...
首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Ferric iron content of ferropericlase as a function of composition, oxygen fugacity, temperature and pressure: Implications for redox conditions during diamond formation in the lower mantle
【24h】

Ferric iron content of ferropericlase as a function of composition, oxygen fugacity, temperature and pressure: Implications for redox conditions during diamond formation in the lower mantle

机译:阿魏酸铁的三价铁含量与组成,氧逸度,温度和压力的关系:下地幔金刚石形成过程中氧化还原条件的影响

获取原文
获取原文并翻译 | 示例
           

摘要

We investigated the ferric iron (Fe~(3+)) concentration in (Mg,Fe)O ferropericlase using the flank method applied to Mg-Fe interdiffusion couples of ferropericlase. Diffusion couples with Mg/(Mg+Fe) in the range 0.44 to 1 were annealed at temperatures of 1673-1873K and pressures of 5-24GPa over a wide range of oxygen fugacities. Oxygen fugacity was controlled by Fe, Ni, Mo, and Re metal capsules and their corresponding oxide phases. Based on our results and available experimental data, we derived an equation for the Fe~(3+) solubility in ferropericlase applicable to depths at the top of the lower mantle: [Fe~(3+)]=C (X_(Fe) ~4 f_(O2))~m exp{-((1-XFe)E~*_(Mg)+X_(Fe)E~* _(Fe)+PV~*)/RT}, where C=2.6(1)×10~(-3), m=0.114(3), E~* _(Mg)=-35(3) [kJ/mol], E~* _(Fe)=-98(2) [kJ/mol], and V~*=2.09(3) [cm~3/mol]. The value of the oxygen fugacity exponent m implies that Fe~(3+) mostly occupies tetrahedral sites under these conditions, which is consistent with the results of previously reported M?ssbauer spectroscopy studies. Based on this relationship, we calculated the redox conditions of ferropericlase inclusions in diamonds believed to have come from the lower mantle. The estimated oxygen fugacities are close to the upper stability limit of diamond in mantle peridotite at the top of the lower mantle at adiabatic or slightly superadiabatic temperatures, which suggests that ferropericlase inclusions recorded and preserved the conditions at which diamond was precipitated from carbonates or carbonatite melts near the top of the lower mantle.
机译:我们采用了侧翼法研究了Mg-Fe互配对的铁镁铁中铁(Fe〜(3+))在(Mg,Fe)O铁镁铁中的浓度。 Mg /(Mg + Fe)在0.44至1范围内的扩散对在1673-1873K的温度和5-24GPa的压力下在宽范围的氧气逸度下退火。氧逸度由Fe,Ni,Mo和Re金属胶囊及其相应的氧化物相控制。根据我们的结果和可用的实验数据,我们得出了适用于下地幔顶部深度的Fe〜(3+)在铁硅石蜡中的溶解度方程:[Fe〜(3 +)] = C(X_(Fe) 〜4 f_(O2))〜m exp {-((1-XFe)E〜* _(Mg)+ X_(Fe)E〜* _(Fe)+ PV〜*)/ RT},其中C = 2.6 (1)×10〜(-3),m = 0.114(3),E〜* _(Mg)=-35(3)[kJ / mol],E〜* _(Fe)=-98(2) [kJ / mol],且V * * = 2.09(3)[cm 3 / mol]。氧逸度指数m的值表示在这些条件下Fe〜(3+)主要占据四面体位点,这与先前报道的Msssbauer光谱研究结果一致。基于这种关系,我们计算了钻石中的铁链石蜡内含物的氧化还原条件,据信这些钻石来自下地幔。在绝热或略微绝热的温度下,估计的氧逸度接近下地幔顶部地幔橄榄岩中金刚石的稳定性上限,这表明铁硅藻土夹杂物记录并保留了碳酸盐或碳酸盐熔岩中金刚石沉淀的条件。下地幔顶部附近。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号