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Relationship between particle size distribution and flux in the mesopelagic zone

机译:近中生带粒径分布与通量的关系

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Large aggregates commonly named "marine snow" are difficult to collect and study because of their fragile nature, but they make up the largest fraction of vertical carbon flux in the ocean. Developments in imaging sensors and computer systems have facilitated the development of in situ image acquisition systems that can be used to produce profiles of aggregate size distribution and abundance. However, it is difficult to collect information on the different properties of particles, such as their composition, from in situ images. In this paper, we relate sediment trap data to particle size (d) distributions to estimate the vertical fluxes (F) of mass, paniculate organic carbon (POC), particulate inorganic carbon (PIC) and paniculate organic nitrogen (PON) using simple power relationships (F =Ad~b). Mean aggregate fractal dimension of 2.3 and a size-dependent settling speed are determined from the flux estimations. We have used these relationships to map the distribution of mass flux along 180°W in the equatorial Pacific. Similar mass fluxes below the euphotic zone have been reported along 150°W for the same period with conventional sediment traps, supporting the accuracy of these relationships. The high spatial resolution of sedimentation processes studied in situ with the Underwater Video Profiler allowed us to undertake a detailed study of the role of physical processes in vertical fluxes.
机译:大型集合体因其易碎性而难以收集和研究,但它们构成了海洋中垂直碳通量的最大部分。成像传感器和计算机系统的发展促进了原位图像采集系统的开发,该系统可用于产生骨料粒度分布和丰度的分布图。然而,难以从原位图像收集关于颗粒的不同性质的信息,例如它们的组成。在本文中,我们将沉积物捕集阱数据与粒度(d)分布相关联,以使用简单功率估算质量,颗粒状有机碳(POC),颗粒状无机碳(PIC)和颗粒状有机氮(PON)的垂直通量(F)。关系(F = Ad〜b)。从通量估计值可以确定平均总分形维数为2.3,取决于尺寸的沉降速度。我们使用这些关系来绘制赤道太平洋沿180°W的质量通量分布。据报道,在同一时期内,使用常规沉积物捕集器,在富营养区以下的质量通量沿150°W方向存在着相同的时期,支持了这些关系的准确性。水下视频轮廓仪对沉积过程进行了高空间分辨率的研究,使我们能够对垂直通量中物理过程的作用进行详细研究。

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