作者
Jabrane Labidi, S König, Timon Kurzawa, Aierken Yierpan, Ronny Schoenberg
发表日期
2018/1/1
期刊
Earth and Planetary Science Letters
卷号
481
页码范围
212-222
出版商
Elsevier
简介
Element transfer from the solar nebular gas to solids occurred either through direct condensation or via heterogeneous reactions between gaseous molecules and previously condensed solid matter. The precursors of altered sulfides observed in chondrites are for example attributed to reactions between gaseous hydrogen sulfide and metallic iron grains. The transfer of selenium to solids likely occurred through a similar pathway, allowing the formation of iron selenides concomitantly with sulfides. The formation rate of sulfide however remains difficult to assess. Here we investigate whether the Se isotopic composition of meteorites contributes to constrain sulfide formation during condensation stages of our solar system. We present high precision Se concentration and δ 82/78 Se data for 23 chondrites as well as the first δ 74/78 Se, δ 76/78 Se and δ 77/78 Se data for a sub-set of seven chondrites. We combine our …
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