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FESC Research, Education and Outreach Project

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Heterogenous Porous Formation, Technology and Innovation, National Academy of Inventors, DOI: http://dx.doi.org/10.3727/194982412X13462021397778. Tina Roberts-Ashby, Mark Stewart, 2012. Potential for carbon dioxide sequestration in the Lower Cretaceous Sunniland Formation within the Sunniland Trend of the South Florida Basin, U.S., International Journal of Greenhouse Gas Control, doi:10.1016/j.ijggc.2011.11.009 Presentations and Poster Sessions: Roland T. Okwen, Mark Thomas, Mark T. Stewart, Maya Trotz, Jeffrey A. Cunningham, 2012. Conjunctive Injection of CO2 and Wastewater in a Heterogenous Porous Formation American Geophysical Fall Meeting, San Francisco, 12/11 Geochemical Modeling of CO2 Sequestration in Deep, Saline, Dolomitic Limestone Aquifers: Sensitivity to Physico-Chemical Conditions. Participants: M. W Thomas, M. Stewart, M. A Trotz, and J. Cunningham, Florida Energy Summit August 15-17, 2012 At the University of South Florida 4th Annual College of Engineering Research Day, Engineering II (ENB), First Floor, Thursday, November 17, 2011: Simulation of Alternating Wastewater/CO2 Injection into a Deep Saline Aquifer. Mark Thomas, Roland Okwen, Arlin Briley, Mark Stewart, Maya Trotz, Jeffrey Cunningham University of South Florida 4th Annual College of Engineering Research Day, 10/2012. Funded research: Project 1: : Physical and geochemical modeling of geologic sequestration of carbon dioxide and RO reject water at the Polk Power Station (PPS), Polk County. Principal Investigators: M Stewart (USF), J Cunningham(USF), M Trotz(USF), R Okwen(ISGS) Students: Arlin Briley (CEE, PhD), Mark Thomas (CEE, PhD) Grantors and Collaborators: Tampa Electric Company, ECT Inc. Funding: Funding was provided on a continuing and as needed basis, for specific tasks. 2012funding was about $40,000-$50,000. Funds provided research support for faculty members Cunningham, Trotz, and Stewart, a sub-contract with Dr Roland Okwen (USF PhD) of the Illinois State Geological Survey, licenses for advanced modeling software, and support for two PhD students, Arlin Briley and Mark Thomas in CEE. Description: This project is part of a >$160,000,000 project funded by DOE and the SWFWMD. SWFWMD funded two deep injection wells at PPS to dispose of reverse osmosis reject water from a RO plant that will process City of Lakeland wastewater. The potable water from the RO plant will replace Floridan Aquifer water currently used by Tampa Electric at the PPS. The existence of a suitable deep injection zone was confirmed by earlier USF research. As a result of the availability of deep injection wells and the integrated coal gasification-combined cycle (IGCC) power plant at PPS, the PPS was selected by DOE for a pilot project for hot-gas clean up, carbon capture, and carbon sequestration. USF is responsible for modeling the physical and chemical behavior of both the injected carbon dioxide that will be captured by the CCS pilot plant and the reject water from the RO plant. This project provided a unique research opportunity, as it is the only CCS project where injection of CO2 will can be followed by wastewater injection. The majority of the refereed publications and meeting presentations of the USF Carbon Sequestration group have been based on research results from this project. Project lifespan: The DOE has put the sequestration project on hold, but the wastewater injection will start in 2014 and continue indefinitely. Project 2: Monitoring of carbon sequestration using InSAR 17 | P a g e

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