TY - JOUR
T1 - Defying Lunar Dust
T2 - A Revolutionary Helmet Design to Safeguard Astronauts’ Health in Long-Term Lunar Habitats †
AU - Salvino, Christopher
AU - Altshuler, Kenneth
AU - Beatty, Paul
AU - DeJarnette, Drew
AU - Ybanez, Jesse
AU - Obana, Hazel
AU - Osabel, Edwin
AU - Dummer, Andrew
AU - Lutz, Eric
AU - Momayez, Moe
N1 - Publisher Copyright:
© 2025 by the authors.
PY - 2025/10
Y1 - 2025/10
N2 - Lunar dust remains one of the most critical unresolved challenges to long-duration lunar missions. Its sharp, abrasive, and electrostatically charged particles are easily inhaled and can penetrate deep into the lungs, reaching the bloodstream and the brain. Despite airlocks and HEPA filtration systems, dust will inevitably infiltrate lunar habitats and threaten astronaut health. We present a novel patent protected helmet design. This system uses a multilayered, synergistic mitigation approach combining mechanical and electrostatic defenses. The mechanical system delivers HEPA-filtered, ionized air across the user’s face, while the electrostatic barrier repels charged particles away from the respiratory zone. These two systems work together to prevent dust from entering the user’s breathing space. Designed for use inside lunar habitats, this helmet represents a potential solution to an unaddressed, life-threatening problem. It allows astronauts to eat, talk, and sleep while maintaining a protected respiratory zone and provides targeted inhalation-level protection in an environment where dust exposure is otherwise unavoidable. This concept is presented at Technology Readiness Level 2 (TRL 2) to prompt early engagement and feedback from the scientific and engineering communities.
AB - Lunar dust remains one of the most critical unresolved challenges to long-duration lunar missions. Its sharp, abrasive, and electrostatically charged particles are easily inhaled and can penetrate deep into the lungs, reaching the bloodstream and the brain. Despite airlocks and HEPA filtration systems, dust will inevitably infiltrate lunar habitats and threaten astronaut health. We present a novel patent protected helmet design. This system uses a multilayered, synergistic mitigation approach combining mechanical and electrostatic defenses. The mechanical system delivers HEPA-filtered, ionized air across the user’s face, while the electrostatic barrier repels charged particles away from the respiratory zone. These two systems work together to prevent dust from entering the user’s breathing space. Designed for use inside lunar habitats, this helmet represents a potential solution to an unaddressed, life-threatening problem. It allows astronauts to eat, talk, and sleep while maintaining a protected respiratory zone and provides targeted inhalation-level protection in an environment where dust exposure is otherwise unavoidable. This concept is presented at Technology Readiness Level 2 (TRL 2) to prompt early engagement and feedback from the scientific and engineering communities.
KW - inhaled dust
KW - lunar dust
KW - lunar respiratory diseases
UR - https://www.scopus.com/pages/publications/105020172723
UR - https://www.scopus.com/pages/publications/105020172723#tab=citedBy
U2 - 10.3390/aerospace12100888
DO - 10.3390/aerospace12100888
M3 - Article
AN - SCOPUS:105020172723
SN - 2226-4310
VL - 12
JO - Aerospace
JF - Aerospace
IS - 10
M1 - 888
ER -