Biomedical Engineering Reference
In-Depth Information
Davis G, Baldwin BR, Peacock AD, Ogles D, White GM, Boyle SL, Raes E, Koenigsberg SS,
Sublette KL. 2008. Integrated approach to PCE-impacted site characterization, manage-
ment, and enhanced bioremediation. Remediat 18:5-17.
Duhamel M, Wehr SD, Yu L, Rizvi H, Seepersad D, Dworatzek S, Cox EE, Dewards EA. 2002.
Comparison of anaerobic dechlorinating enrichment cultures maintained on tetrachlor-
oethene, trichloroethene, cis -dichloroethene and vinyl chloride. Water Res 36:4193-4202.
Ellis DE, Lutz EJ, Odom JM, Buchanan Jr RL, Bartlett CL, Lee MD, Harkness MR, Deweerd
KA. 2000. Bioaugmentation for accelerated in situ anaerobic bioremediation. Environ Sci
Technol 34:2254-2260.
ESTCP (Environmental Security Technology Certification Program). 2003. Cost and Perfor-
mance Report: Reductive Anaerobic Biological In Situ Treatment Technology (RABITT)
Treatability Testing. ESTCP, Arlington, VA, USA. http://www.serdp.org/Program-Areas/
Environmental-Restoration/Contaminated-Groundwater/ER-199719/ER-199719 . Accessed
January 4, 2012.
ESTCP. 2005. Bioaugmentation for Remediation of Chlorinated Solvents: Technology Devel-
opment, Status, and Research Needs. ESTCP, Arlington, VA, USA. http://www.serdp-
estcp.org/Tools-and-Training/Environmental-Restoration/Groundwater-Plume-Treatment .
Accessed January 4, 2012.
ESTCP. 2007. Cost and Performance Report: Demonstration of Bioaugmentation at Kelly AFB,
Texas. Prepared by Geosyntec Consultants. http://www.serdp.org/Program-Areas/Environ-
mental-Restoration/Contaminated-Groundwater/ER-199914/ER-199914 . Accessed January
4, 2012.
Fennel DE, Carroll AB, Gossett JM, Zinder SH. 2001. Assessment of indigenous reductive
dechlorinating potential at a TCE-contaminated site using microcosms, polymerase chain
reaction analysis, and site data. Environ Sci Technol 35:1830-1839.
Ferrey ML, Wilkin RT, Ford RG, Wilson JT. 2004. Nonbiological removal of
cis-dichloroethylene and 1,1-dichloroethylene in aquifer sediment containing magnetite.
Environ Sci Technol 38:1746-1752.
Field JA, Reed RL, Istok JD, Semprini L, Bennett P, Buschek TE. 2005. Trichlorofluoroethene:
A reactive tracer for evaluating reductive dechlorination in large-diameter permeable
columns. Ground Water Monitor Remediat 25:68-77.
Figgins S, Norris B, Goodrich B. 2007. Competitive inhibition of TCE degradation by Freons
present in a regional plume. In Gavaskar AR, Silver CF, eds, Proceedings Ninth Interna-
tional In Situ and On-Site Bioremediation Symposium, Baltimore, MD, USA, May 7-10.
Battelle Memorial Institute, Columbus, OH, USA, Paper No. H-33.
Flynn SJ, Tiedje JM, L¨ffler FE. 2000. Microbial community changes associated with a shift
from reductive dechlorination of PCE to reductive dechlorination of cis -DCE and VC.
Environ Sci Technol 34:1056-1061.
Fogel S, Findlay M, Folsom S, Kozar M. 2009. The importance of pH in reductive dechlorina-
tion of chlorinated solvents. In Wickramanayake GB, Rectanus HV, eds, Proceedings Tenth
International In Situ and On-Site Bioremediation Symposium, Baltimore, MD, USA, May
5-8. Battelle Memorial Institute, Columbus, OH, USA, Paper No. L-47.
Friis AK, Heimann AC, Jakobsen R, Albrechtsen HJ, Cox E, Bjerg PL. 2007. Temperature
dependence of anaerobic TCE-dechlorination in a highly enriched Dehalococcoides -con-
taining culture. Water Res 41:355-364.
Fung JM, Morris RM, Adrian L, Zinder SH. 2007. Expression of reductive dehalogenase genes
in Dehalococcoides ethenogenes strain 195 growing on tetrachloroethene, trichloroethene,
or 2,3-dichlorophenol. Appl Environ Microbiol 73:4439-4445.
Search WWH ::




Custom Search