonstra-
tion for containment and treatment of MTBE. Remediation , Winter, 12(1), 25-36.
20. Amann R.I. (1995) Fluorescently labelled, rRNA-targeted oligonucleotide probes in the study
of microbial ecology. Mol. Ecol. , 4, 543-554.
21. Zhang T. and Bishop P. (1994) Experimental determination of the dissolved oxygen boundary
layer and mass transfer resistance near the fluid-biofilm interface. Water Sci. Technol. , 30(11),
47-58.
22. Zhang T.C., Fu Y.C., Bishop P.L., Kupferl M., FitzGerald S., Jiang H.H., and Harmer C.
(1995) Transport and biodegradation of toxic organics in biofilms. J. Hazard. Mater. , 41,
267-285.
23. Revsbech N.P. (1989) An oxygen microsensor with a guard cathode. Limnol. Oceanogr. , 34,
474-478.
24. De Beer D., Van den Heuvel J.C., and Ottengraf S.P. (1993) Microelectrode measurements
of the activity distribution in nitrifying bacterial aggregates. Appl. Environ. Microbiol. , 59(2),
573-579.
25. Kuhl M., and Jírgensen B.B. (1992) Microsensor measurements of sulfate reduction and
sulfide oxidation in compact microbial communities of aerobic biofilms. Appl. Environ.
Microbiol. , 58, 1164-1174.
26. Yu T. and Bishop P. (1998) Stratification of microbial metabolic processes and redox potential
change in sulfate-reducing biofilms studied using oxygen, sulfide, pH and redox potential
microelectrodes. Water Sci. Technol. , 37(4-5), 195-198.
27. Lissner J., Mendelssohn I.A., and Anastasiou C.J. (2003) A method for cultivating plants
under controlled redox intensities in hydroponics. Aquat. Bot. , 76, 93-108.
28. Lee W. H., Seo Y., Bishop P.L. (2009) Cobalt-based phosphate microelectrode for in-situ
environmental analysis. Sens. Actuators B. , 137(1), 121-128.
29. Naidu R., Sumner M.E., and Harter R.D. (1998) Sorption of heavy metals in strongly
weathered soils: an overview. Environ. Geochem. Health , 20, 5-9.
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