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Wavelength Dependence in the Analysis of Carbon Content in Coal by Nanosecond 266 nm and 1064 nm Laser Induced Breakdown Spectroscopy

机译:纳秒级266 nm和1064 nm激光诱导击穿光谱法分析煤中碳含量的波长相关性

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摘要

The wavelength dependence of laser induced breakdown spectroscopy (LIBS) in the analysis of the carbon contents of coal was studied using 266 nm and 1064 nm laser radiations. Compared with the 1064 nm wavelength laser ablation, the 266 nm wavelength laser ablation has less thermal effects, resulting in a better crater morphology on the coal pellets. Besides, the 266 nm wavelength laser ablation also provides better laser-sample coupling and less plasma shielding, resulting in a higher carbon line intensity and better signal reproducibility. The carbon contents in the bituminous coal samples have better linearity with the line intensities of atomic carbon measured by the 266 nm wavelength than those measured by the 1064 nm wavelength. The partial least square (PLS) model was established for the quantitative analysis of the carbon content in coal samples by LIBS. The results show that both of the 266 nm and 1064 nm wavelengths are capable of achieving good performance for the quantitative analysis of carbon content in coal using the PLS method.
机译:使用266 nm和1064 nm激光辐射研究了激光诱导击穿光谱法(LIBS)在分析煤中碳含量时的波长依赖性。与1064 nm波长的激光烧蚀相比,266 nm波长的激光烧蚀具有较小的热效应,从而在煤球上产生了更好的弹坑形态。此外,266 nm波长的激光烧蚀还提供了更好的激光-样品耦合和更少的等离子体屏蔽,从而获得了更高的碳线强度和更好的信号再现性。烟煤样品中的碳含量与在266 nm波长处测得的原子碳的线强度相比,在1064 nm波长处测得的碳强度具有更好的线性。建立了偏最小二乘(PLS)模型,用于通过LIBS定量分析煤样品中的碳含量。结果表明,使用PLS方法对266纳米和1064纳米波长的碳都可以实现良好的定量分析。

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