4.4 Article

Design, Fabrication, and Test of a Hydrothermal Reactor for Origin-of-Life Experiments

Journal

ASTROBIOLOGY
Volume 10, Issue 8, Pages 799-810

Publisher

MARY ANN LIEBERT, INC
DOI: 10.1089/ast.2009.0456

Keywords

Hydrothermal reactor; Hydrothermal mound; Hydrothermal chimneys; Geodes; Transition-metal sulfides; Hadean Ocean

Funding

  1. Marine Biological Laboratories NASA
  2. NSF [DGE 0654336]
  3. National Aeronautics and Space Administration [R.06.021.071, NNH06ZDA001N]
  4. NASA Astrobiology Institute (Icy Worlds)

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We describe a continuous high-pressure flow reactor designed to simulate the unforced convective interaction of hydrothermal solutions and ocean waters with submarine crust on early Earth-conditions appropriate to those that may have led to the onset of life. The experimental operating conditions are appropriate for investigating kinetic hydrothermal processes in the early history of any sizable wet, rocky planet. Beyond the description of the fabrication, we report an initial experiment that tested the design and investigated the feasibility of sulfide and silica dissolution in alkaline solution from iron sulfide and basaltic rock, and their possible subsequent transport as HS- and H2SiO42- in hot alkaline solutions. Delivery of hydrogen sulfide and dihydrogen silicate ions would have led to the precipitation of ferrous hydroxide, hydroxysilicates, and iron sulfides as integral mineral components of an off-ridge compartmentalized hydrothermal mound in the Hadean. Such a mound could, we contend, have acted as a natural chemical and electrochemical reactor and, ultimately, as the source of all biochemistry on our planet. In the event, we show that an average of similar to 1 mM/kg of both sulfide and silica were released throughout, though over 10 mM/kg of HS- was recorded for similar to 100 minutes in the early stages of the experiment. This alkaline effluent from the reactor was injected into a reservoir of a simulacrum of ferrous iron-bearing Hadean Ocean water in an experiment that demonstrated the capacity of such fluids to generate hydrothermal chimneys and a variety of contiguous inorganic microgeode precipitates bearing disseminations of discrete metal sulfides. Comparable natural composite structures may have acted as hatcheries for emergent life in the Hadean.

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