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Spatial distributions of polyunsaturated aldehydes and their biogeochemical implications in the Pearl River Estuary and the adjacent northern South China Sea

机译:珠江口及邻近南海北部多不饱和醛的空间分布及其生物地球化学意义

摘要

This study reports the first comprehensive exploration of the spatial patterns of dissolved and particulate polyunsaturated aldehydes (PUAs), their physical and biological controlling factors, and their potential biogeochemical influences in the Pearl River Estuary (PRE) of the northern South China Sea (NSCS). High levels of total particulate PUAs (0-41 nM) and dissolved PUAs (0.10-0.37 nM) were observed with substantial spatial variation during an intense summer phytoplankton bloom outside the PRE mouth. We found the particulate PUAs strongly correlated with temperature within the high chlorophyll bloom, while showing a generally positive correlation with chlorophyll-a for the entire region. Additionally, the Si/N ratio significantly correlated with the particulate PUAs along the estuary suggesting the important role of silica on PUA production in this region. The dissolved PUAs counterparts exhibited a positive correlation with chlorophyll-a within the high chlorophyll bloom, but a negatively one with temperature outside, reflecting the essential bio-physical coupling effects on the dissolved PUAs distributions in the ocean. Biogeochemical implications of PUAs on the coastal ecosystem include not only the deleterious restriction of high PUAs-producing diatom bloom on copepod population, but also the profound influence of particulate PUAs on the microbial cycling of organic carbon in the NSCS. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究报告首次对南海北部珠江口(NSCS)中溶解和颗粒状多不饱和醛(PUA)的空间格局,其物理和生物控制因素及其潜在生物地球化学影响进行了全面的探索。 。在PRE口外强烈的夏季浮游植物开花期间,观察到高水平的总颗粒状PUA(0-41 nM)和溶解的PUA(0.10-0.37 nM),且空间变化很大。我们发现颗粒状的PUA与叶绿素含量高的花朵中的温度密切相关,而在整个区域中与叶绿素a总体上呈正相关。另外,Si / N比与河口颗粒状PUA显着相关,这表明二氧​​化硅在该地区对PUA产生的重要作用。溶解的PUA对应物在高叶绿素水华中与叶绿素-a呈正相关,而与外界温度呈负相关,反映出对海洋中溶解的PUA分布至关重要的生物物理耦合效应。 PUA对沿海生态系统的生物地球化学影响不仅包括对PU足类种群有害的PUA高产硅藻绽放的有害限制,而且还包括颗粒状PUA对NSCS中有机碳微生物循环的深远影响。 (C)2016 Elsevier Ltd.保留所有权利。

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    Wu Zhengchao; Li Qian P.;

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