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Outgassing Characterization of Common Trash Items for Disposal By Nanoracks Airlock on the International Space Station The arrival of the Nanoracks Airlock to the International Space Station (ISS) has provided the ISS program the capability to dispose of common trash items. The concept of operations involved the crew bagging up those items into a trash bag and then utilizing the robotic arm and the airlock to jettison the trash bag. Because of the unknown thermal vacuum stability of some of the items, a molecular contamination concern was raised by the ISS program as the trash is exposed to vacuum upon the evacuation of air from the airlock and the robotic arm moving the airlock to its jettison location. In order to characterize the representative outgassing rates for ISS trash, thermal vacuum testing was performed at White Sands Test Facility. Trash was sorted into a “lower” outgassing bag and a “mixed” bag. The “mixed” trash bag contained more items that were suspected to be not vacuum stable. Load cells were chosen as the primary means for measuring mass loss. A sharp decay in the outgassing rate was observed in the first 30 minutes followed by a slower decay. As expected, the “mixed” bag lost more mass. While Quartz Crystal Microbalances (QCMs) are often utilized to measure long term outgassing rates and the sticking coefficients of contaminants at different operating temperatures for vacuum stable materials, these measurements proved difficult due to the amount and the inclusion of materials with suspect thermal vacuum stability. Because of high rates of material outgassing, the facility was unable to maintain the CQCM temperature setpoint of 80 K QCMs.. The QCMs operating at the warmer temperatures also saturated on occasion due to high levels of condensed matter. Though testing was able to confirm high risk of outgassing contamination for the program, true sticking coefficients could not be determined, available measurements are provided herein.
Document ID
20260003501
Acquisition Source
Johnson Space Center
Document Type
Preprint (Draft being sent to journal)
Authors
Alvin Y Huang
(Boeing (United States) Chicago, United States)
Randy L Olsen
(Boeing (United States) Chicago, United States)
Erica S Worthy
(Johnson Space Center Houston, United States)
Michael L Hamilton
(NASA Retired Houston, Texas, United States)
Lynda L Gavin
(Johnson Space Center Houston, United States)
Robert J Pickle
(Johnson Space Center Houston, United States)
Javier A Flores
(White Sands Test Facility Las Cruces, United States)
Ilse Reyes
(White Sands Test Facility Las Cruces, NM)
Susana A Harper
(White Sands Test Facility Las Cruces, NM)
Querubin Montalvo Correa
(Leidos (United States) Reston, United States)
Date Acquired
April 27, 2026
Publication Date
August 3, 2026
Publication Information
Publication: AIAA Journal of Spacecraft and Rockets
Publisher: American Institute of Aeronautics and Astronautics - AIAA
Subject Category
Chemistry and Materials (General)
Nonmetallic Materials
Spacecraft Design, Testing and Performance
Space Sciences (General)
Funding Number(s)
PROJECT: Alternative Authorization to ISS Contract, NAS15-10000; Modification Number 2755
Distribution Limits
Public
Copyright
Public Use Permitted.
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