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Featured researches published by Karen D. Miller.


Marine Pollution Bulletin | 2002

Toxicological and chemical assessment of ordnance compounds in marine sediments and porewaters

Marion Nipper; R. S. Carr; James M. Biedenbach; Russell L. Hooten; Karen D. Miller

Toxicological and chemical studies were performed with a silty and a sandy marine sediment spiked with 2,6-dinitrotoluene (2,6-DNT), 2,4,6-trinitrophenylmethylnitramine (tetryl), or 2,4,6-trinitrophenol (picric acid). Whole sediment toxicity was analyzed by the 10-day survival test with the amphipod Ampelisca abdita, and porewater toxicity tests assessed macro-algae (Ulva fasciata) zoospore germination and germling growth, sea urchin (Arbacia punctulata) embryological development, and polychaete (Dinophilus gyrociliatus) survival and reproduction. Whole sediments spiked with 2,6-DNT were not toxic to amphipods. The fine-grained sediment spiked with tetryl was also not acutely toxic. The tetryl and picric acid LC50 values in the sandy sediment were 3.24 and 144 mg/kg dry weight, respectively. The fine-grained sediment spiked with picric acid generated a U-shaped concentration-response curve in the amphipod test, with increased survival both in the lowest and highest concentration. Grain-size distribution and organic carbon content strongly influenced the behavior of ordnance compounds in spiked sediments. Very low concentrations were measured in some of the treatments and irreversible binding and biodegradation are suggested as the processes responsible for the low measurements. Porewater toxicity varied with its sedimentary origin and with ordnance compound. The sea urchin embryological development test tended to be the least sensitive. Tetryl was the most toxic chemical in all porewater tests, and picric acid the least toxic. Samples spiked with 2,6-DNT contained a degradation product identified as 2-methyl-3-nitroaniline (also known as 2-amino-6-nitrotoluene), and unidentified peaks, possibly degradation products, were also seen in some of the picric acid- and tetryl-spiked samples. Degradation products may have played a role in observed toxicity.


Soil and Sediment Contamination: An International Journal | 2002

Large-Scale Mixed MTBE-BTEX Plume Containment at Port Hueneme, CA, Using a Combination of Biostimulation and Bioaugmentation

Karen D. Miller; Paul C. Johnson; Cristin L. Bruce

Karen D. Miller—Naval Facilities Engineering Service Center, Restoration Development Branch, 1100 23rd Ave., Port Hueneme, CA 93043, Tel: 805-982-1010, Fax: 805-982-4304; Paul C. Johnson—Arizona State University, Dept of Civil and Environmental Engineering, Box 875306, Tempe, AZ 85287-5306, Tel: 480-965-9115, Fax: 480-965-0557; Cristin L. Bruce —Arizona State University, Dept of Civil and Environmental Engineering, Box 875306, Tempe, AZ 85287-5306, Tel: 480-965-0055, Fax: 480-965-0557


Archives of Environmental Contamination and Toxicology | 2001

Development of marine toxicity data for ordnance compounds.

Marion Nipper; R. S. Carr; James M. Biedenbach; Russell L. Hooten; Karen D. Miller; S. Saepoff


Chemosphere | 2004

Degradation of picric acid and 2,6-DNT in marine sediments and waters: the role of microbial activity and ultra-violet exposure

Marion Nipper; Yaorong Qian; R. Scott Carr; Karen D. Miller


Marine Pollution Bulletin | 2005

Fate and effects of picric acid and 2,6-DNT in marine environments: Toxicity of degradation products

Marion Nipper; R. Scott Carr; James M. Biedenbach; Russell L. Hooten; Karen D. Miller


Archives of Environmental Contamination and Toxicology | 2001

Sediment toxicity identification evaluation (TIE) studies at marine sites suspected of ordnance contamination

R. S. Carr; Marion Nipper; James M. Biedenbach; Russell L. Hooten; Karen D. Miller; S. Saepoff


Remediation Journal | 2001

Full‐scale in‐situ biobarrier demonstration for containment and treatment of MTBE

Karen D. Miller; Paul C. Johnson; Cristin L. Bruce


Ground Water Monitoring and Remediation | 2010

A practical approach to the design, monitoring, and optimization of in situ MTBE aerobic biobarriers.

Paul C. Johnson; Cristin L. Bruce; Karen D. Miller


Archive | 2003

In Situ Bioremediation of MTBE in Groundwater

Karen D. Miller; Paul C. Johnson; Cristin L. Bruce


Archive | 2003

ESTCP Cost and Performance Report. In-Situ Bioremediation of MTBE in Ground Water

Karen D. Miller; Paul C. Johnson; Cristin L. Bruce

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S. Saepoff

United States Army Corps of Engineers

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