Clathrate Hydrates of Oxidants in the Ice Shell of Europa

笼状水合物 天体生物学 化学 放射分析 天体化学 星际冰 紫外线 冰卫星 材料科学 水合物 物理 物理化学 行星 有机化学 天体物理学 水溶液 银河系 量子力学 星际介质 土星 光电子学
作者
K. P. Hand,Christopher F. Chyba,R. W. Carlson,J. F. Cooper
出处
期刊:Astrobiology [Mary Ann Liebert, Inc.]
卷期号:6 (3): 463-482 被引量:99
标识
DOI:10.1089/ast.2006.6.463
摘要

Europa's icy surface is radiolytically modified by high-energy electrons and ions, and photolytically modified by solar ultraviolet photons. Observations from the Galileo Near Infrared Mapping Spectrometer, ground-based telescopes, the International Ultraviolet Explorer, and the Hubble Space Telescope, along with laboratory experiment results, indicate that the production of oxidants, such as H2O2, O2, CO2, and SO2, is a consequence of the surface radiolytic chemistry. Once created, some of the products may be entrained deeper into the ice shell through impact gardening or other resurfacing processes. The temperature and pressure environments of regions within the europan hydrosphere are expected to permit the formation of mixed clathrate compounds. The formation of carbon dioxide and sulfur dioxide clathrates has been examined in some detail. Here we add to this analysis by considering oxidants produced radiolytically on the surface of Europa. Our results indicate that the bulk ice shell could have a ∼1.7–7.6% by number contamination of oxidants resulting from radiolysis at the surface. Oxidant-hosting clathrates would consequently make up ∼12–53% of the ice shell by number relative to ice, if oxidants were entrained throughout. We examine, in brief, the consequences of such contamination on bulk ice shell thickness and find that clathrate formation could lead to substantially thinner ice shells on Europa than otherwise expected. Finally, we propose that double occupancy of clathrate cages by O2 molecules could serve as an explanation for the observation of condensed-phase O2 on Europa. Clathrate-sealed, gas-filled bubbles in the near surface ice could also provide an effective trapping mechanism, though they cannot explain the 5771 Å (O2)2 absorption.
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