ESPIN TECHNOLOGIES, INC. — Department of Defense SBIR Phase II: MDA13-T010

ESPIN TECHNOLOGIES, INC. — SBIR Phase II award from Department of Defense.

Phase II SBIR prototype / development signal

  • Phase II is where Department of Defense funds deeper R&D after feasibility. Incumbents with Phase II history are serious competitors on adjacent topics.
  • Use this award as past-performance context and to map customer organizations for STRATFI/TACFI-style transition planning.
  • Obligated amount $1,010,000 is consistent with substantial Phase II-scale effort; compare to related awards from the same agency.
  • Topic code MDA13-T010 links this award to a solicitation family — search the same topic stem for incumbents and recompete timing.

Informational capture context from public federal data — not legal or bid advice.

Amount
$1,010,000
Agency
Department of Defense · Missile Defense Agency
Program / Phase
SBIR · Phase II
Topic
MDA13-T010
Solicitation
2013.0
NAICS
Place of performance
TN
Period
2015-09-14 → 2017-09-13

Description

This SBIR Phase II proposal will design and develop a reactive nanofiber based heating, ventilation, and airconditioning (HVAC) air filter to capture corrosion inducing particulate matter (PM) and dissolved ions present in coastal region air. Nanoparticle-polymer will be combined to produce high surface area reactive nanofiber filtermedia. The performance of media will be tailored by controlling fiber diameter, porosity of the media, pore size, and nanoparticle type and loading. The filtermedia will be characterized for its filtration performance, resistance to airflow, dust holding capacity, and ion exchange capacity. The filter media will be used to assemble prototype high surface area mini-pleat filter. The filter will be tested per American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE), Underwriters Laboratory (UL) and Mil-Spec Standards. Successful filter design will be tested at test sites to study corrosion, energy, and overall cost reduction. The filter will remove solid particulates and dissolved salt ions from air stream and provide cleaner air under extreme environment. The corrosion inducing salt PM will be removed via mechanical filtration and dissolved salt ions via reactive ion exchange chemistry. Filtration performance, airflow resistance, dust loading, and ion exchange capacity of filter along with energy use and labor cost will allow us to determine life cycle cost of innovative filters in operational environment. Approved for Public Release 15-MDA-8303 (1 July 15)