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University of South Florida Summary of USF Accomplishments The funding provided to the University of South Florida by the State of Florida, through the Florida Energy Systems Consortium (FESC), has been used to support a number of excellent projects addressing present and future needs related to energy and the environment. Energy efficiency, production of electric power and biofuels by the use of renewable energy, water production through solar desalination, environmental cleaning by the use of photocatalytic technologies, advancements in manufacturing for photovoltaic module production and CO2 sequestration and trade are some of the projects pursued. As a result of this funding a number of significant advancements in technology have being made resulting into useful patents (9), journal publications (43) and presentations (76) at national and international conferences. With this support, a number of BS (7), MS (23), PhD (37) students and Post-Doctoral Fellows (3) in the colleges of engineering and science have either received their degrees or are in the process of doing so. Extremely significant is also the leveraging of these funds in support of the development of a large number of proposals submitted to federal agencies and private industry (Proposals applied for total: ($26,912,411); and funded grants total ($9,933.208); together these efforts total $36,845,619). Many of these proposals have either already been funded or are presently pending. Also included are the project reports on USF FESC funded “seed grants” on a variety of renewable energy projects, including: • Alternative Energy Potential For Florida From Mechanical And Solar Sources (Weisberg, Pi) • Development Of A Highly Efficient Photocatalyst For Co2 Reduction With H2o By Hybrid Construction Of Transparent, Conductive Composite (Tcc) And Nano-Sized Mox/Invo4/Al2o3 Particles (Alcantar, Pi) • Development Of A Smart Window For Green Buildings In Florida (Witanachchi, Pi) • Feasibility, Sustainability And Economic Analysis Of Solar Assisted Biomass Conversion (Joseph, Pi) • Hybrid Interfaces For Energy Conversion Devices (Hoff, Pi) • Low-Cost Solar Power Through Assembly Of High Efficiency Microscale Photovoltaic Cells (Crane, Pi) • Sustainable Algal Biofuel Production (Ergas, Pi) A more detailed description and associated results, for each of these funded projects, is given below. 2|PagePDF Image | FESC Research, Education and Outreach Project
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