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Biosynthesized Thermoplastic/Regolith Composites for Closed-Loop In-Space Manufacturing
In-Space Manufacturing (ISM) is vital to supporting a sustained human presence on the Moon or Mars. With payload launch prices ranging from $4,000 to more than $1 million per kg, reducing payload mass is of critical interest. Using in-situ resources for ISM is particularly attractive as it allows for a system of Earth-independent manufacturing for the Lunar surface, reducing the initial payload mass that is required for current ISM systems that rely on terrestrially synthesized materials. This talk presents new composite materials made from Lunar and Martian regolith and Poly(3-hydroxybutyrate) (PHB), a thermoplastic that offers the ability to be biosynthesized in space using various in-situ resources like organic waste or atmospheric CO2 as feedstock. The addition of regolith provides a route to creating materials with a diverse set of properties which will be discussed. The development of these materials represents the first step in creating a system of closed-loop ISM, which is critical to establishing a lasting human presence in space.
Document ID
20260007758
Acquisition Source
Glenn Research Center
Document Type
Presentation
External Source(s)
LEW-20921-1
Authors
Allison Christy
(Glenn Research Center Cleveland, United States)
Date Acquired
August 12, 2026
Subject Category
Composite Materials
Meeting Information
Meeting: American Chemical Society Fall 2026 Meeting (ACS 2026)
Location: Chicago, IL
Country: US
Start Date: August 23, 2026
End Date: August 27, 2026
Sponsors: American Chemical Society (ACS)
Funding Number(s)
WBS: 789538.10.26.22.02
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Technical Review
Single Expert
Keywords
In situ resource utilization
In space manufacturing
Regolith
Composites
Bio-based materials
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