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SBC: INNOSENSE CORPORATION Topic: 13c
Although carbon capture and storage (CCS) technology has received the most attention for its potential to reduce emissions, processes that convert CO2 into a useful product can provide a positive return on investment and not just be an unrecoverable cost. Compared to CCS technology, the potential revenue generated by the use of CO2-based product is likely to grow popular with time while reducing ...STTR Phase II 2010 Department of Energy
SBC: INNOSENSE CORPORATION Topic: 11c
Due to the current oil crisis, the United States has begun to focus on alternative energy sources for transportation and other domestic applications. Methanol offers a renewable alternative to many fossil fuels that can be a raw material for the synthetic hydrocarbons and their products. ISL proposes to fabricate a photo-electrochemical cell that converts carbon dioxide, a greenhouse gas which can ...STTR Phase I 2010 Department of Energy
SBC: Phycal LLC Topic: 10c
The cost of dewatering particles is inversely proportional to particle size. Costs dramatically increase as particle size approaches 10STTR Phase I 2010 Department of Energy
Recovery Act- Development of a Fiber Based Source of High Average Power Ultrafast Pulses at 2.0 MicronsSBC: Kapteyn-Murnane Laboratories, Inc. Topic: 04d
Bright coherent light sources in the soft x-ray region of the spectrum are useful for a variety of applications of interest to DOE in the basic sciences, nanoscience and biology, and for technological applications. At Free-Electron Laser Facilities, peak power output of the x-ray pulses is enhanced by using a mid-infrared laser pulse instead of a near-infrared pulse. The current front end for mid- ...STTR Phase II 2010 Department of Energy
SBC: MAINSTREAM ENGINEERING CORP Topic: 10c
Hydrogen produced today from coal, natural gas, or biomass must be separated and purified outside the reactors using pressure swing absorption (PSA), a process that requires significant additional space and energy. Placing hydrogen-permeable membranes inside the reactors themselves would allow hydrogen to diffuse out, thereby reducing the cost of hydrogen production. In this Phase I effort, Mainst ...STTR Phase I 2010 Department of Energy
SBC: Nextech Materials, Ltd. Topic: 24a
Coal is an abundant source of energy in the USA, but is not currently utilized effectively. Recently, the DOE has begun a carbon sequestration program is to develop advanced CO2 capture and compression technology for existing coal-fired plants with increased efficiency with no more than a 35% increase in the cost of electricity. This will require new approaches and technologies to be successful. N ...STTR Phase I 2010 Department of Energy
SBC: OPTO-KNOWLEDGE SYSTEMS INC Topic: 58b
Spectroscopy in the long-wave infrared (LWIR) wavelength region (8 to 12STTR Phase II 2010 Department of Energy
SBC: RNET TECHNOLOGIES INC Topic: 38a
Solid State Drives (SSDs) are emerging as attractive alternatives to traditional HDDs due to there reduced power consumption and potential for increased performance. SSDs have the potential to improve the performance of both Checkpoint Restart (CPR) and the Metadata Server (MDS) for high performance File Systems, e.g., Lustre. However, the write performance of SSDs is relatively poor (compared to ...STTR Phase I 2010 Department of Energy
SBC: RNET TECHNOLOGIES INC Topic: 36a
Energy consumption is quickly becoming one of the primary bottlenecks of compute clusters and supercomputers. The DOE is a primary developer and consumer of these power hungry supercomputers, however smaller cluster machines are also widely used through other government agencies and industries. Yet, there are few power profiling tools that allow application developers transparent insight into the ...STTR Phase I 2010 Department of Energy
Low Cost, Scalable Manufacturing of Microlens Engineered Substrates (MLES) for Enhanced Light Extraction in OLED DevicesSBC: Sinmat Inc Topic: 09b
Solid state lighting is being promoted as the ultimate lamps of future. Though the internal quantum efficiency of OLED devices is almost 100%, external efficiency is a mere 36% mainly because of poor light out-coupling (~40%) from the device. Improvement in light out-coupling to >70% and further reducing the manufacturing cost will rapidly accelerate the commercialization of the OLED technology. T ...STTR Phase I 2010 Department of Energy