Modeling A Field Application Of In Situ Bioremediation Of Perchlorate Contaminated Groundwater Using Horizontal Flow Treatment Wells Hftws

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Modeling a Field Application of in Situ Bioremediation of Perchlorate- Contaminated Groundwater Using Horizontal Flow Treatment Wells (HFTWs)

Modeling a Field Application of in Situ Bioremediation of Perchlorate- Contaminated Groundwater Using Horizontal Flow Treatment Wells (HFTWs)
Author :
Publisher :
Total Pages : 193
Release :
ISBN-10 : 1423518594
ISBN-13 : 9781423518594
Rating : 4/5 (594 Downloads)

Book Synopsis Modeling a Field Application of in Situ Bioremediation of Perchlorate- Contaminated Groundwater Using Horizontal Flow Treatment Wells (HFTWs) by : Peter G. Chosa

Download or read book Modeling a Field Application of in Situ Bioremediation of Perchlorate- Contaminated Groundwater Using Horizontal Flow Treatment Wells (HFTWs) written by Peter G. Chosa and published by . This book was released on 2004-03-01 with total page 193 pages. Available in PDF, EPUB and Kindle. Book excerpt: Perchlorate contaminated groundwater is rapidly becoming a significant environmental remediation issue for the Department of Defense. In this study, an existing numerical model that simulates the operation of a Horizontal Flow Treatment Well (HFTW) system to effect the in situ biodegradation of perchlorate through the addition of an electron donor is modified to include a submodel that describes bioclogging. Bioclogging restricts flow out of the HFTW due to the accumulation of biomass directly adjacent to the well. The modified model is then applied to an existing perchlorate contaminated site that will be used for an evaluation of the HFTW technology. Simulations were conducted to determine the impact of altering various engineered parameters on HFTW performance. Simulation results indicate that higher time averaged electron donor concentrations and HFTW pumping rates lead to more perchlorate degradation in terms of total mass of perchlorate removed. Simulation results also indicate that varying the electron donor addition schedule has little impact on HFTW performance. The simulations conducted in this study show that, regardless of the engineered parameter values, bioclogging does not impact the ability of the HFTW technology to effect in situ biodegradation of perchlorate at the evaluation site.


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