首页> 外文期刊>Trends in Ecology & Evolution >Precise measurement of selenium isotopes by HG-MC-ICPMS using a 76-78 double-spike
【24h】

Precise measurement of selenium isotopes by HG-MC-ICPMS using a 76-78 double-spike

机译:HG-MC-ICPMS使用76-78双秒针精确测量硒同位素

获取原文
获取原文并翻译 | 示例
           

摘要

Selenium (Se) stable isotopes are a new geochemical tool with great potential as a tracer of redox processes and chemical cycling of chalcophiles and volatile elements. However, Se isotope measurements in low-Se samples present a formidable analytical challenge. In this study, we report a new method to measure Se stable isotopes (delta Se-82/78; per mil deviation relative to Se NIST SRM 3149) with extremely high precision. Selenium has six stable isotopes and therefore is a good candidate for isotope analysis using a double spike approach, which has the advantage that it can correct for any stable isotope fractionation that may occur during sample processing. We have calibrated a novel Se-76-Se-78 double spike and have developed a rapid and precise analytical protocol on a multi-collector inductively coupled plasma mass spectrometer using an ESI hydride generation introduction system. Sensitivity is over 1000 V per ppm for the total Se signal; a measurement typically requires 25 ng of natural Se. Argon dimer interferences on masses 76, 78 and 80 were corrected in situ by measuring mass 80. Germanium interferences on masses 74 and 76 were corrected by measuring mass 73 and mass 75 was monitored to correct for arsenic hydride on mass 76. Wash-out times were in the order of 180 s, greatly reduced compared to previous studies that rely on on peak zero argon dimer corrections (wash-out times of up to one hour). The 2 s.e. error for a single analysis typically ranges from 0.01 to 0.025 parts per thousand (n = 80) for delta Se-82/78. Long-term reproducibility and accuracy were estimated by multiple analyses of the Se Merck standard over numerous different analytical sessions, resulting in a mean delta Se-82/78 value of -0.989 +/- 0.034 parts per thousand (n = 93; 2 s.d.), which is in excellent agreement with previous studies.
机译:硒(SE)稳定同位素是一种新的地球化学工具,具有作为氧化还原过程的示踪性和硅化合物和挥发性元件的化学循环的潜力。然而,LED-SE样品中的SE同位素测量存在于突起的分析挑战。在这项研究中,我们报告了一种测量SE稳定同位素的新方法(Delta SE-82/78;相对于SE NIST SRM 3149的每个密耳偏差)具有极高的精度。硒具有六个稳定同位素,因此使用双尖峰方法是同位素分析的良好候选者,这具有可以校正在样品处理期间可能发生的任何稳定同位素分级的优点。我们已经校准了一种新型SE-76-SE-78双峰值,并使用ESI氢化物生成引入系统在多收集器电感耦合等离子体质谱仪上开发了一种快速和精确的分析方案。对于总SE信号,灵敏度超过1000 v;测量通常需要25 ng天然SE。通过测量质量80,原位校正质量76,78和80上的氩气二聚体干扰。通过测量质量73,对质量74和76的锗干扰进行校正,并监测质量75以校正质量76上的砷氢化物。洗净时间与之前的研究相比,大大减少了180秒,依靠峰值零氩水二聚体校正(长达一小时的冲洗时间)。 2 S.E.单个分析的误差通常为Delta SE-82/78的0.01至0.025份(n = 80)。通过多种不同分析会话的SE Merck标准的多次分析估计了长期的再现性和准确性,导致平均delta se-82/78值-0.989 +/- 0.034份(n = 93; 2 SD) ),与以前的研究达成很好。

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