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地球磁场和杂散磁场对移动质谱仪系统的影响。

The effect of the earth's and stray magnetic fields on mobile mass spectrometer systems.

作者信息

Bell Ryan J, Davey Nicholas G, Martinsen Morten, Short R Timothy, Gill Chris G, Krogh Erik T

机构信息

Chemistry Department, Applied Environmental Research Laboratories (AERL), Vancouver Island University, Nanaimo, BC, Canada,

出版信息

J Am Soc Mass Spectrom. 2015 Feb;26(2):201-11. doi: 10.1007/s13361-014-1027-4. Epub 2014 Dec 20.

Abstract

Development of small, field-portable mass spectrometers has enabled a rapid growth of in-field measurements on mobile platforms. In such in-field measurements, unexpected signal variability has been observed by the authors in portable ion traps with internal electron ionization. The orientation of magnetic fields (such as the Earth's) relative to the ionization electron beam trajectory can significantly alter the electron flux into a quadrupole ion trap, resulting in significant changes in the instrumental sensitivity. Instrument simulations and experiments were performed relative to the earth's magnetic field to assess the importance of (1) nonpoint-source electron sources, (2) vertical versus horizontal electron beam orientation, and (3) secondary magnetic fields created by the instrument itself. Electron lens focus effects were explored by additional simulations, and were paralleled by experiments performed with a mass spectrometer mounted on a rotating platform. Additionally, magnetically permeable metals were used to shield (1) the entire instrument from the Earth's magnetic field, and (2) the electron beam from both the Earth's and instrument's magnetic fields. Both simulation and experimental results suggest the predominant influence on directionally dependent signal variability is the result of the summation of two magnetic vectors. As such, the most effective method for reducing this effect is the shielding of the electron beam from both magnetic vectors, thus improving electron beam alignment and removing any directional dependency. The improved ionizing electron beam alignment also allows for significant improvements in overall instrument sensitivity.

摘要

小型、可现场携带的质谱仪的发展使得在移动平台上进行现场测量得以迅速增长。在这种现场测量中,作者在具有内部电子电离的便携式离子阱中观察到了意外的信号变异性。磁场(如地球磁场)相对于电离电子束轨迹的方向会显著改变进入四极离子阱的电子通量,从而导致仪器灵敏度发生显著变化。针对地球磁场进行了仪器模拟和实验,以评估(1)非点源电子源、(2)垂直与水平电子束方向以及(3)仪器本身产生的二次磁场的重要性。通过额外的模拟探索了电子透镜聚焦效应,并通过安装在旋转平台上的质谱仪进行的实验进行了对比。此外,使用导磁金属来屏蔽(1)整个仪器免受地球磁场的影响,以及(2)电子束免受地球和仪器磁场的影响。模拟和实验结果均表明,对方向依赖性信号变异性的主要影响是两个磁矢量相加的结果。因此,减少这种影响的最有效方法是屏蔽电子束免受两个磁矢量的影响,从而改善电子束的对准并消除任何方向依赖性。改进的电离电子束对准还可以显著提高仪器的整体灵敏度。

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