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Uncertainty budgets for liquid waveguide CDOM absorption measurements

机译:液体波导CDOM吸收测量的不确定性预算

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摘要

Long path length liquid waveguide capillary cell (LWCC) systems using simple spectrometers to determine the spectral absorption by colored dissolved organic matter (CDOM) have previously been shown to have better measurement sensitivity compared to high-end spectrophotometers using 10 cm cuvettes. Information on the magnitude of measurement uncertainties for LWCC systems, however, has remained scarce. Cross-comparison of three different LWCC systems with three different path lengths (50, 100, and 250 cm) and two different cladding materials enabled quantification of measurement precision and accuracy, revealing strong wavelength dependency in both parameters. Stable pumping of the sample through the capillary cell was found to improve measurement precision over measurements made with the sample kept stationary. Results from the 50 and 100 cm LWCC systems, with higher refractive index cladding, showed systematic artifacts including small but unphysical negative offsets and high-frequency spectral perturbations due to limited performance of the salinity correction. In comparison, the newer 250 cm LWCC with lower refractive index cladding returned small positive offsets that may be physically correct. After null correction of measurements at 700 nm, overall agreement of CDOM absorption data at 440 nm was found to be within 5% root mean square percentage error. (C) 2017 Optical Society of America
机译:使用简单光谱仪的长路径长度液波导毛细管电池(LWCC)系统以确定通过使用10cm比色皿的高端分光光度计相比具有更好的测量灵敏度的光谱吸收。然而,关于LWCC系统的测量不确定性的信息仍然稀缺。三种不同LWCC系统具有三种不同路径长度(50,100和250cm)的三种不同LWCC系统的交叉比较,并实现了测量精度和精度的量化,揭示了两个参数的强波长依赖性。发现样品通过毛细管泵送样品的稳定泵送,以改善用样品保持固定的测量的测量精度。具有较高折射率包层的50和100cm LWCC系统的结果显示,系统伪像,包括小但不受未经理的负偏移和由于盐度校正的有限性能而具有高频光谱扰动。相比之下,具有较低折射率包层的较新的250cm LWCC返回的小正偏移可能是物理正确的。在700nm下测量的空校正后,发现CDOM吸收数据的总体协议在440nm处被发现在5%的均方根百分比误差范围内。 (c)2017年光学学会

著录项

  • 来源
    《Applied optics》 |2017年第22期|共10页
  • 作者单位

    Univ Strathclyde Phys Dept Glasgow Lanark Scotland;

    Helmholtz Zentrum Geesthacht Remote Sensing Dept Geesthacht Germany;

    Helmholtz Zentrum Geesthacht Remote Sensing Dept Geesthacht Germany;

    Univ Strathclyde Phys Dept Glasgow Lanark Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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