...
首页> 外文期刊>Journal of mineralogical and petrological sciences >Effect of temperature, pressure and chemical composition on the electrical conductivity of granulite and geophysical implications
【24h】

Effect of temperature, pressure and chemical composition on the electrical conductivity of granulite and geophysical implications

机译:温度,压力和化学成分对花岗石电导率的影响及地球物理意义

获取原文
           

摘要

Electrical conductivities of three granulite samples (main minerals: plagioclase, quartz, and biotite) with different chemical compositions (W _(B), the weight percent of Fe_(2)O_(3) = 5.49, 8.75, and 14.79 wt%) were researched using a complex impedance spectroscopic technique at 1.0–3.0 GPa and 623–1073 K from 10~(?1) to 10~(6) Hz. The experimental results indicated that the granulite conductivities markedly increased with temperature and slightly decreased with increasing pressure. Under the experimental conditions, the temperature dependence of the conductivities of granulite followed an Arrhenius relationship at certain temperatures. The electrical conductivities of granulite significantly increased with increasing biotite content and W _(B). According to the activation enthalpies and previous studies, the conduction mechanism of the granulite samples with W _(B) = 8.75 and 14.79 wt% was small polaron conduction under the experimental conditions, and the conduction mechanisms of the granulite sample with W _(B) = 5.49 wt% were small polaron conduction at high temperatures and impurity conduction at low temperatures. The high conductivity anomalies under the ductile shear zones in southern India can be interpreted by the conductivities of granulite with interconnected biotite and a high iron content (>14.79 wt%).
机译:具有不同化学成分(W_(B),Fe_(2)O_(3)的重量百分比= 5.49、8.75和14.79的三个花岗石样品(主要矿物:斜长石,石英和黑云母)的电导率wt%)是使用复阻抗光谱技术在10〜(?1)至10〜(6)Hz的1.0–3.0 GPa和623–1073 K的条件下研究的。实验结果表明,花岗石电导率随温度明显升高,随压力升高而略有下降。在实验条件下,在某些温度下,粒状电导率的温度依赖性遵循Arrhenius关系。随着黑云母含量和W _(B)的增加,花岗石的电导率显着增加。根据活化焓和先前的研究,在实验条件下,W _(B)= 8.75和14.79 wt%的粒状样品的导电机理为小极化子导电,而 i> W _(B)= 5.49 wt%是高温下的小极化子传导和低温下的杂质传导。印度南部韧性剪切带下的高电导率异常可以通过黑云母的电导率与黑云母相互连接和高铁含量(> 14.79 wt%)来解释。

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