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Dive into the research topics where Suzanne O'Hara is active.

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Featured researches published by Suzanne O'Hara.


Water Research | 2012

A two and half-year-performance evaluation of a field test on treatment of source zone tetrachloroethene and its chlorinated daughter products using emulsified zero valent iron nanoparticles

Chunming Su; Robert W. Puls; Thomas Krug; Mark T. Watling; Suzanne O'Hara; Jacqueline Quinn; Nancy Ruiz

A field test of emulsified zero valent iron (EZVI) nanoparticles was conducted at Parris Island, SC, USA and was monitored for two and half years to assess the treatment of subsurface-source zone chlorinated volatile organic compounds (CVOCs) dominated by tetrachloroethene (PCE) and its chlorinated daughter products. Two EZVI delivery methods were used: pneumatic injection and direct injection. In the pneumatic injection plot, 2180 L of EZVI containing 225 kg of iron (Toda RNIP-10DS), 856 kg of corn oil, and 22.5 kg of surfactant were injected to remedy an estimated 38 kg of CVOCs. In the direct injection plot, 572 L of EZVI were injected to treat an estimated 0.155 kg of CVOCs. After injection of the EZVI, significant reductions in PCE and trichloroethene (TCE) concentrations were observed in downgradient wells with corresponding increases in degradation products including significant increases in ethene. In the pneumatic injection plot, there were significant reductions in the downgradient groundwater mass flux values for PCE (>85%) and TCE (>85%) and a significant increase in the mass flux of ethene. There were significant reductions in total CVOC mass (86%); an estimated reduction of 63% in the sorbed and dissolved phases and 93% reduction in the PCE DNAPL mass. There are uncertainties in these estimates because DNAPL may have been mobilized during and after injection. Following injection, significant increases in dissolved sulfide, volatile fatty acids (VFA), and total organic carbon (TOC) were observed. In contrast, dissolved sulfate and pH decreased in many wells. The apparent effective remediation seems to have been accomplished by direct abiotic dechlorination by nanoiron followed by biological reductive dechlorination stimulated by the corn oil in the emulsion.


Water Research | 2013

Travel distance and transformation of injected emulsified zerovalent iron nanoparticles in the subsurface during two and half years

Chunming Su; Robert W. Puls; Thomas Krug; Mark T. Watling; Suzanne O'Hara; Jacqueline Quinn; Nancy Ruiz

Nanoscale zerovalent iron (NZVI) such as Toda Kogyo RNIP-10DS has been used for site remediation, yet information is lacking regarding how far injected NZVI can travel, how long it lasts, and how it transforms to other minerals in a groundwater system. Previously we reported effective mass destruction of chlorinated ethenes dominated by tetrachloroethene (PCE) using emulsified zerovalent iron (EZVI) nanoparticles of RNIP-10DS in a shallow aquifer (1-6 m below ground surface, BGS) at Site 45, Marine Corps Recruit Depot, Parris Island, South Carolina, USA. Here we report test results on transport and transformation of injected EZVI in the subsurface. We employed two EZVI delivery methods: pneumatic injection and direct injection. Effective delivery of EZVI to the targeted zone was achieved with pneumatic injection showing a travel distance from injection points of up to 2.1 m and direct injection showing a travel distance up to 0.89 m. X-ray diffraction and scanning electron microscopy studies on particles harvested from well purge waters indicated that injected black colored NZVI (α-Fe(0)) was transformed largely to black colored cube-like and plate-like magnetites (Fe3O4, 0.1-1 μm, 0-9 months), then to orange colored irregularly shaped lepidocrocite (γ-FeOOH, 0.1-1 μm, 9 months to 2.5 years), then to yellowish lath-like goethite (α-FeOOH, 2-5 μm, 2.5 years) and ferrihydrite-like spherical particles (0.05-0.1 μm) in the top portion of the aquifer (1-2 m BGS). No α-Fe(0) was found in most monitoring wells three months after injection. The formed iron oxides appeared to have a wider range of particle size (submicron to 5 μm) than the pristine NZVI (35-140 nm). Injected NZVI was largely transformed to magnetite (0.1-1 μm) during two and half years in the lower portion of the aquifer (3-6 m).


Journal of Environmental Management | 2015

Case study of a non-destructive treatment method for the remediation of military structures containing polychlorinated biphenyl contaminated paint

Erin Saitta; Michael J. Gittings; Simone Novaes-Card; Jacqueline Quinn; Christian A. Clausen; Suzanne O'Hara; Cherie L. Yestrebsky

Restricted by federal regulations and limited remediation options, buildings contaminated with paint laden with polychlorinated biphenyls (PCBs) have high costs associated with the disposal of hazardous materials. As opposed to current remediation methods which are often destructive and a risk to the surrounding environment, this study suggests a non-metal treatment system (NMTS) and a bimetallic treatment system (BTS) as versatile remediation options for painted industrial structures including concrete buildings, and metal machine parts. In this field study, four areas of a discontinued Department of Defense site were treated and monitored over 3 weeks. PCB levels in paint and treatment system samples were analyzed through gas chromatography/electron capture detection (GC-ECD). PCB concentrations were reduced by 95 percent on painted concrete and by 60-97 percent on painted metal with the majority of the PCB removal occurring within the first week of application. Post treatment laboratory studies including the utilization of an activated metal treatment system (AMTS) further degraded PCBs in BTS and NMTS by up to 82 percent and 99 percent, respectively, indicating that a two-step remediation option is viable. These findings demonstrate that the NMTS and BTS can be an effective, nondestructive, remediation process for large painted structures, allowing for the reuse or sale of remediated materials that otherwise may have been disposed.


Environmental Science & Technology | 2005

Field Demonstration of DNAPL Dehalogenation Using Emulsified Zero-Valent Iron

Jacqueline Quinn; Cherie L. Geiger; Chris Clausen; Kathleen B. Brooks; Christina Coon; Suzanne O'Hara; Thomas Krug; David W. Major; Woong-Sang Yoon; Arun Gavaskar; Thomas Holdsworth


Archive | 2010

Use of Nanoscale Iron and Bimetallic Particles for Environmental Remediation: A Review of Field-scale Applications

Jacqueline Quinn; Daniel Elliott; Suzanne O'Hara; Alexa M. Billow


Archive | 2010

Emulsified Zero-Valent Nano-Scale Iron Treatment of Chlorinated Solvent DNAPL Source Areas

Thomas Krug; Suzanne O'Hara; Mark T. Watling; Jacqueline Quinn


Ground Water Monitoring and Remediation | 2012

Evaluation of zerovalent zinc for treatment of 1,2,3-trichloropropane-contaminated groundwater: Laboratory and field assessment

Alexandra J. Salter-Blanc; Eric J. Suchomel; John H. Fortuna; James T. Nurmi; Chris Walker; Tom Krug; Suzanne O'Hara; Nancy Ruiz; Theresa Morley; Paul G. Tratnyek


Archive | 2017

Long-Term Performance Evaluation of Groundwater Chlorinated Solvents Remediation Using Nanoscale Emulsified Zerovalent Iron at a Superfund Site

Chunming Su; Robert W. Puls; Thomas Krug; Mark T. Watling; Suzanne O'Hara; Jacqueline Quinn; Nancy Ruiz


Archive | 2011

Application of a Bimetallic Treatment System (BTS) for PCB Removal from Older Structures on DoD Facilities. Cost and Performance Report

Thomas Krug; Suzanne O'Hara; Jacqueline Quinn; Christian A. Clausen; Cherie L. Geiger; James Captain; Nancy Ruiz


Archive | 2010

Application of a Bimetallic Treatment System (BTS) for PCB Removal from Older Structures on DoD Facilities

Nancy Ruiz; Thomas Krug; Suzanne O'Hara; Jacqueline Quinn; Christian A. Clausen; Cherie L. Geiger; James Captain

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Nancy Ruiz

Naval Facilities Engineering Command

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Robert W. Puls

United States Environmental Protection Agency

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Cherie L. Geiger

University of Central Florida

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Christian A. Clausen

University of Central Florida

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Chunming Su

National Research Council

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