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Improved determination of particulate absorption from combined filter pad and PSICAM measurements

机译:改进了组合滤垫和PSICAM测量对颗粒吸收的确定

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摘要

Filter pad light absorption measurements are subject to two major sources of experimental uncertainty: the so-called pathlength amplification factor, β, and scattering offsets, o, for which previous null-correction approaches are limited by recent observations of non-zero absorption in the near infrared (NIR). A new filter pad absorption correction method is presented here which uses linear regression against point-source integrating cavity absorption meter (PSICAM) absorption data to simultaneously resolve both β and the scattering offset. The PSICAM has previously been shown to provide accurate absorption data, even in highly scattering waters. Comparisons of PSICAM and filter pad particulate absorption data reveal linear relationships that vary on a sample by sample basis. This regression approach provides significantly improved agreement with PSICAM data (3.2% RMS%E) than previously published filter pad absorption corrections. Results show that direct transmittance (T-method) filter pad absorption measurements perform effectively at the same level as more complex geometrical configurations based on integrating cavity measurements (IS-method and QFT-ICAM) because the linear regression correction compensates for the sensitivity to scattering errors in the T-method. This approach produces accurate filter pad particulate absorption data for wavelengths in the blue/UV and in the NIR where sensitivity issues with PSICAM measurements limit performance. The combination of the filter pad absorption and PSICAM is therefore recommended for generating full spectral, best quality particulate absorption data as it enables correction of multiple errors sources across both measurements.
机译:滤光片的光吸收率测量受实验不确定性的两个主要因素的影响:所谓的光程放大系数β和散射偏移o,对于这些误差,以前的零点校正方法受到最近对非零吸收的观察的限制。近红外(NIR)。本文提出了一种新的滤垫吸收校正方法,该方法对点源积分腔吸收仪(PSICAM)的吸收数据进行线性回归,以同时解析β和散射偏移。先前已证明PSICAM即使在高度散射的水中也能提供准确的吸收数据。 PSICAM和滤垫颗粒吸收数据的比较表明,线性关系随样品的不同而变化。这种回归方法与PSICAM数据(3.2%RMS%E)的一致性比以前公布的滤垫吸收校正显着提高。结果表明,基于积分腔测量(IS方法和QFT-ICAM),直接透射率(T方法)滤板吸收测量在与更复杂的几何配置相同的水平上有效执行,因为线性回归校正可补偿对散射的敏感性T方法中的错误。这种方法可以针对PSICAM测量的灵敏度问题限制性能的蓝/紫外和NIR波长产生准确的滤板颗粒吸收数据。因此,建议结合使用滤垫吸收和PSICAM来生成全光谱,最佳质量的颗粒吸收数据,因为它可以校正两次测量中的多个误差源。

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