首页   按字顺浏览 期刊浏览 卷期浏览 In Situ Measurement and Numerical Simulation of Oxygen Limited Biotransformation
In Situ Measurement and Numerical Simulation of Oxygen Limited Biotransformation

 

作者: Robert C. Borden,   Michael D. Lee,   J. Michele Thomas,   Philip B. Bedient,   C. Herbert Ward,  

 

期刊: Groundwater Monitoring&Remediation  (WILEY Available online 1989)
卷期: Volume 9, issue 1  

页码: 83-91

 

ISSN:1069-3629

 

年代: 1989

 

DOI:10.1111/j.1745-6592.1989.tb01123.x

 

出版商: Blackwell Publishing Ltd

 

数据来源: WILEY

 

摘要:

AbstractEnhanced subsurface biorestoration is rapidly becoming recognized as a valuable tool for the restoration of hydrocarbon‐contaminated aquifers and sediments. Previous field and laboratory studies at a former wood creosoting facility near Conroe, Texas, have indicated that insufficient oxygen is the primary factor limiting the biotransformation of polynuclear aromatics (PNAs) in sediments and ground water at this site. A series of laboratory experiments and field push‐pull injection tests were performed as part of this project to: (1) study the effect of low oxygen concentrations on the biotransformation of PNAs; (2) identify the minimum concentration of PNAs that could be achieved through the addition of oxygen alone; (3) confirm that enhanced subsurface biorestoration is feasible at this site; and (4) test an existing numerical model of the biotransformation process (BIOPLUME). The laboratory studies demonstrated that biotransformation of the PNAs was not inhibited at dissolved oxygen concentrations as low as 0.7 mg/L although this work did suggest that there may be a minimum PNA concentration of 30 to 70 μg/L total PNAs below which biotransformation was inhibited. The field push‐pull tests confirmed that addition of oxygen was effective in enhancing the subsurface biodegradation of the PNAs. The minimum concentration achieved using oxygen alone was approximately 60 μg/L total PNAs. Minimal biotransformation of these compounds was observed without oxygen addition. The numerical model BIOPLUME was tested against monitoring data from the field experiments and appears to provide a good approximation of the biodegradation

 

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