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Updated: Jan 9, 2026

An Experimental Protocol for Studying Mineral Effects on Organic Hydrothermal Transformations
Published on: August 8, 2018
Hydrothermal alteration of Ryugu from a disruptive impact recorded in a returned sample
Devin L Schrader1,2, Thomas J Zega3, Maizey C Benner3
1Buseck Center for Meteorite Studies, School of Earth and Space Exploration, Arizona State University, Tempe, AZ, USA. devin.l.schrader@nasa.gov.
Abstract:
Samples returned from C-type asteroid (162173) Ryugu by JAXA's Hayabusa2 spacecraft provide material free of terrestrial alteration for analysis. Previous work shows that Ryugu was aqueously altered below 100 °C under neutral to alkaline fluid conditions. Such low-temperature alteration was unexpected based on spacecraft observations which indicated that Ryugu's surface may be thermally altered. Here we show that sulfides in a single particle (A0016) returned by the Hayabusa2 mission are unlike any previously described from Ryugu. The presence and compositions of violarite, pyrite, chalcopyrite, pentlandite, and Fe-depleted pyrrhotite grains provide direct evidence for hydrothermal alteration between 230 to 400 °C under highly oxidizing and acidic fluid conditions. We hypothesize that A0016 was near to the site of a large impact that disrupted Ryugu's precursor parent body.
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