Related Experiment Video
Updated: May 17, 2026

Simulation of Early Earth Hydrothermal Chimneys in a Thermal Gradient Environment
Published on: February 27, 2021
Early Solar System hydrothermal activity in chondritic asteroids on 1-10-year timescales
Kathryn A Dyl1, Addi Bischoff, Karen Ziegler
1Department of Earth and Space Sciences, University of California, Los Angeles, CA 90095, USA. katie.dyl@gmail.com
Abstract:
Chondritic meteorites are considered the most primitive remnants of planetesimals from the early Solar System. As undifferentiated objects, they also display widespread evidence of water-rock interaction on the parent body. Understanding this history has implications for the formation of planetary bodies, the delivery of water to the inner Solar System, and the formation of prebiotic molecules. The timescales of water-rock reactions in these early objects, however, are largely unknown. Here, we report evidence for short-lived water-rock reactions in the highly metamorphosed ordinary chondrite breccia Villalbeto de la Peña (L6). An exotic clast (d = 2cm) has coexisting variations in feldspar composition and oxygen isotope ratios that can only result from hydrothermal conditions. The profiles were modeled at T = 800 °C and P(H(2)O) = 1 bar using modified grain-boundary diffusion parameters for oxygen self-diffusion and reaction rates of NaSiCa(-1)Al(-1) exchange in a fumarole. The geochemical data are consistent with hydrothermal activity on the parent body lasting only 1-10 y. This result has wide-ranging implications for the geological history of chondritic asteroids.
Related Concept Videos
Conditions on Early Earth
Conditions on Early Earth
Diversity of Archaea IV
Diversity of Archaea III
Diversity of Archaea I
Origin of Cellular Life

