Hydrogen in acapulcoites and lodranites: A unique source of water for planetesimals in the inner Solar System

被引:7
作者
Stephant, A. [1 ,2 ]
Zhao, X. [2 ]
Anand, M. [2 ]
Davidson, J. [3 ]
Carli, C. [1 ]
Cuppone, T. [4 ]
Pratesi, G. [1 ,4 ]
Franchi, I. A. [2 ]
机构
[1] Ist Astrofis & Planetol Spaziali INAF, Rome, Italy
[2] Open Univ, Sch Phys Sci, Milton Keynes MK7 6AA, England
[3] Arizona State Univ, Buseck Ctr Meteorite Studies, Sch Earth & Space Explorat, Tempe, AZ 85287 USA
[4] Univ Firenze, Dipartimento Sci Terra, Florence, Italy
基金
欧盟地平线“2020”; 英国科学技术设施理事会;
关键词
primitive achondrites; water; H-isotopes; acapulcoites; lodranites; PARENT BODY; OXYGEN-ISOTOPE; EARTHS WATER; ORIGIN; CONSTRAINTS; CHONDRITES; MANTLE; VESTA; DIFFERENTIATION; ACHONDRITES;
D O I
10.1016/j.epsl.2023.118202
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Acapulcoites and lodranites are primitive achondrites, sampling a common planetesimal formed a few million years after calcium-aluminium rich inclusions in the inner Solar System, that provides information into melting and differentiation processes in the early inner Solar System. The chemistry and mineralogy of their chondritic parent body lies in between enstatite and ordinary chondrites. As they record a range in planetary differentiation degree, from 1% up to 20% partial melting, with lodranites experiencing the most melt extraction, we investigate (i) the behaviour of hydrogen in terms of abundance and isotopic composition during the early stages of planetary differentiation and (ii) the source(s) of hydrogen for the acapulcoite-lodranite parent body in order to place it in our current understanding of the source(s) of water in the inner Solar System. In this study, we analysed water content and hydrogen isotopic composition of phosphates and nominally anhydrous minerals in a range of acapulcoite and lodranite meteorite samples. While apatites seemed to have recorded a degassing signature, no such variations were observed in the H2O-& delta;D systematics of the nominally anhydrous minerals suggesting that subsequent to their crystallisation, acapulcoites and lodranites experienced minimal modifications to their volatile composition during thermal metamorphism and partial melting. The low abundance of water in acapulcoite and lodranite nominally anhydrous minerals (i.e., average 5.2 & PLUSMN;1.6 & mu;g/g H2O) suggests that their parent body was much drier than what has been estimated for enstatite and ordinary chondrite parent bodies. We estimated a bulk water content for the acapulcoite-lodranite parent body of 3 to 19 & mu;g/g H2O, similar to the ureilite parent body. The hydrogen isotopic composition of nominally anhydrous minerals in acapulcoites and lodranites (-211 & PLUSMN;145%o), and in particular for the two falls Acapulco and Lodran (-239 & PLUSMN;149%o), matches with the hydrogen isotopic composition recorded by nominally anhydrous minerals in ordinary chondrite falls, eucrites, S-type asteroid Itokawa, consistent with a common source of water for the inner Solar System planetesimals, isotopically distinctive to bulk carbonaceous chondrites.& COPY; 2023 The Author(s). Published by Elsevier B.V. This is an open access article under the CC BY license (http://creativecommons .org /licenses /by /4 .0/).
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页数:11
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