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Experimental evidence that potassium is a substantial radioactive heat source in planetary cores

机译:实验证据表明钾是行星核中大量的放射性热源

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The hypothesis that K-40 may be a significant radioactive heat source in the Earth's core was proposed on theoretical grounds(1,2) over three decades ago, but experiments(3-8) have provided only ambiguous and contradictory evidence for the solubility of potassium in iron-rich alloys. The existence of such radioactive heat in the core would have important implications for our understanding of the thermal evolution of the Earth and global processes such as the generation of the geomagnetic field, the core-mantle boundary heat flux and the time of formation of the inner core(9-12). Here we provide experimental evidence to show that the ambiguous results obtained from earlier experiments are probably due to previously unrecognized experimental and analytical difficulties. The high-pressure, high-temperature data presented here show conclusively that potassium enters iron sulphide melts in a strongly temperature-dependent fashion and that K-40 can serve as a substantial heat source in the cores of the Earth and Mars. [References: 29]
机译:三十多年前的理论基础(1,2)提出了K-40可能是地球核心中重要的放射性热源的假设,但实验(3-8)仅提供了关于K-40溶解度的模棱两可和矛盾的证据。富铁合金中的钾。核心中存在这种放射性热量,对于我们对地球热演化以及诸如地磁场的产生,核心-地幔边界热通量以及内部形成时间等全球过程的理解具有重要的意义。核心(9-12)。在这里,我们提供实验证据,以表明从较早的实验中获得的模棱两可的结果可能是由于先前无法识别的实验和分析困难。本文提供的高压高温数据最终表明,钾以强烈的温度依赖性方式进入硫化铁熔体,并且K-40可以作为地球和火星核心的重要热源。 [参考:29]

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