International audienceMercury is notorious as the most reduced planet with the highest metal/silicate ratio, yet paradoxically data from the MESSENGER spacecraft show that its iron-poor crust is high in sulfur (up to ∼6 wt%, ∼80× Earth crust abundance) present mainly as Ca-rich sulfides on its surface. These particularities are simply impossible on the other terrestrial planets. In order to understand the role played by sulfur during the formation of Mercury, we investigated the phase relationships in Mercurian analogs of enstatite chondrite-like composition experimentally under conditions relevant to differentiation of Mercury (∼1 GPa and 1300–2000 °C). Our results show that Mg-rich and Ca-rich sulfides, which both contain Fe, crystallize ...
Recent findings of the MESSENGER mission on Mercury have brought new evidence for its reducing natur...
peer reviewedUnderstanding the behavior of elements under highly reduced conditions is fundamental t...
peer reviewedIn this study we investigate the likeliness of the existence of an iron sulfide layer (...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
© 2016 Elsevier B.V. Chemical data from the MESSENGER spacecraft revealed that surface rocks on Mer...
Mercury, the closest planet to the Sun, has a significant sulfur content in its crust (0.5-3.5 wt% S...
Mercury, the closest planet to the Sun, has a significant sulfur content in its crust (0.5-3.5 wt% S...
Recent findings of the MESSENGER mission on Mercury have brought new evidence for its reducing natur...
peer reviewedUnderstanding the behavior of elements under highly reduced conditions is fundamental t...
peer reviewedIn this study we investigate the likeliness of the existence of an iron sulfide layer (...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
International audienceMercury is notorious as the most reduced planet with the highest metal/silicat...
© 2016 Elsevier B.V. Chemical data from the MESSENGER spacecraft revealed that surface rocks on Mer...
Mercury, the closest planet to the Sun, has a significant sulfur content in its crust (0.5-3.5 wt% S...
Mercury, the closest planet to the Sun, has a significant sulfur content in its crust (0.5-3.5 wt% S...
Recent findings of the MESSENGER mission on Mercury have brought new evidence for its reducing natur...
peer reviewedUnderstanding the behavior of elements under highly reduced conditions is fundamental t...
peer reviewedIn this study we investigate the likeliness of the existence of an iron sulfide layer (...