用于测定岩石中稀有气体同位素的质谱仪和萃取线的自动化

R. Singer, J. Curtice, M. Kurz, D. Lott
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引用次数: 0

摘要

本文介绍了伍兹霍尔海洋研究所(WHOI)同位素地球化学设施中用于测定岩石和矿物样品中稀有气体同位素浓度的萃取线和质谱仪的自动化。气体抽取在由WHOI设计和制造的自动化超高真空系统中进行。感兴趣的稀有气体通过粉碎或高温融合在真空中提取,使用低温木炭捕集器(在70和3000 K之间操作)分离,并交付给Mass Analyzer Products 215-50质谱仪进行同位素组成测量。该系统由运行在Windows NT操作系统下的PC机控制。该软件主要是用Visual Basic编写的,由WHOI开发,提供了提取过程与质谱仪测量的同步。编写了萃取线控制软件,使用户可以方便地修改和定制程序,并允许自动化操作。采油管线软件还提供了一个测试调度程序,该程序具有构建模块,可以由计算机控制系统硬件,而无需对操作人员修改和扩展系统进行编程。另一台PC上的软件通过IEEE-488 (GPIB)总线控制质谱仪的操作。该代码在WHOI进行了修改,以提供质谱仪与萃取线的同步,并优化测量气体浓度的测定。该系统主要用于氦和氖同位素测量,在全24小时自动化模式下,但也用于Ar和Xe同位素的设计和测试。该系统致力于测量地幔和宇宙射线产生的稀有气体同位素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automation of a mass spectrometer and extraction line for the determination of noble gas isotopes in rocks
This paper describes the automation of an extraction line and mass spectrometer for the determination of noble gas isotope concentrations in rock and mineral samples, housed in the Isotope Geochemistry Facility at Woods Hole Oceanographic Institution (WHOI). The gas extraction occurs in an automated ultra-high-vacuum system designed and fabricated at WHOI. The noble gases of interest are extracted in vacuo by crushing or high temperature fusion, separated using a cryogenic charcoal trap (operated between 70 and 3000 K), and delivered to a Mass Analyzer Products 215-50 mass spectrometer for measurement of isotopic composition. The system is controlled by a PC running under the Windows NT operating system. The software, largely written in Visual Basic and developed at WHOI, provides for synchronization of the extraction process with the mass spectrometer measurements. The extraction line control software is written so that the user can easily modify and customize the procedures, and allows automated operation. The extraction line software also provides a test scheduler, with building blocks which allow control of the system hardware by the computer without programming for modification and extension of the system by the operators. Software on a second PC controls the operation of the mass spectrometer over an IEEE-488 (GPIB) bus. This code was modified at WHOI to provide for the synchronization of the mass spectrometer with the extraction line and to optimize the determination of the measured gas concentrations. The system is primarily used to make helium and neon isotope measurements, in full 24 hour automation mode, but has also been designed and tested for Ar and Xe isotopes. This system is devoted to the measurement of both mantle and cosmic-ray-produced noble gas isotopes.
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