Technical Topic Area 3 - Hydrate Detection and Characterization via Remote Sensing Tools

The summary for the Technical Topic Area 3 - Hydrate Detection and Characterization via Remote Sensing Tools Federal Grant is detailed below. It contains information such as the Catalog of Federal Domestic Assistance (CFDA) number, who is eligible for the grant, how much grant money will be awarded, important deadlines, and a sampling of similar government grants. Verify the accuracy of the data FederalGrants.com provides by visiting the webpage noted in the Link to Full Announcement section or by contacting the appropriate person listed in the Grant Announcement Contact section. If these sections are incomplete, please visit the website of the government agency that is offering this grant.
Federal Grant Title: TECHNICAL TOPIC AREA 3 - HYDRATE DETECTION AND CHARACTERIZATION VIA REMOTE SENSING TOOLS
Federal Agency Name: National Energy Technology Laboratory
Program Name: Fossil Energy Research and Development
Grant Categories: Energy
CFDA Number: 81.089
Funding Opportunity Number: DE-PS26-08NT43260-03
Posted Date: Jan 30, 2008
Creation Date: Feb 06, 2008
Original Application Deadline: Mar 17, 2008
Current Application Deadline: Information not provided
Archive Date: May 30, 2008
Total Program Funding: Information not provided
Maximum Federal Grant Award: $0
Minimum Federal Grant Award: $0
Expected Number of Awards: Information not provided
Cost Sharing or Matching: Yes
Applicants Eligible for this Grant
Unrestricted (i.e., open to any type of entity above), subject to any clarification in text field entitled "Additional Information on Eligibility"
Additional Information on Eligibility
Information not provided
Grant Description
Topic Area 3 - Hydrate Detection and Characterization via Remote Sensing Tools (DE-PS26-08NT43260-03) Applications are sought for research on improved remote sensing methods for predicting, detecting, and /or appraising hydrate distribution in the natural environment and the nature of associated sediments and structures. Particularly, advanced geophysical methods such as deep sea electromagnetics (EM) that can be applied to broad regions are desired. DOE emphasis will be on those efforts that include direct calibration of geophysical interpretations through reference to data collected in situ.
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Martin Byrnes
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