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Grantee Research Project Results

Publications Details for Grant Number R826694C703

Enhancement of DNAPL Dissolution Rates by Dechlorinating Anaerobes

RFA: Gulf Coast Hazardous Substance Research Center (Lamar University) (1996)

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Dissertation/Thesis (2)
Journal Article (3)
Presentation (6)
Reference Type Reference Title Journal Author Citation Progress Report Year Document Sources
Dissertation/Thesis Characterization of tetrachloroethylene-dechlorinating bacteria and investigation into their ability to enhance removal rates of tetrachloroethylene-containing nonaqueous phase liquids. None Carr CS Carr CS. Characterization of tetrachloroethylene-dechlorinating bacteria and investigation into their ability to enhance removal rates of tetrachloroethylene-containing nonaqueous phase liquids. Ph.D. Dissertation, Rice University, Houston, TX, 2000. R822721C703 (1999)
R826694C703 (2000)
R826694C703 (Final)
R828598C703 (Final)
not available
Dissertation/Thesis Laboratory evaluation of biologically-enhanced removal of PCE for NAPL source zones. None Cope N Cope N. Laboratory evaluation of biologically-enhanced removal of PCE for NAPL source zones. M.S. Thesis, Rice University, Houston, TX, 2001. R826694C703 (2001)
R826694C703 (Final)
R828598C703 (Final)
not available
Journal Article Effect of dechlorinating bacteria on the longevity and composition of PCE-containing nonaqueous phase liquids under equilibrium dissolution conditions. ENVIRONMENTAL SCIENCE & TECHNOLOGY Carr CS, Garg S, Hughes JB Carr CS, Garg S, Hughes JB. Effect of dechlorinating bacteria on the longevity and composition of PCE-containing nonaqueous phase liquids under equilibrium dissolution conditions. Environmental Science & Technology 2000;34(6):1088-1094. R822721C703 (1999)
R826694C703 (2000)
R826694C703 (Final)
R828598C703 (Final)
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Journal Article Biologically-enhanced removal of PCE from NAPL source zones. ENVIRONMENTAL SCIENCE & TECHNOLOGY Cope N, Hughes JB Cope N, Hughes JB. Biologically-enhanced removal of PCE from NAPL source zones. Environmental Science & Technology 2001;35(10):2014-2021. R826694C703 (2001)
R826694C703 (Final)
R828598C703 (Final)
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Journal Article Influence of hydraulic retention time on extent of PCE dechlorination and preliminary characterization of the enrichment culture. BIOREMEDIATION JOURNAL Zheng D, Carr CS, Hughes JB Zheng D, Carr CS, Hughes JB. Influence of hydraulic retention time on extent of PCE dechlorination and preliminary characterization of the enrichment culture. Bioremediation Journal 2001;5(2):159-168. R826694C703 (Final)
R828598C703 (Final)
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Presentation Bioremediation of DNAPL source zones: laboratory confirmation and field evidence. None Hughes JB Hughes JB. Bioremediation of DNAPL source zones: laboratory confirmation and field evidence. Presented to the Department of Civil and Environmental Engineering, Pennsylvania State University, State College PA, October 2000. R826694C703 (Final)
not available
Presentation DNAPL source zone remediation. None Hughes JB Hughes JB. DNAPL source zone remediation. Presented at the NATO Advanced Study Institute Program on Innovative Approaches to the On-Site Assessment and Remediation of Contaminated Sites, Prague, Czech Republic, May 2001. R826694C703 (2001)
R826694C703 (Final)
not available
Presentation Living on the edge: can we save a few hundred billion dollars? None Hughes JB Hughes JB. Living on the edge: can we save a few hundred billion dollars? Presented at the International Symposium on Biocatalysis and Bioprocessing, University of Iowa, Iowa City, IA, November 2000. R826694C703 (Final)
not available
Presentation The effect of dechlorinating bacteria on PCE-containing NAPL. None Hughes JB Hughes JB. The effect of dechlorinating bacteria on PCE-containing NAPL. Presented at In Situ and On-Site Bioremediation 6th International Symposium, San Diego, CA, June 2001. R826694C703 (2001)
R826694C703 (Final)
not available
Presentation Time is money: how to reduce the cost of our most expensive groundwater problem. None Hughes JB Hughes JB. Time is money: how to reduce the cost of our most expensive groundwater problem. Presented to the Department of Chemical Engineering, Rice University, Houston, TX, October 1999. R826694C703 (Final)
not available
Presentation Ability of dechlorination to influence DNAPL dissolution rates. None Hughes JB. Hughes JB. Ability of dechlorination to influence DNAPL dissolution rates. Presented at the In Situ and On-Site Bioremediation 5th International Symposium, San Diego, CA, April 1999. R826694C703 (Final)
not available

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The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.

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