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Microbial purification of perchlorate in a simulated Martian water to ensure its plant cultivation for Martian BLSS

  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

In-situ utilization of Martian water resources is imperative for sustained long-term exploration missions. To address perchlorate contamination that hinders its use in Bioregenerative Life Support Systems (BLSS), this study developed a simulated Martian water (SMW) formula (validated composition, containing 500 mg/L ClO4 and characteristic ions) and evaluated its microbial purification and subsequent plant cultivation potential. The results showed that screened strains Dechloromonas agitata and Brucella intermedia exhibited ClO4 removal capabilities in the SMW. Under optimized conditions of inoculum amount (OD600 = 0.2), pH 7.5, and extra nutrients (CH3COONa 1.8 g/L, NH4Cl 0.25 g/L, NaH2PO4 0.6 g/L), Dechloromonas agitata achieved complete degradation of 500 mg/L ClO4 within 10 days, while Brucella intermedia accomplished full degradation in 5-fold diluted SMW within 15 days. Cultivation of ClO4-sensitive plants (wheat, lettuce) using the purified SMW resulted in 95 % seed germination and significantly enhanced morphological indices (leaf length, plant height) and physiological parameters (photosynthetic pigment content, net photosynthetic rate) compared to the untreated control. Critically, no ClO4 residue was detected in plant tissues cultivated with the purified SMW. These results demonstrate that the developed technology effectively produces water meeting BLSS cultivation requirements, thereby offering a viable pathway for in-situ Martian water utilization.

Original languageEnglish
Pages (from-to)224-233
Number of pages10
JournalActa Astronautica
Volume241
DOIs
StatePublished - Apr 2026

Keywords

  • BLSS
  • Microbial screening and strain optimization
  • Perchlorate removal
  • Plant cultivating evaluation
  • Simulated Martian water

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