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DOI10.1029/2019GL083017
Experimental Constraints on an MgO Exsolution-Driven Geodynamo
Du, Zhixue1; Boujibar, Asmaa2; Driscoll, Peter3; Fei, Yingwei2
2019-07-16
发表期刊GEOPHYSICAL RESEARCH LETTERS
ISSN0094-8276
EISSN1944-8007
出版年2019
卷号46期号:13页码:7379-7385
文章类型Article
语种英语
国家Peoples R China; USA
英文摘要

MgO exsolution has been proposed to drive an early geodynamo. Experimental studies, however, have drawn different conclusions regarding the applicability of MgO exsolution. While many studies suggest that significant Mg can dissolve into the Earth's core, the amount of MgO exsolved out of the core, which hinges on the temperature dependence of MgO solubility, remains unclear. Here we present new high-temperature experiments to better constrain the temperature and compositional dependence of Mg partitioning between Fe alloys and silicate liquids. Our experiments show that Mg partitioning is weakly dependent on temperature, while confirming its strong dependence on oxygen content in Fe alloys. This implies that MgO exolution is limited as the core cools but can help drive an early geodyanamo if the core heat loss is slightly subadiabatic. If an exosolution-driven geodynamo did occur, it was likely over a limited time span that depends on the core thermal history and conductivity.


Plain Language Summary The existence of Earth's magnetic field has been dated back to at least 3.5 billion years ago. Yet its origin is under intense debates. A recent hypothesis is that abundant MgO, a major component of the Earth's mantle, may exsolve out of the Earth's core, providing energy to generate long-lasting magnetic field. However, how much MgO can exsolve out of the core is still poorly constrained. Here we conduct new high-pressure experiments to study the geochemical behavior of MgO under the Earth's core conditions. We find that the solubility of MgO in the Earth's core is weakly dependent on temperature. This suggests that the exsolution of MgO as the core cools is limited and can only power the geodynamo over a relatively limited time. Thus, the continuous operation of the Earth's ancient magnetic field remains a mystery.


领域气候变化
收录类别SCI-E
WOS记录号WOS:000476960100037
WOS关键词MAGNESIUM PRECIPITATION ; CORE ; IRON ; CONDUCTIVITY ; MANTLE ; EARTH
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/185056
专题气候变化
作者单位1.Chinese Acad Sci, Guangzhou Inst Geochem, State key Lab Isotope Geochem, Guangzhou, Guangdong, Peoples R China;
2.Carnegie Inst Sci, Geophys Lab, Washington, DC USA;
3.Carnegie Inst Sci, Dept Terr Magnetism, Washington, DC USA
推荐引用方式
GB/T 7714
Du, Zhixue,Boujibar, Asmaa,Driscoll, Peter,et al. Experimental Constraints on an MgO Exsolution-Driven Geodynamo[J]. GEOPHYSICAL RESEARCH LETTERS,2019,46(13):7379-7385.
APA Du, Zhixue,Boujibar, Asmaa,Driscoll, Peter,&Fei, Yingwei.(2019).Experimental Constraints on an MgO Exsolution-Driven Geodynamo.GEOPHYSICAL RESEARCH LETTERS,46(13),7379-7385.
MLA Du, Zhixue,et al."Experimental Constraints on an MgO Exsolution-Driven Geodynamo".GEOPHYSICAL RESEARCH LETTERS 46.13(2019):7379-7385.
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