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Field instrumentation in atomic spectroscopy

机译:原子光谱中的现场仪器

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摘要

The techniques of field analytical chemistry (FAC) have the potential to reduce both analysis time and cost by providing analytical data on site while eliminating the need for sample collection and transport. These methods could be of considerable interest in the field of environmental monitoring and industrial process control. Much of FAC is accomplished through the use of portable analytical instruments. The emphasis of this review was on field-portable atomic spectrometry, with particular focus upon two techniques. laser-induced breakdown spectroscopy (LIBS) and tungsten coil atomic absorption spectrometry (W Coil AAS). LIBS and W Coil AAS have been described in detail, with special attention to instrumentation, analytical performance, applications and examples of portable devices. The two techniques were compared and found to be complimentary. Competing technology, not necessarily based upon atomic spectrometry, was also briefly discussed in order to provide a glimpse of the overall picture of FAC techniques used for the determination of metals. These rival techniques include X-ray fluorescence spectrometry (XRF), immunoassay, capillary electrophoresis (CE), and electrochemical sensors.
机译:现场分析化学(FAC)技术有潜力通过在现场提供分析数据同时减少样品收集和运输的需要,从而减少分析时间和成本。这些方法在环境监测和工业过程控制领域中可能引起相当大的兴趣。通过使用便携式分析仪器可完成许多FAC。这篇综述的重点是现场便携式原子光谱仪,特别着重于两种技术。激光诱导击穿光谱法(LIBS)和钨线圈原子吸收光谱法(W Coil AAS)。已经详细描述了LIBS和W Coil AAS,特别注意仪器,分析性能,便携式设备的应用和示例。比较了这两种技术,发现是互补的。还简要讨论了竞争技术(不一定基于原子光谱法),以便了解用于测定金属的FAC技术的总体情况。这些竞争技术包括X射线荧光光谱(XRF),免疫测定,毛细管电泳(CE)和电化学传感器。

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