National Library of Energy BETA

Sample records for reedsburg oconomowoc waterloo

  1. Oconomowoc Utilities | Open Energy Information

    Open Energy Info (EERE)

    Place: Wisconsin Phone Number: 262-569-2196 Website: www.oconomowoc-wi.govindex.as Twitter: @OconomowocWI Outage Hotline: 262-569-2196 or 262-567-4401 After Hours References:...

  2. Reedsburg Utility Comm | Open Energy Information

    Open Energy Info (EERE)

    Comm Place: Wisconsin Phone Number: (608) 524-4381 Website: reedsburgutility.com Facebook: https:www.facebook.compagesReedsburg-Utility-Commission136628653195868 Outage...

  3. University of Waterloo UW | Open Energy Information

    Open Energy Info (EERE)

    to: navigation, search Name: University of Waterloo (UW) Place: Waterloo, Ontario, Canada Zip: N2L 3G1 Product: Research-intensive university that has received grants to pursue...

  4. Waterloo Light & Water Comm | Open Energy Information

    Open Energy Info (EERE)

    Water Comm Jump to: navigation, search Name: Waterloo Light & Water Comm Place: Wisconsin Phone Number: (920) 478-2260 Website: waterlooutilities.com Facebook: https:...

  5. University of Waterloo Wins 2016 Hydrogen Student Design Contest |

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Department of Energy University of Waterloo Wins 2016 Hydrogen Student Design Contest University of Waterloo Wins 2016 Hydrogen Student Design Contest June 9, 2016 - 3:15pm Addthis A team from the University of Waterloo, Canada, won the Hydrogen Education Foundation's 2016 Hydrogen Student Design Contest. The contest, supported in part by the U.S. Department of Energy (DOE), is aligned with DOE's efforts to work with academic institutions and industry to ensure that students and the

  6. Linda Nazar > University of Waterloo > Scientific Advisory Board > The

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Energy Materials Center at Cornell Linda Nazar University of Waterloo

  7. University of Waterloo Wins 2016 Hydrogen Student Design Contest...

    Energy Savers [EERE]

    This year, teams were challenged to design a hydrogen-based microgrid to help improve ... The winning design proposed a renewable energy powered microgrid capable of continuously ...

  8. Long term performance of the Waterloo denitrification barrier

    SciTech Connect (OSTI)

    Robertson, W.D.; Cherry, J.A.

    1997-12-31

    Beginning in 1991 a series of laboratory tests and small scale field trials were initiated to test the performance of an innovative permeable reactive barrier for treatment of nitrate from septic systems. The barrier promotes denitrification by providing an energy source in the form of solid organic carbon mixed into the porous media material. Advantages of the system for nitrate treatment are that the reaction is passive and in situ and it is possible to incorporate sufficient carbon mass in conveniently sized barriers to potentially provide treatment for long periods (decades) without the necessity for maintenance. However, longevity can only be demonstrated by careful long term monitoring of field installations. This paper documents four years of operating history at three small scale field trials; two where the denitrification barrier is installed as a horizontal layer positioned in the unsaturated zone below conventional septic system infiltration beds and one where the barrier is installed as a vertical wall intercepting a septic system plume at a downgradient location. The barriers have successfully attenuated 50-100% of NO{sup -}{sub 3}-N levels of up to 170 mg/L and treatment has remained consistent over the four year period in each case, thus considerable longevity is indicated. Other field trials have demonstrated this technology to be equally effective in treating nitrogen contamination from other sources such as landfill leachate and farm field runoff.

  9. Validation predictions of a 13 m/s cross-wind fire for Fuego and the University of Waterloo dataset.

    SciTech Connect (OSTI)

    Brown, Alexander L.; Evans, Gregory Herbert; Gill, Walter; Jarboe, Daniel T.

    2008-03-01

    Detailed herein are the results of a validation comparison. The experiment involved a 2 meter diameter liquid pool of Jet-A fuel in a 13 m/s crosswind. The scenario included a large cylindrical blocking object just down-stream of the fire. It also included seven smaller calorimeters and extensive instrumentation. The experiments were simulated with Fuego. The model included several conduction regions to model the response of the calorimeters, the floor, and the large cylindrical blocking object. A blind comparison was used to compare the simulation predictions with the experimental data. The more upstream data compared very well with the simulation predictions. The more downstream data did not compare very well with the simulation predictions. Further investigation suggests that features omitted from the original model contributed to the discrepancies. Observations are made with respect to the scenario that are aimed at helping an analyst approach a comparable problem in a way that may help improve the potential for quantitative accuracy.

  10. New Yellow School Buses Harness the Sun in Wisconsin

    Office of Energy Efficiency and Renewable Energy (EERE)

    A solar fueling station in Oconomowoc, Wis. is generating electricity that will be used to charge 11 plug-in hybrid electric vehicle (PHEV) school buses. The buses, put into service at the beginning of the 2010 school year, are serving Wisconsin school districts – helping them save money and reduce greenhouse gas emissions.

  11. Browse by Discipline -- E-print Network Subject Pathways: --...

    Office of Scientific and Technical Information (OSTI)

    ... F. Elena) - Instituto de Biologa Molecular y Celular de Plantas, Universitat ... - Departments of Philosophy & Systems Design Engineering, University of Waterloo ...

  12. 1998 - 11 | Jefferson Lab

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    1 Nov 1998 Mon, 1998-11-23 00:00 Norfolk State: Research Results (Virginian-Pilot, Burrelle's) Tue, 1998-11-10 00:00 FIU to Host Physicists' Convention (Miami Herald, Burrelle's) Mon, 1998-11-02 00:00 A Better Probe for Cancer Detection (Pulse) Mon, 1998-11-02 00:00 Zapping Into the Future (Reedsburg Times-Press

  13. Browse by Discipline -- E-print Network Subject Pathways: Computer...

    Office of Scientific and Technical Information (OSTI)

    Universit Joseph Fourier Grenoble-I Gallego, Eduardo (Eduardo Gallego) - Departament ... Science, University of Waterloo Gedeon, Tomas (Tomas Gedeon) - Department of ...

  14. Crave Brothers Farm

    SciTech Connect (OSTI)

    2009-10-01

    This is a combined heat and power (CHP) project profile on a 633 kW biogas CHP application at Crave Brothers Farm in Waterloo, Wisconsin.

  15. Competition Provides Students with Real-World Engineering Experience...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    must also develop business, marketing, and education strategies for their vehicles. ... University of Waterloo - Canada Virginia Tech - Virginia Wayne State University - ...

  16. 1998 | Jefferson Lab

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Dec 1998 Sat, 1998-12-12 00:00 Don't be late: Lecture is on Time (Daily Press) Nov 1998 Mon, 1998-11-23 00:00 Norfolk State: Research Results (Virginian-Pilot, Burrelle's) Tue, 1998-11-10 00:00 FIU to Host Physicists' Convention (Miami Herald, Burrelle's) Mon, 1998-11-02 00:00 A Better Probe for Cancer Detection (Pulse) Mon, 1998-11-02 00:00 Zapping Into the Future (Reedsburg Times-Press) Oct 1998 Wed, 1998-10-28 00:00 New Hope for Patients (Associated Press, Philippine News (San Francisco

  17. CX-006869: Categorical Exclusion Determination

    Broader source: Energy.gov [DOE]

    National Agriculture Based Lubricants CenterCX(s) Applied: A9, B3.6Date: 09/29/2011Location(s): Waterloo, IowaOffice(s): Energy Efficiency and Renewable Energy, Golden Field Office

  18. Sealable joint steel sheet piling for groundwater control and remediation: Case histories

    SciTech Connect (OSTI)

    Smyth, D.; Jowett, R.; Gamble, M.

    1997-12-31

    The Waterloo Barrier{trademark} steel sheet piling (patents pending) incorporates a cavity at each interlocking joint that is flushed clean and injected with sealant after the piles have been driven into the ground to form a vertical cutoff wall. The installation and sealing procedures allow for a high degree of quality assurance and control. Bulk wall hydraulic conductivities of 10{sup -8} to 10{sup -10} cm/sec have been demonstrated at field installations. Recent case histories are presented in which Waterloo Barrier{trademark} cutoff walls are used to prevent off-site migration of contaminated groundwater or soil gases to adjacent property and waterways. Full enclosures to isolate DNAPL source zones or portions of contaminated aquifers for pilot-scale remediation testing will also be described. Monitoring data will be used to demonstrate the effectiveness of the Waterloo Barrier{trademark} in these applications.

  19. SREL Reprint #3315

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    5 Genus-wide microsatellite primers for the goldenrods (Solidago: Asteraceae) James B. Beck1, John C. Semple2, Justin M. Brull1, Stacey L. Lance3, Mai M. Phillips4, Sara B. Hoot5, and Gretchen A. Meyer6 1Department of Biological Sciences, Wichita State University, 537 Hubbard Hall, Wichita, Kansas 67260 USA 2Department of Biology, University of Waterloo, Waterloo, Ontario NL2 3G1, Canada 3Savannah River Ecology Laboratory, University of Georgia, Aiken, South Carolina 29802 USA 4Conservation and

  20. Staff > Scientific Advisory Board > The Energy Materials Center at Cornell

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Scientific Advisory Board List Image Michelle Buchanan Oak Ridge National Laboratory List Image Gary Calabrese Corning Inc. List Image Thomas Mallouk Pennsylvania State University List Image Mark Mathias General Motors - Fuel Cell Research List Image Linda Nazar University of Waterloo List Image Bart Riley A123 Systems List Image Eugene Smotkin Northeastern University List Image Esther Takeuchi Stony Brook University List Image M. Stanley Whittingham Binghamton University List Image Piotr

  1. DOE - Office of Legacy Management -- Titus Metals - IA 04

    Office of Legacy Management (LM)

    Titus Metals - IA 04 FUSRAP Considered Sites Site: TITUS METALS ( IA.04 ) Eliminated from consideration under FUSRAP Designated Name: Not Designated Alternate Name: None Location: Waterloo , Iowa IA.04-1 Evaluation Year: 1987 IA.04-2 Site Operations: Extruded uranium billets to produce fuel plates for the Argonaut reactor in June, 1956. IA.04-1 IA.04-2 Site Disposition: Eliminated - Potential for contamination considered remote based on the limited scope of activities at the site and results of

  2. Sunrayce 97 Continues Day 4 - Fulton to Lee's Summit

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    4 - Fulton to Lee's Summit For more information contact: Patrick Booher, Sunrayce Program Manager (202) 586-0713 Lee's Summit, MO -- Massachusetts Institute of Technology (MIT) took Day IV and maintained the overall lead as sunrayce 97 completed its fourth day. The elapsed time for the day for the Manta GT was 3:26:45. Second place went to University of Waterloo, 3:29:02. University of Minnesota came in third place with a time of 3:31:24. According to Pat Booher, Sunrayce 97 Co-Director,

  3. Sunrayce 97 Continues Day 8 - St. Francis, Kan. to Limon, Colo.

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    8 - St. Francis, Kan. to Limon, Colo. For more information contact: Patrick Booher, Sunrayce Program Manager (202) 586-0713 Limon, Colo. -- A close race continues after day eight of Sunrayce 97 with less than a minute between the day's top three finishers. Massachusetts Institute of Technology (MIT) crossed the finish line first with a time of 2:58:44, University of Waterloo came in second at 2:59:19, and Stanford University/UC - Berkeley rounded out the top three with a time of 2:59:34. The

  4. LAKESHORE AVON BR ANT-EDEN ALD EN-LANC ASTER AU BURN W SH ELDON

    U.S. Energy Information Administration (EIA) Indexed Site

    81 § ¨ ¦ 81 LAKESHORE AVON BR ANT-EDEN ALD EN-LANC ASTER AU BURN W SH ELDON CALEDONIA HURON C REEK LEIC EST ER COL DEN ASH FORD INDIAN FALLS LAWTONS SAR DINIA RPD-037 -2 GLENWOOD PU LASKI PAVILION CON CORD COL LINS N ELM A ORC HARD PARK-H AMBU RG DANLEY CORNERS ST ILLWAT ER CHAFF EE-ARCAD E FAYETT E-WATERLOO LAKEVIEW JAVA SEN EC A W ELLER Y AU RORA E ZOAR BU FFALO TIOGA SILVER LAKE AKR ON ROM E RAT HBON E ALM A BET HANY WYOMING ULYSSES BR ANCH W SAN DY CREEK COL LINS BLOOMFIELD E LEBANON

  5. Fast pyrolysis of sweet soghum bagasse in a fluidized bed

    SciTech Connect (OSTI)

    Palm, M.; Peacocke, C.; Bridgewater, A.V.; Piskorz, J.; Scott, D.S.

    1993-12-31

    Samples of Italian sorghum bagasse were dried and ground and then pyrolyzed in the Waterloo Fast Pyrolysis bench scale reactor unit. Results were typical of agricultural grasses of this kind, and resembled those obtained from similar tests of sugar cane bagasse. A maximum liquid yield (dry feed basis) of 68% by weight of dry feed was achieved, with a corresponding char yield (ash included) of 16%. The high ash content of the bagasse (9.2%) gave a char with a very high ash content ({approx}50%), with calcium as the most abundant cation. Yields of hydroxyacetaldehyde were comparable to those obtained from softwoods. Deionized bagasse gave significant yields of anhydrosugars on pyrolysis. Sorghum bagasse appears to be a suitable feedstock, either for pyrolysis to yield an alternative fuel oil, or after pretreatment and pyrolysis, to yield a solution of fermentable sugars.

  6. Modeling silver binding to gills of rainbow trout (Oncorhynchus mykiss)

    SciTech Connect (OSTI)

    Janes, N.; Playle, R.C.

    1995-11-01

    Rainbow trout (Oncorhynchus mykiss, 1--3 g) were exposed to {approximately} 1.0 {micro}M silver (Ag) ({approximately} 11 {micro}g {center_dot} L{sup {minus}1} Ag) for 2 to 3 h in synthetic soft water (Ca, Na {approximately} 300 {micro}M, pH 6.5--7.5) to which was added Ca, Na, H{sup +}, dissolved organic carbon (DOC), Cl, or thiosulfate (S{sub 2}O{sub 3}). Gills were extracted and gill Ag concentrations were measured using graphite-furnace atomic absorption spectrophotometry. The concentration of cations (Ca, Na, H{sup +}) and complexing agents (DOC, Cl, S{sub 2}O{sub 3}) needed to keep Ag off the gills were used to calculate conditional equilibrium binding constants (K) at the gills. Log K for Ag-gill binding was 10.0, with approximately 1.3 nmol Ag binding sites per fish. All experimentally determined log K values were entered into an aquatic chemistry equilibrium model, MINEQL{sup +}, to predict Ag binding at trout gills. For a series of natural waters, model-predicted gill Ag concentrations correlated well with observed gill Ag concentrations, with one exception, very hard city of Waterloo tapwater. This exception may indicate a kinetic constraint on the thermodynamic basis of the model.

  7. Using the Apple LaserWriter at ANL

    SciTech Connect (OSTI)

    Errion, S.M.; Thommes, M.M. Caruthers, C.M.

    1987-09-01

    Using the Apple LaserWriter at ANL (ANL/TM 452) explains how Argonne computer users (with CMS, MVS, or VAX/VMS accounts) can print quality text and graphics on the Apple LaserWriter. Currently, applications at Argonne that are compatible with the Apple LaserWriter include Waterloo Script, CA/ISSCO graphics software (i.e., Cuechart, Tellagraf, and Disspla), SAS/Graph, ANSYS (version 4.2), and some personal computer test and graphics software. This manual does not attempt to cover use of the Apple LaserWriter with other applications, though some information on the handling of PostScript-compatible files may be valid for other applications. Refer to the documentation of those applications to learn how they work with the Apple LaserWriter. Most of the information in this manual applies to the Allied Linotype L300P typesetter in Building 222. However, the typesetter is not a high volume output device and should be used primarily for high quality (1250 and 2500 dots per inch) final copy output for Laboratory publications prior to making printing plates. You should print all drafts and proof pages on LaserWriers or other printers compatible with the PostScript page description language. Consult with Graphic Arts (at extension 2-5603) to determine the availability of the typesetter for printing the final copy of your document or graphics application. Since the Apple LaserWriter itself produces good quality output (300 dots per inch), we expect that most internal documents consisting of test or graphics will continue to be printed at LaserWriters distributed throughout the Laboratory. 5 figs., 2 tabs.

  8. Semiconductor Nanotechnology: Novel Materials and Devices for Electronics, Photonics, and Renewable Energy Applications

    SciTech Connect (OSTI)

    Goodnick, Stephen; Korkin, Anatoli; Krstic, Predrag S; Mascher, Peter; Preston, John; Zaslavsky, Alex

    2010-03-01

    , Hamilton, Ontario, Canada) and the scope was expanded to include renewable energy research and development. This special issue of Nanotechnology is devoted to a better understanding of the function and design of semiconductor devices that are relevant to information technology (both electronics and photonics based) and renewable energy applications. The papers contained in this special issue are selected from the NGC/CSTC2009 symposium. Among them is a report by Ray LaPierre from McMaster University and colleagues at the University of Waterloo in Canada on the ability to manipulate single spins in nanowire quantum bits. The paper also reports the development of a testbed of a few qubits for general quantum information processing tasks [1]. Lower cost and greater energy conversion efficiency compared with thin film devices have led to a high level of activity in nanowire research related to photovoltaic applications. This special issue also contains results from an impedance spectroscopy study of core shell GaAs nanowires to throw light on the transport and recombination mechanisms relevant to solar cell research [2]. Information technology research and renewable energy sources are research areas of enormous public interest. This special issue addresses both theoretical and experimental achievements and provides a stimulating outlook for technological developments in these highly topical fields of research. References [1] Caram J, Sandoval C, Tirado M, Comedi D, Czaban J, Thompson D A and LaPierre R R 2010 Electrical characteristics of core shell p-n GaAs nanowire structures with Te as the n-dopant Nanotechnology 21 134007 [2] Baugh J, Fung J S and LaPierre R R 2010 Building a spin quantum bit register using semiconductor nanowires Nanotechnology 21 134018