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Relationships between spectral optical properties and optically active substances in a clear oligotrophic lake

机译:透明贫营养湖中光谱光学性质与旋光性物质之间的关系

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The absorption and scattering coefficients in the euphotic zone of oligotrophic Lake Taupo, New Zealand, were measured at 19 stations across the 620 km~2 lake in late fall during the period of mixed layer deepening and development of the annual phytoplankton maximum. These coefficients were subsequently related to the water content of colored dissolved organic matter (CDOM), phytoplankton, and nonalgal particles via measurements of the absorption spectra of these optically active substances and of chlorophyll a and suspended particle concentrations. Measurements of the spectral diffuse attenuation coefficient for downwelling irradiance (K_d) and of reflectance (L_u/E_d) revealed that the clear blue waters of Lake Taupo had a minimum K_d of 0.09 m~(-1) at 500 nm and maximum reflectance at 490 nm. The measured K_d and L_u/E_d were well described by modeled spectra that were computed using a radiative transfer model (Hydrolight) assuming relatively low values for the backscattering ratio (0.008-0.014). The relationships established here between the optical properties and optically active substances were consistent with previous observations in case 2 marine waters, and they will provide a basis for prediction of eutrophication, climate, and other environmental effects on the blueness and transparency of large oligotrophic lakes.
机译:在混合层加深和年度浮游植物最大值发展时期的秋季末期,在620 km〜2湖的19个站点测量了寡营养化陶波湖富营养区的吸收和散射系数。通过测量这些旋光性物质的吸收光谱,叶绿素a和悬浮颗粒的浓度,这些系数随后与有色溶解有机物(CDOM),浮游植物和非藻类颗粒的含水量相关。测量下沉辐照度的光谱扩散衰减系数(K_d)和反射率的光谱漫射衰减系数(L_u / E_d)表明,陶波湖的湛蓝海水在500 nm处的最小K_d为0.09 m〜(-1),在490级时的最大反射率纳米假设反向散射值相对较低(0.008-0.014),则使用辐射转移模型(Hydrolight)计算出的建模光谱可以很好地描述测得的K_d和L_u / E_d。此处建立的光学性质和光学活性物质之间的关系与案例2海水中先前的观察结果一致,它们将为预测富营养化,气候和其他环境影响大型贫营养湖的蓝色和透明性提供基础。

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