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利用电子探针技术对石棉纤维进行元素分析。

Elemental analysis of asbestos fibers by means of electron probe techniques.

作者信息

Rubin I A, Maggiore C J

出版信息

Environ Health Perspect. 1974 Dec;9:81-94. doi: 10.1289/ehp.74981.

Abstract

The identification and characterization of microparticles has become an important field of study in recent years due to their presence in the environment and association with pathogenesis. Asbestos fibers have been intensively studied for these reasons. Since conventional microscopy has not provided unique identification of these materials, electron probe microanalysis, which yields chemical data, has been utilized in conjunction with other techniques to provide the necessary answers.The options now available to undertake electron probe analysis are discussed with relation to their utilization for microparticle analyses. Two types of electron sources are available, thermionic and field emission. The x-ray spectroscopy requires the use of either wavelength-dispersive focussing crystal spectrometers or an energy-dispersive Si(Li) x-ray detector. Data are presented to demonstrate the feasibility of asbestos identification by using modified raw data obtained with a scanning electron microscope and energy-dispersive x-ray spectrometer. Further, the extension of the technique to other microparticle identification problems is discussed.

摘要

近年来,由于微粒存在于环境中并与发病机制相关联,其识别与表征已成为一个重要的研究领域。基于这些原因,石棉纤维已得到深入研究。由于传统显微镜无法对这些材料进行独特识别,因此已将能产生化学数据的电子探针微分析与其他技术结合使用,以提供必要的答案。本文讨论了目前可用于进行电子探针分析的选项及其在微粒分析中的应用。有两种类型的电子源可供使用,即热离子源和场发射源。X射线光谱分析需要使用波长色散聚焦晶体光谱仪或能量色散硅(锂)X射线探测器。本文给出的数据表明,利用扫描电子显微镜和能量色散X射线光谱仪获得的修正原始数据来识别石棉是可行的。此外,还讨论了将该技术扩展到其他微粒识别问题的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a04/1475380/4213abd3c279/envhper00499-0093-a.jpg

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