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May 9, 20260 citationsOpen Access

Waste Container Filtration To Minimize Microbial Escape During Long-Term Storage On Mars

SSSteven SepkaGPGreg S. PaceJSJ. Andy Spry

Key Points

  • The aim is to evaluate the need for a particulate filter to prevent microbial contamination from waste containers on Mars.
  • Discussed the design of a particulate filter to allow particles smaller than 0.2 um.
  • Explored the potential failure of gasket materials sealing waste containers.
  • Addressed testing procedures for filter operation in Martian conditions.
  • The particulate filter is essential to meet planetary protection requirements.
  • Improved leak prevention strategies can extend the functional lifecycle of waste containers.
  • Validation of filter design could enhance safety for future human missions to Mars.

Abstract

In the search for life on Mars, keeping its surface pristine and free of microbes due to human presence is of utmost importance. Astronauts will use emptied logistics containers during their Martian stay to store waste. These containers will be left on the planet's surface and are a potential source of microbial contamination. It is desired for these containers to be free from leaks for a minimum of 50 years. If leaks do occur a likely location will be at the port. At this location the mating surfaces will be sealed using a flexible gasket material like a thin metal or a polymer. Eventually these seals will fail. To mitigate these effects, a particulate filter can be employed to equilibrate the pressure between the Martin environment and inside the container. To meet planetary protection requirements, the filter can only allow particulates smaller than 0.2 um diameter to pass. This paper discusses why a particulate filter may be needed and how such a filter would be tested to survive and operate in the harsh Martian environment.

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Cite This Study

Sepka et al. (2024) studied this question.

synapsesocial.com/papers/69fece1db9154b0b82875d2fhttps://doi.org/10.32865/2346/98750
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