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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Seasonal and event-controlled export of organic matter from the shelf towards the Gulf of Lions continental slope
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Seasonal and event-controlled export of organic matter from the shelf towards the Gulf of Lions continental slope

机译:从架子到狮子湾大陆坡的季节性和受事件控制的有机物出口

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To investigate the role of coastal canyons in the transfer of organic matter from the shelf to the slope and basin, we deployed sediment trap/current meter pairs at the head of five canyons in the Gulf of Lions (GoL) between November 2003 and May 2004. Analysis of organic carbon, biogenic silica, Corg isotopic composition, Corg/total nitrogen, chloropigments, and amino acids clearly shows the seasonal influence and effect of extreme meteorological events on the composition of collected particles. The sampling period was divided into three "scenarios". The first corresponded to a large easterly storm and flood of the Rhone river during stratified water column conditions; the composition of material collected during this event was influenced by increased transfer of riverine and coastal particulate matter, with a lower Corg content. During the second "fall-winter" scenario, northern and northwestern winds blowing over the shelf caused cooling and homogenization of the shelf water column; particles collected at this time reflected the homogeneous source of particulate matter transported through canyons; particles sitting in the vicinity of canyon heads are most likely swept downslope by the general south-westward circulation. Organic tracers indicate a degraded origin for organic matter transported during this period. A third "spring" scenario corresponded to northern winds alternating with eastward windstorms that triggered and/or enhanced the cascading of dense waters accumulated on the bottom of the shelf due to previous cooling. These conditions occurred in conjunction with increased phytoplankton productivity in shelf surface waters. Organic matter advected mainly by dense shelf water cascading was fresher due to the transport of newly produced particles and a variable terrestrial fraction; this fraction depended on the proportion of resuspended material accumulated during previous high discharge periods that was involved in each transport pulse. The tight link shown between meteorological conditions and organic matter transport is important for continental margin geochemical studies as future changes in climatic conditions may lead to dramatic changes in carbon sequestration capability and in the ecosystems of deep margin environments. (C) 2008 Elsevier Ltd. All rights reserved.
机译:为了研究沿海峡谷在有机质从陆架到斜坡和盆地的转移中的作用,我们在2003年11月至2004年5月之间在狮子湾(GoL)的五个峡谷的顶部部署了沉积物捕集/水流计对对有机碳,生物硅,Corg同位素组成,Corg /总氮,氯色素和氨基酸的分析清楚地表明了季节性影响以及极端气象事件对收集颗粒组成的影响。采样期分为三个“场景”。第一个对应于分层水柱条件下罗纳河的一次大东风和洪水;在此事件中收集的物质组成受到河流和沿海颗粒物迁移增加的影响,而Corg含量较低。在第二个“秋冬”情景中,在架子上吹来的北风和西北风导致了架子水柱的冷却和均质化。此时收集的颗粒反映了通过峡谷运输的均匀颗粒物源。总体而言,西南向环流使位于峡谷首部附近的颗粒很可能扫过了下坡。有机示踪剂表明在此期间运输的有机物的来源已退化。第三种“春季”情景对应于北风与东风交替,由于先前的冷却,触发和/或增强了积水在架子底部的积聚。这些条件与架子地表水中浮游植物生产力的提高有关。由于新产生的颗粒和陆地组分的变化,主要由密集的层架级联输送的有机物较新鲜。该比例取决于每个传输脉冲所涉及的先前高放电期间积累的重悬物料的比例。气象条件与有机物运输之间显示的紧密联系对于大陆边缘地球化学研究很重要,因为未来气候条件的变化可能会导致固碳能力和深边缘环境的生态系统发生巨大变化。 (C)2008 Elsevier Ltd.保留所有权利。

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