首页> 外文期刊>地学前缘(英文版) >High-reliability zircon separation for hunting the oldest material on Earth: An automatic zircon separator with image-processing/microtweezers-manipulating system and double-step dating
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High-reliability zircon separation for hunting the oldest material on Earth: An automatic zircon separator with image-processing/microtweezers-manipulating system and double-step dating

机译:高可靠性的锆石分离器,用于捕获地球上最古老的物质:具有图像处理/微镊子操纵系统和双步测年的自动锆石分离器

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摘要

Despite the recent development in radiometric dating of numerous zircons by LA-ICPMS, mineral sep-aration still remains a major obstacle, particularly in the search for the oldest material on Earth. To improve the efficiency in zircon separation by an order of magnitude, we have designed/developed a new machine - an automatic zircon separator (AZS). This is designed particularly for automatic pick-up of 100 μm-sized zircon grains out of a heavy mineral fraction after conventional separation procedures. The AZS operates in three modes: (1) image processing to choose targeted individual zircon grains out of all heavy minerals spread on a tray, (2) automatic capturing of the individual zircon grains with micro-tweezers, and (3) placing them one-by-one in a coordinated alignment on a receiving tray. The auto-matic capturing was designed/created for continuous mineral selecting without human presence for many hours. This software also enables the registration of each separated zircon grain for dating, by recording digital photo-image, optical (color) indices, and coordinates on a receiving tray. We developed two new approaches for the dating; i.e. (1) direct dating of zircons selected by LA-ICPMS without con-ventional resin-mounting/polishing, (2) high speed U-Pb dating, combined with conventional sample preparation procedures using the new equipment with multiple-ion counting detectors (LA-MIC-ICPMS). With the first approach, Pb-Pb ages obtained from the surface of a mineral were crosschecked with the interior of the same grain after resin-mounting/polishing. With the second approach, the amount of time required for dating one zircon grain is ca. 20 s, and a sample throughput of>150 grains per hour can be achieved with sufficient precision (ca. 0.5%). We tested the practical efficiency of the AZS, by analyzing an Archean Jack Hills conglomerate in Western Australia with the known oldest (>4.3 Ga) zircon on Earth. Preliminary results are positive; we were able to obtain more than 194 zircons that are over 4.0 Ga out of ca. 3800 checked grains, and 9 grains were over 4300 Ma with the oldest at 4371 ± 7 Ma. This separation system by AZS, combined with the new approaches, guarantees much higher yield in the hunt for old zircons.
机译:尽管最近通过LA-ICPMS对许多锆石进行放射性测年的发展,但矿物分离仍然是主要障碍,尤其是在寻找地球上最古老的物质时。为了将锆石分离效率提高一个数量级,我们设计/开发了一种新机器-自动锆石分离器(AZS)。这是专为常规分离程序后从重矿物成分中自动提取100μm大小的锆石颗粒而设计的。 AZS以三种模式运行:(1)进行图像处理以从散布在托盘上的所有重矿物中选择目标单个锆石颗粒;(2)用微型镊子自动捕获单个锆石颗粒;(3)将它们放置一个-在接收托盘上对齐对齐。设计/创建了自动捕获功能,可在无人持续多个小时的情况下连续进行矿物选择。该软件还可以通过记录数字照片图像,光学(色彩)索引和接收托盘上的坐标,来记录每个分离的锆石晶粒以进行测年。我们开发了两种新的约会方法:即(1)通过LA-ICPMS对锆石进行直接测年,而无需常规的树脂安装/抛光;(2)高速U-Pb测年,结合使用新设备和多离子计数检测器的常规样品制备程序( LA-MIC-ICPMS)。第一种方法是,在树脂固定/抛光后,从矿物表面获得的Pb-Pb年龄与相同晶粒的内部进行交叉检查。通过第二种方法,约会一个锆石颗粒所需的时间约为。 20 s,可以以足够的精度(约0.5%)实现每小时大于150粒的样品通量。我们通过分析西澳大利亚州的一个太古代杰克·希尔斯集团与地球上已知最古老的(> 4.3 Ga)锆石,测试了AZS的实际效率。初步结果是积极的;我们能够获得超过194个大于4.0 Ga的锆石。 3800个检查晶粒,其中9个晶粒超过4300 Ma,最古老的是4371±7 Ma。 AZS的这种分离系统与新方法相结合,可确保在寻找旧锆石时获得更高的产量。

著录项

  • 来源
    《地学前缘(英文版)》 |2018年第4期|1073-1083|共11页
  • 作者单位

    Department of Earth Science and Astronomy,The University of Tokyo,Komaba,Meguro,Tokyo 153-8902,Japan;

    ELSI,Tokyo Institute of Technology,Meguro,Tokyo 152-8551,Japan;

    Department of Earth Science and Astronomy,The University of Tokyo,Komaba,Meguro,Tokyo 153-8902,Japan;

    Department of Human Environmental Studies,Yokohama National University,Hodogaya,Yokohama 240-8501,Japan;

    Department of Earth Science and Astronomy,The University of Tokyo,Komaba,Meguro,Tokyo 153-8902,Japan;

    Department of Chemistry,Gakushuin University,Mejiro,Toshima,Tokyo 171-8588,Japan;

    Department of Geology and Mineralogy,Kyoto University,Kitashirakawa Oiwakecho,Sakyo-ku,Kyoto 606-8502,Japan;

    Department of Geology and Mineralogy,Kyoto University,Kitashirakawa Oiwakecho,Sakyo-ku,Kyoto 606-8502,Japan;

    Geochemical Research Center,The University of Tokyo,Hongo 7-3-1,Bunkyo,Tokyo 113-0033,Japan;

    Horiba Ltd.,Kanda,Chiyoda,Tokyo 101-0063,Japan;

    MicroSupport Co. Ltd.,Hiratsuka,Kanagawa 254-0035,Japan;

    Mitani Corporation,Takada,Toshima,Tokyo 171-0033,Japan;

    Riken,Wako,Saitama 351-0198,Japan;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:56:08
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