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Conference on Massive Energy Storage for the Broader Use of Renewable Energy Sources, June 23-26, 2013, Newport Beach, CA

Conference on Massive Energy Storage for the Broader Use of Renewable Energy Sources, June 23-26, 2013, Newport Beach, CA
大规模储能促进可再生能源更广泛应用会议,2013 年 6 月 23-26 日,加利福尼亚州纽波特比奇
批准号:
1335803
负责人:
Trung Nguyen
金额:
$1.5万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-06-01 至 2014-05-31

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PI: Nguyen, Trung V. Proposal Number: 1335803Institution: University of Kansas Center for Research IncTitle: Conference on Massive Energy Storage for the Broader Use of Renewable Energy SourcesRenewable energy sources, like wind and solar, could supply a significant amount of electrical energy, but integration of these sources into the electrical grid system poses major challenges due to their intermittent nature and unpredictable availability. Current technologies permit the storage of energy in relatively small quantities (~ 100 to 200 kWh) that may be sufficient for some transportation and residential applications. The storage needs for renewable energy sources as well as the energy storage needs associated with smart grid applications are likely to be much larger in magnitude (~ 20 to 1,000 MWh).The solutions that are likely to succeed will necessarily be inter-disciplinary and this conference will be a catalytic venue for such cross-pollination of ideas. The proposed conference topics include most of the potential technologies currently under consideration for energy storage -- and these include storage in the form compressed and liquefied gases, electrochemical storage systems, and/or other phase changes in media. This conference deals with energy storage in massive quantities that will broaden the use of renewable energies. Of specific interestare the physics, chemistry, thermodynamics and engineering of the methods and the processes in which such storage can be achieved in an economical manner particularly in the face of worldwide increase in the cost of materials. Thermal energy stored at higher temperatures will help improve the thermodynamics of Rankine and Brayton cycle applications. Some of the technologies are now mature enough to look into the engineering aspects of the implementation that deserve scrutiny.This represents an urgent societal technical need that is likely to gain more prominence as sustainability and grid management become ever more important. The U.S. and other governments are starting to pay more attention to the issues on hand and the topics of this conference are likely to gather more attention as industry and governments target energy efficiency and environmental impact with more vigor. This conference will be unique since it brings the focus necessary on massive electrical energy storage (EES) as well as thermal energy storage (TES). Funding from NSF will be used to support some of the keynote and invited speakers and graduate students from academic institutions.
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EAGER: High-Energy-Density Storage for Renewable Energy Sources for Environmental Sustainability
Engineering the Ionic Polymer Phase-Fluid Interface of the PEM Fuel Cell Catalyst Layer for Higher Performance
EAGER: Engineering the Ionic Polymer Phase Surface Properties in a PEM Fuel Cell Catalyst Layer
MRI: Acquisition of an Advanced X-Ray Photoelectron Spectroscopy for Materials Research
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