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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Determination of K-Ar ages in milligram samples using an infrared laser for argon extraction
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Determination of K-Ar ages in milligram samples using an infrared laser for argon extraction

机译:使用红外激光氩提取法测定毫克样品中的K-Ar年龄

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The K-Ar dating method has been used for decades to decipher the ages of terrestrial and extraterrestrial minerals and rocks. The natural radioactive decay of a metal to a rare gas is an advantage that allows the determination of very small amounts of argon by mass spectrometry. Although the Ar-Ar method has superseded K-Ar, the latter is still used and it has room for improvement. One of these is the reduction of the analyzed sample mass, a desideratum of any current analytical technique. I report here our experience in K-Ar geochronology of milligram-sized samples using laser heating and melting for gas extraction. This modification of the classical K-Ar technique has not been, to my knowledge, used in any other laboratory in the world and deserves a detailed description of its advantages and limitations.
机译:K-Ar测年法已经被用来解释陆地和地外矿物和岩石的年龄了数十年。金属向稀有气体的自然放射性衰变是一个优点,可以通过质谱法测定非常少量的氩。尽管Ar-Ar方法已经取代了K-Ar,但后者仍在使用,并且仍有改进的空间。其中之一是减少分析样品的质量,这是目前任何分析技术所需要的。我在这里报告我们在使用激光加热和熔化进行气体萃取的毫克级样品的K-Ar年代学方面的经验。据我所知,对经典K-Ar技术的这种改进还没有在世界上任何其他实验室中使用过,值得对其优点和局限性进行详细描述。

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