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Determination of plasma temperature and electron density of iron in iron slag samples using laser induced breakdown spectroscopy

机译:使用激光诱导击穿光谱法测定铁渣样品中铁的血浆温度和电子密度

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Plasma temperature and electron density of iron in iron slag samples taken from a local plant is studied. Optimal experimental conditions were evaluated using Nd: YAG laser at 1064 nm. Some toxic elements were identified and quantitative measurements were also made. Plasma temperature and electron density were estimated using standard equations and well resolved iron spectral lines in the 229.06-358.11 nm region at 10, 20, 30 and 40 mJ laser pulse energy with 4.5 μs delay time. These parameters were found to increase with increase in laser pulse energy. The Boltzmann distrihution and experimentally measured line intensities support the assumption that the laser-induced plasma was in local thermal equilibrium. It is worth mentioning that iron and steel sector generates tons of solid waste and residues annually containing variety of contaminants which can be harmful to the environment and therefore knowledge, proper analysis and investigation of such iron slag is important.
机译:研究了从当地植物中取出的铁渣样品中铁的等离子体温度和电子密度。使用Nd:YAG激光在1064nm处评价最佳实验条件。鉴定了一些有毒元素,并进行了定量测量。使用标准方程和在10,20,30和40MJ激光脉冲能量的标准方程和良好的溶液的铁谱线中估计等离子体温度和电子密度。发现这些参数随着激光脉冲能量的增加而增加。 Boltzmann分手和实验测量的线强度支持假设激光诱导的等离子体在局部热平衡。值得一提的是,钢铁部门每年产生大量的固体废物和残留物,这些污染物各种可能对环境有害,因此知识,适当的分析和对这种铁渣的调查很重要。

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