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LASER EXCITED SHPOL'SKII SPECTROSCOPY FOR THE SELECTIVE EXCITATION AND DETERMINATION OF POLYNUCLEAR AROMATIC HYDROCARBONS.

机译:激光激发的SHPOL'SKII光谱用于选择性激发和测定多核芳族烃。

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摘要

Laser excited Shpol'skii spectroscopy (LESS) was developed as an analytical technique for the qualitative and quantitative determination of polynuclear aromatic hydrocarbons (PAHs) in complex mixtures. An excimer laser pumped, dye-laser coupled with gated detection was employed in the LESS system. The sharp absorption bandwidth exhibited by PAHs in Shpol'skii hosts (n-alkanes) at 15 K facilitated the selective excitation and sensitive detection of the luminescence through narrow band laser excitation. It was shown that LESS is capable of distinguishing between structural isomers as well as alkyated substitutional isomers when these occurred in complex mixtures. Luminescence spectra, site population dependency on concentrations, analytical curves, and detection limits were studied. It was found that: (a) reproducible site population of PAHs at concentration levels below one ppm could be achieved through reproducible cooling regimes; (b) self-absorption of the 0-0 fluorescence lines could be alleviated on excitation with reduced laser power; (c) analytical calibration curves were linear over 3.5 decades in concentration; and (d) detection limits were on the order of parts-per-trillion. The applications of LESS to the direct qualitative and quantitative determination of PAHs in various liquid fuel samples were demonstrated. Quantitative data obtained via standard addition and internal reference approaches showed excellent agreement.
机译:激光激发Shpol'skii光谱法(LESS)是一种用于定性和定量测定复杂混合物中多环芳烃(PAHs)的分析技术。在LESS系统中采用了准分子激光泵浦,染料激光和门控检测。多环芳烃在Shpol'skii主体(正构烷烃)中在15 K处表现出的急剧吸收带宽,促进了窄带激光激发的选择性激发和灵敏的发光检测。结果表明,当它们在复杂混合物中出现时,LESS能够区分结构异构体和烷基化取代异构体。研究了发光光谱,站点人口对浓度的依赖性,分析曲线和检测限。发现:(a)通过可再生的冷却方案可以实现浓度低于1 ppm的PAHs的可复制位点种群; (b)在激发时以降低的激光功率可以缓解0-0荧光线的自吸收; (c)在3.5年的浓度范围内,分析校准曲线是线性的; (d)检出限约为万亿分之一。证明了LESS在各种液体燃料样品中PAHs的直接定性和定量测定中的应用。通过标准添加和内部参考方法获得的定量数据显示出极好的一致性。

著录项

  • 作者

    YANG, YEN.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Analytical chemistry.
  • 学位 Ph.D.
  • 年度 1981
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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