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3D Printed Minerals as Astrobiology Analogs of Hydrothermal Vent Chimneys

  • John Paul Jones
  • , Samad A. Firdosy
  • , Laura M. Barge
  • , John C. Bescup
  • , Scott M. Perl
  • , Xu Zhang
  • , Andre M. Pate
  • , Roy E. Price
  • Jet Propulsion Laboratory, California Institute of Technology
  • Ohio State University

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

Hydrothermal vents, which are highly plausible habitable environments for life and of interest for some origin-of-life scenarios, may exist on icy moons such as Europa or Enceladus in addition to Earth. Some hydrothermal vent chimney structures are extremely porous and friable, making their reconstruction in the lab challenging (e.g., brucite or saponite in alkaline hydrothermal settings). Here, we present the results from our efforts to reconstruct a simplified chimney structure directly out of mineral powder using binder jet additive manufacturing. Olivine sand was chosen for this initial method development effort since it represents a naturally occurring seafloor material and is inexpensively available in large quantities in powder form. The crystal structure of olivine used for the print was not modified during the process, as confirmed by powder X-ray diffraction (XRD). To characterize the microstructure of our 3D printed precipitates, we used computed tomography (CT) X-ray scan techniques. We also evaluated a chimney precipitate from a sample collected from the Prony Hydrothermal Field (PHF), southern New Caledonia, an alkaline system driven by serpentinization with mineralogy composed of brucite and carbonates. While not directly comparable from a mineralogical point of view, the microstructure and porosity of both precipitates was similar, suggesting that our 3D printing technique may be a valuable tool for future astrobiology research on hydrothermal vent precipitates.

Original languageEnglish
Pages (from-to)1405-1412
Number of pages8
JournalAstrobiology
Volume20
Issue number12
DOIs
StatePublished - Dec 2020

Keywords

  • 3D printing
  • Hydrothermal vent
  • Icy moon

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