一个数值过程,以了解激光诱导分解光谱中的自我吸收效应
1Department of Physics, Cochin University of Science and Technology Kochi-682022 India anoopkk@cusat.ac.in.
RSC advances
|October 11, 2023
概括
激光诱导分解光谱学 (LIBS) 血中的自我吸收显著影响元素分析的准确性. 在没有校准的LIBS中排除共振线可以大大减少组合估计错误.
科学领域:
- 等离子体物理学的物理学
- 频谱学是一种光谱学.
- 分析化学 分析化学
背景情况:
- 使用激光诱导分解光谱 (LIBS) 精确的元素分析依赖于理想的等离子体条件.
- 现实世界的等离子体往往偏离,特别是在光学薄度方面,导致自我吸收.
- 自吸收,即发射辐射的再吸收,阻碍了定量分析.
研究的目的:
- 为了研究激光产生的血中自我吸收的效果.
- 分析影响自我吸收系数的因素.
- 为了评估自我吸收对量化分析的影响,使用无校准的LIBS.
主要方法:
- 在典型的激光生成等离子体条件下模拟光学厚度的发射光谱.
- 采用萨哈-博尔兹曼,博尔兹曼和斯塔克扩展方程进行光谱模拟.
- 将自我吸收应用于模拟的光谱,并分析其对等离子体温度,路径长度和度的依赖性.
- 评估了没有校准的LIBS准确性,有和没有共振线.
主要成果:
- 随着血温度的增加,自我吸收会减少.
- 随着光路长度和分析物度的增加,自我吸收会增加.
- 除了Mg-Ca合金在无校准LIBS中的共振线外,成分估计误差从27%降至2%.
结论:
- 自吸收是影响LIBS定量元素分析的关键因素.
- 了解和减轻自我吸收,特别是通过管理共振线,对于准确的LIBS结果至关重要.
- 该研究提供了通过解决血自我吸收来优化LIBS分析的见解.
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