METNA CO — Environmental Protection Agency SBIR Phase I: 16-NCER-6A

METNA CO — SBIR Phase I award from Environmental Protection Agency.

Phase I SBIR feasibility signal

  • Phase I awards fund proof-of-concept work. For capture teams, they mark early interest from Environmental Protection Agency in a technical approach.
  • Watch for Phase II follow-ons from the same firm/topic family — that conversion path is where budgets and transition pressure rise.
  • Obligated amount $100,000. Cross-check similar awards in the same agency and technology tags for going-rate context.
  • Topic code 16-NCER-6A 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
$100,000
Agency
Environmental Protection Agency
Program / Phase
SBIR · Phase I
Topic
16-NCER-6A
Solicitation
SOL-NC-16-00038
NAICS
Place of performance
MI
Period
2017-09-01 → 2018-02-28

Description

Organic resin-bonded reconstituted wood products, including oriented strandboard (OSB) and medium density fiberboard (MDF), are major sources of the volatile organic compounds (VOCs) released to the building interior, that are harmful to human health. The main thrust of this project is to significantly reduce the release of VOCs by replacing organic resins with inorganic polymer binders in reconstituted wood panels. Inorganic polymers are zero-emission binders with significantly reduced energy content, carbon footprint and cost when compared with organic resins. Their technical, sustaninability and economic advantages have been demonstrated primarily in application to lightweight composite products used in extreme service environments. A preliminary feasibility study, conducted in the course of preparing this proposal, produced further evidence for the merits of inorganic polymers in the building applications targeted here. Reconstituted wood panels, including OSB and MDF account for $20 billion annual saled in the United States. The inherently high moisture resistance, thermal stability, fore resistance and durability as well as their distinctly low carbon footprint, energy content and cost of inorganic polymers are anticipated to provide reconstituted wood products with major initial and life-cycle economic and sustainability advantages while significantly improving the safety and longevity of buildings.