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Implementation of laser-induced breakdown spectroscopy as a continuous emissions monitor for toxic metals

机译:实施激光诱导击穿光谱法作为有毒金属的连续排放监测仪

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Laser-induced breakdown spectroscopy (LIBS) has been considered for some time as a potential CEM method for toxic metals. Recently, improvements in sampling methodology and signal processing have allowed LIBS to achieve detection limits below the pro- posed MACT limits for 5 out of 6 of the RCRA metals. This paper discusses performance improved by nearly 2 orders of magnitude of this in situ monitoring technique following implementation of conditional analysis. Results from trial burns at two incinerators and at a DoD contained burn facility are highlighted. At the incinerators, implementation of conditional analysis yielded much lower detection limits than previously reported using the LIBS technique. At the contained burn facility. reproducible, transient Pb measurements were recorded in real-time for concentration values that varied by more than two orders of magnitude. Method detection limits of between 2 and 100 μg/dscm are reported for toxic metals Be, Cd, Cr, Hg, and Pb.
机译:激光诱导击穿光谱法(LIBS)被认为是有毒金属潜在的CEM方法。最近,采样方法和信号处理方面的改进使LIBS的检测极限低于RCRA 6种金属中的5种所建议的MACT极限。本文讨论了执行条件分析后,将这种原位监控技术的性能提高了近2个数量级。突出显示了在两个焚化炉和国防部装有燃烧装置的试验性燃烧的结果。在焚化炉中,条件分析的实施产生的检出限比以前使用LIBS技术报告的要低得多。在封闭的燃烧设施中。实时记录浓度值变化超过两个数量级的可重复的瞬态Pb测量值。据报告,有毒金属Be,Cd,Cr,Hg和Pb的方法检测限为2至100μg/ dscm。

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