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A method for determining oceanic particle size distributions and particle composition using scanning electron microscopy coupled with energy dispersive spectroscopy

机译:一种使用扫描电子显微镜结合能量色散光谱法确定海洋粒径分布和粒子组成的方法

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To understand the behavior of light scattered in seawater, it is necessary to know the size distribution of particles in seawater, as well as their composition (refractive index distribution) and complex shape. A method has been developed to determine marine PSDs and simultaneously characterize their chemical compositions by utilizing a scanning electron microscope (SEM) coupled with an energy dispersive spectrometer (EDS) and applying sophisticated image analysis techniques that minimized user bias including automatic image thresholding. The method was validated by verifying the PSD and chemical composition of Arizona test dust, which has a well-documented size distribution and chemical composition. PSDs of field samples collected from the coastal Long Island Sound and the remote South Pacific Ocean were also determined. Where applicable, PSDs agreed well overall with other PSD determining methods such as electroresistive counting and near-forward diffraction theory inversions. The method performed optimally when the particle mass on the filter was between 0.4mg and 1.0mg. With this in mind, measuring particle beam attenuation coefficient at 650nm (c_(650)) can provide immediate feedback in the field to determine filter volumes for sample preparation.
机译:为了了解在海水中散射的光的行为,有必要知道海水中颗粒的大小分布,以及它们的组成(折射率分布)和复杂形状。已经开发出一种方法来确定海洋PSD,并通过利用扫描电子显微镜(SEM)结合能量色散光谱仪(EDS)并应用复杂的图像分析技术(包括自动图像阈值最小化)来最小化用户的偏见,从而对它们的化学成分进行表征。该方法通过验证PSD和亚利桑那测试粉尘的化学成分进行了验证,该粉尘具有充分记录的尺寸分布和化学成分。还确定了从沿海长岛海峡和偏远的南太平洋收集的野外样品的PSD。在适用的情况下,PSD与其他PSD确定方法(例如电阻计和近前衍射理论反演)总体上非常吻合。当过滤器上的颗粒质量在0.4mg至1.0mg之间时,该方法的效果最佳。考虑到这一点,测量650nm处的粒子束衰减系数(c_(650))可以在现场提供即时反馈,以确定用于样品制备的过滤器体积。

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