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Effects of turbulence on TEP dynamics under contrasting nutrient conditions: implications for aggregation and sedimentation processes

机译:养分对比条件下湍流对TEP动态的影响:对聚集和沉降过程的影响

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The effect of different small-scale turbulence intensities on transparent exopolymeric particle (TEP) dynamics was studied in natural North Sea coastal waters. The abundance, volume, size spectra and carbon content of TEP were examined in mesocosms with and without added nutrients: no addition (T series) and a Redfield ratio supply on Day 1 (NT series), fertilized with 16 μM N:1 μM P:32 μM Si to favor phytoplankton production in the form of a bloom. Turbulence was generated by vertically oscillating grids, operating continuously for 14 d. We determined whether TEP production, under contrasting nutrient conditions, changes with level of turbulence. TEP concentration increased with turbulence. The effect of turbulence was likely indirect, by inducing an increase in growth rates of diatoms that actively exude TEP precursor, particularly when nutrients were exhausted. Following TEP production, the ratio of particulate organic carbon to nitrogen increased after the bloom, regardless of turbulence level. TEP formation led to a decoupling of carbon and nitrogen dynamics, with a large flow of carbon channeled into the TEP pool, representing up to 44 % of the primary production, and was constant with the turbulence intensity. While turbulence had no effect on small particles (< 40 μm), turbulence favored the aggregation of TEP >40 μm. We found significant sedimentation of TEP when turbulence was lower (5 to 8 x 10~(-2) cm~2 s~(-3)) and a persistence of the TEP pool in the tanks without sinking at higher levels of turbulence intensity, typical of storm events (ε = 1 cm~2 s~(-3)).
机译:研究了北海天然海域不同尺度湍流强度对透明外聚合物颗粒(TEP)动力学的影响。在有和没有添加营养物的中观中检测了TEP的丰度,体积,尺寸谱和碳含量:在第1天(不添加)(T系列)和Redfield比例供应(NT系列),用16μMN:1μMP施肥:32μMSi有利于浮华形式的浮游植物生产。湍流是由垂直振荡的网格产生的,连续运行14 d。我们确定了在相反的营养条件下,TEP的产量是否随湍流水平的变化而变化。 TEP浓度随湍流而增加。湍流的影响可能是间接的,这是通过诱导活跃散发TEP前体的硅藻的生长速率增加而引起的,特别是当营养耗尽时。在TEP生产之后,无论湍流水平如何,大华后颗粒状有机碳与氮的比率都会增加。 TEP的形成导致碳和氮动力学的解耦,大量的碳流进入TEP池,占一次生产的44%,并且与湍流强度保持恒定。虽然湍流对小颗粒(<40μm)没有影响,但湍流有利于TEP> 40μm的聚集。我们发现,当湍流较低时(5至8 x 10〜(-2)cm〜2 s〜(-3)),TEP会显着沉积,并且在较高的湍流强度下,TEP池在罐中会持续存在,而不会下沉;典型的暴风雨事件(ε= 1 cm〜2 s〜(-3))。

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