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Sustainable Bioplastics Manufacturing

Active
Federal

Contract Overview

Solicitation details, issuing organization, response deadlines, documents, and interested companies for this government contract opportunity.

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This subcontract, titled Sustainable Bioplastics Manufacturing, is issued by Triad - DOE Contractor for the Department of Energy. The project focuses on the development and supply of sustainable bioplastics by utilizing monomers derived from the enzymatic breakdown of polymers. Working in collaboration with prime partners at Los Alamos National Laboratory, the contractor will convert degraded plastic polymers into new materials through synthesis and testing, employing polymerization reactors and characterization tools such as DSC and TGA to deliver commercial-grade products. The performance of this contract will take place in Los Alamos, New Mexico, under NAICS code 325199. The opportunity was posted on July 8, 2026, with a response deadline set for October 1, 2026.

General Info

Triad DOE subcontract for sustainable bioplastics manufacturing and development in Los Alamos, New Mexico.

Agency

Department Of Energy → Triad - DOE ContractorView Agency

NAICS

325199 - All Other Basic Organic Chemical ManufacturingView NAICS

Place of Performance

Los Alamos, NM, 87545, USA

Set-Aside

NONE

Documents

This scope was carved out of S-167703.

The full solicitation package (2 documents), including the RFP, is on the prime solicitation, not on this scope.

View the prime solicitation

TECHNOLOGY LICENSING OPPORTUNITY: Platform to Accelerate Discovery of Tailored Industrial Enzymes (PAD-TIE)

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Timeline

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Organization & Contact Information

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AgencyDepartment Of Energy → Triad - DOE Contractor
ContactsNo contacts available
OfficeN/A
Organization / Agency
Department Of Energy → Triad - DOE Contractor
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Office AddressN/A
ContactsNo contact information available

Full Description

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Supplies and develops sustainable bioplastics using monomers derived from the enzymatic breakdown of polymers for prime partners collaborating with Los Alamos National Laboratory. Converts degraded plastic polymers into new sustainable bioplastic materials through polymer synthesis and testing using polymerization reactors and material characterization tools (DSC, TGA). Delivers commercial-grade sustainable bioplastic products.

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NAICS: 541715
Federal
Simulator Collection for Atomic to Continuum Scales (SCACS)
Solicitation # S-196281
The Simulator Collection for Atomic to Continuum Scales (SCACS), identified by solicitation number S-196281, is an AI-driven multiscale simulation platform developed by Los Alamos National Laboratory to predict spatially varying, direction-dependent thermal and electrical transport in systems of up to one million atoms. By utilizing proprietary Site-Projected Thermal Conductivity (SPTC-AI) and Site-Projected Electronic Conductivity (SPEC-AI) modules, the toolkit bridges the gap between high-fidelity atomistic physics and continuum-scale engineering models. The system employs graph neural networks and FEniCSx-based solver modules, such as sptc2fem and spec2fem, to generate precise temperature and current maps while maintaining atomic-scale anisotropy. This allows engineers to identify localized hot-spots and transport pathways that are typically missed by conventional continuum models, reducing simulation runtimes from days to minutes. Currently at Technology Readiness Level 4 with a pending U.S. patent and associated software T5032, SCACS is offered as a licensing opportunity through the Richard P. Feynman Center for Innovation. The technology is designed for seamless integration with industry-standard finite-element solvers like Abaqus and has broad commercial applications in semiconductor advanced packaging, fusion energy systems, aerospace, battery thermal management, and quantum device manufacturing. The opportunity is managed by the Department of Energy via Triad, with a response deadline of February 16, 2027.
Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)

POSTED

25 days ago

DEADLINE

in 5 months
View Details

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