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Hot Water, Cold Reality: Experimental Analysis of Sorption Constraints in Iodine Filtration Media Under Heated-Water ConditionsIodine has been widely employed as a residual biocide in potable water applications during crewed missions. Unlike other biocides, it is essential to remove iodine from drinking water prior to consumption, as its biocidal concentration raises health concerns. Consequently, effectively removing iodine species from water is a critical step in potable water processing. Although the non-biocided heated leg has not violated microbial specifications on the International Space Station, any wetted volume lacking biocide presents potential risks for long‑duration exploration missions and for systems that are sensitive to microbial growth/contamination. Recent assessments indicate, however, that iodine‑removal performance may degrade under elevated temperature conditions, such as those required for dispensing hot water for food preparation. This reduction in efficacy appears to stem from both the potential physical degradation of filtration media and the temperature‑dependent behavior of adsorption processes. To investigate the influence of water temperature on the efficacy of filtration media for iodine removal, a series of adsorption capacity tests were conducted at both room temperature and elevated temperatures (90 °C). These experiments aimed to benchmark the performance of the adsorbents that constitute the ACTEX filter in the ISS’s potable water dispenser. The findings of this study provide critical insights into the iodine filtration process, verify the potential performance shortfall under elevated temperature conditions, and establish the basis for defining new absorbent requirements to ensure reliable iodine removal in future mission architectures.
Document ID
20260003017
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Rogelio E Garcia Fernandez
(Amentum (United States) Chantilly, France)
Mary Lou Nadeau
(Aerodyne Research Billerica, United States)
Phillip Hicks
(Amentum (United States) Chantilly, France)
Jaione Romero Mangado
(Amentum (United States) Chantilly, France)
Michael Callahan
(Johnson Space Center Houston, United States)
Date Acquired
April 13, 2026
Subject Category
Man/System Technology and Life Support
Chemistry and Materials (General)
Report/Patent Number
ICES-2026-5
Meeting Information
Meeting: 55th International Conference on Environmental Systems (ICES)
Location: Rio Grande
Country: PR
Start Date: July 12, 2026
End Date: July 16, 2026
Sponsors: The International Conference on Environmental Systems, Inc.
Funding Number(s)
CONTRACT_GRANT: 80JSC022DA035
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
Single Expert
Keywords
iodine
biocide
ACTEX
water filtration
xPWD
PWD
ECLSS
LSS
drinking water
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