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Using rare earth elements to constrain particulate organic carbon flux in the East China Sea

机译:利用稀土元素来约束东海颗粒有机碳通量

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Fluxes of particulate organic carbon (POC) in the East China Sea (ECS) have been reported to decrease from the inner continental shelf towards the outer continental shelf. Recent research has shown that POC fluxes in the ECS may be overestimated due to active sediment resuspension. To better characterize the effect of sediment resuspension on particle fluxes in the ECS, rare earth elements (REEs) and organic carbon (OC) were used in separate two-member mixing models to evaluate trap-collected POC fluxes. The ratio of resuspended particles from sediments to total trap-collected particles in the ECS ranged from 82-94% using the OC mixing model, and 30-80% using the REEs mixing model, respectively. These results suggest that REEs may be better proxies for sediment resuspension than OC in high turbidity marginal seas because REEs do not appear to undergo degradation during particle sinking as compared to organic carbon. Our results suggest that REEs can be used as tracers to provide quantitative estimates of POC fluxes in marginal seas.
机译:据报道,东海(ECS)中的颗粒状有机碳(POC)的助熔剂从内部大陆架朝向外部大陆架下降。最近的研究表明,由于活跃的沉积物重悬,ECS中的POC通量可能会大得多。为了更好地表征沉积物重新悬浮对ECS中的颗粒通量的影响,在单独的双构件混合模型中使用稀土元素(REES)和有机碳(OC)以评估陷阱收集的POC助熔剂。 ECS中重悬的颗粒与ECS中总捕集颗粒的总捕集颗粒的比例分别使用OC混合模型的82-94%,使用REES混合模型30-80%。这些结果表明,在高浊度边缘海洋中,REES可以是沉积物重新悬浮的更好代理,因为与有机碳相比,REES在粒子下沉时不会发生降解。我们的研究结果表明,REES可以用作示踪剂,以提供边缘海洋中POC助条的定量估计。

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