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Flow-through PSICAM: a new approach for determining water constituents absorption continuously

机译:流通式PSICAM:一种连续测定水分吸收率的新方法

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Determination of spectral absorption coefficients in seawater is of interest for biologic oceanographers for various reasons, but faces also several problems, especially if continuous measurements are required. We introduce the flow-through point-source integrating cavity absorption meter (ft-PSICAM) as a new tool for the continuous measurement of spectral absorption coefficients in a range of 400-710 nm. A description of the system is given and its performance in comparison with a conventional PSICAM has been evaluated on two cruises in 2011 in the southern part of the North Sea (German Bight). Furthermore, factors influencing the measurement are discussed. When comparing the data of both systems, a good linear correlation has been found for all wavelengths (r~2>0.91). Deviations between systems were different with respect to the wavelength examined with slopes of linear fits between 1.1 and 1.65 and offsets between -0.1 and 0.01, with the higher values at shorter wavelengths. They were caused mainly due to contamination of the flow-through system during operation by phytoplankton particles. Focus was also laid on the measurement of chlorophyll-α concentrations ([chl-α]) and total suspended matter concentrations ([TSM]) on the basis of absorption coefficient determination. For this, appropriate relationships were established and [chl-α] and [TSM] values were calculated from the relevant ft-PSICAM absorption coefficients. Their progression matches well with the progression of fluorescence and turbidity measurements made in parallel. In conclusion, the ft-PSICAM is successful in measuring spectral absorption coefficients continuously and resolving relative changes in seawater optical properties.
机译:出于各种原因,生物学海洋学家对确定海水中的光谱吸收系数很感兴趣,但也面临一些问题,尤其是在需要连续测量的情况下。我们介绍了流通点源积分腔吸收仪(ft-PSICAM),它是用于连续测量400-710 nm范围内光谱吸收系数的新工具。给出了该系统的说明,并已在2011年北海南部的两次航行中对与常规PSICAM的性能进行了评估(德国湾)。此外,讨论了影响测量的因素。比较两个系统的数据时,发现所有波长的线性相关性都很好(r〜2> 0.91)。对于所检查的波长,系统之间的偏差是不同的,其中线性拟合的斜率在1.1和1.65之间,偏移量在-0.1和0.01之间,在较短的波长处具有较高的值。它们主要是由于浮游植物颗粒在操作过程中对流通系统的污染所致。在吸收系数测定的基础上,重点还放在叶绿素-α浓度([chl-α])和总悬浮物浓度([TSM])的测量上。为此,建立适当的关系,并从相关的ft-PSICAM吸收系数计算出[chl-α]和[TSM]值。它们的进程与并行进行的荧光和浊度测量的进程非常匹配。总之,ft-PSICAM在连续测量光谱吸收系数和解决海水光学特性的相对变化方面是成功的。

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