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Potential of a Spectroscopic Measurement Method Using Adding–Doubling to Retrieve the Bulk Optical Properties of Dense Microalgal Media

机译:光谱测量方法的潜力使用添加加倍来检索致密微藻介质的散装光学性质

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摘要

In the context of algal mass cultivation, current techniques used for the characterization of algal cells require time-consuming sample preparation and a large amount of costly, standard instrumentation. As the physical and chemical properties of the algal cells strongly affect their optical properties, the optical characterization is seen as a promising method to provide an early diagnosis in the context of mass cultivation monitoring. This article explores the potential of a spectroscopic measurement method coupled with the inversion of the radiative transfer theory for the retrieval of the bulk optical properties of dense algal samples. Total transmittance and total reflectance measurements were performed over the 380-1020 nm range on dense algal samples with a double integrating sphere setup. The bulk absorption and scattering coefficients were thus extracted over the 380-1020 nm range by inverting the radiative transfer theory using inverse-adding-doubling computations. The experimental results are presented and discussed; the configuration of the optical setup remains a critical point. The absorption coefficients obtained for the four samples of this study appear not to be more informative about pigment composition than would be classical methods in analytical spectroscopy; however, there is a real added value in measuring the reduced scattering coefficient, as it appears to be strongly correlated to the size distribution of the algal cells.
机译:在藻类培养的背景下,用于藻类细胞表征的当前技术需要耗时的样品制备和大量的昂贵标准仪器。由于藻类细胞的物理和化学性质强烈影响其光学性质,因此光学表征被视为在大规模培养监测背景下提供早期诊断的有希望的方法。本文探讨了与辐射转移理论的反演耦合的光谱测量方法的电位,以检索致密藻类样品的散装光学性质的散装光学性质。在具有双积分球设置的致密藻样上的380-1020nm范围内进行总透射率和总反射率测量。因此,通过使用反向加倍计算来反转辐射转移理论,因此在380-1020nm范围内提取体积吸收和散射系数。提出和讨论了实验结果;光学设置的配置仍然是关键点。对于本研究的四个样本获得的吸收系数看起来与颜料组合物更具信息性,而不是分析光谱中的典型方法;然而,在测量降低的散射系数时存在真正的附加值,因为它看起来与藻类细胞的尺寸分布鲜明相关。

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