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Correction of pathlength amplification in the filter-pad technique for measurements of particulate absorption coefficient in the visible spectral region

机译:滤光片技术中光程放大的校正,用于测量可见光谱区域中的颗粒吸收系数

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Spectrophotometric measurement of particulate matter retained on filters is the most common and practical method for routine determination of the spectral light absorption coefficient of aquatic particles, a(p)(lambda), at high spectral resolution over a broad spectral range. The use of differing geometrical measurement configurations and large variations in the reported correction for pathlength amplification induced by the particle/filter matrix have hindered adoption of an established measurement protocol. We describe results of dedicated laboratory experiments with a diversity of particulate sample types to examine variation in the pathlength amplification factor for three filter measurement geometries; the filter in the transmittance configuration (T), the filter in the transmittance-reflectance configuration (T-R), and the filter placed inside an integrating sphere (IS). Relationships between optical density measured on suspensions (ODs) and filters (ODf) within the visible portion of the spectrum were evaluated for the formulation of pathlength amplification correction, with power functions providing the best functional representation of the relationship for all three geometries. Whereas the largest uncertainties occur in the T method, the IS method provided the least sample-to-sample variability and the smallest uncertainties in the relationship between ODs and ODf. For six different samples measured with 1 nm resolution within the light wavelength range from 400 to 700 nm, a median error of 7.1% is observed for predicted values of ODs using the IS method. The relationships established for the three filter-pad methods are applicable to historical and ongoing measurements; for future work, the use of the IS method is recommended whenever feasible. (C) 2015 Optical Society of America
机译:分光光度法测量保留在过滤器上的颗粒物是在宽光谱范围内以高光谱分辨率常规测定水生颗粒的光谱光吸收系数a(p)(λ)的最常用和实用的方法。使用不同的几何测量配置以及所报告的由粒子/过滤器矩阵引起的光程放大的校正的较大变化,阻碍了已建立的测量协议的采用。我们描述了各种颗粒样品类型的专用实验室实验的结果,以检查三种滤波器测量几何形状的光程放大系数的变化;透射率配置(T)的滤光器,透射率-反射率配置(T-R)的滤光器以及位于积分球(IS)内部的滤光器。评估了光谱可见部分内的悬浮液(ODs)和滤光片(ODf)上测得的光密度之间的关系,以制定光程长度放大校正,其中幂函数提供了这三种几何关系的最佳函数表示。 T方法的不确定性最大,而IS方法在OD与ODf之间的关系中提供的样本间差异最小,不确定性最小。对于在400至700 nm的光波长范围内以1 nm分辨率测量的六个不同样品,使用IS方法测得的OD预测值的中值误差为7.1%。为这三种滤板方法建立的关系适用于历史和正在进行的测量。为了以后的工作,建议在可行的情况下使用IS方法。 (C)2015年美国眼镜学会

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