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首页> 外文期刊>Deep-sea research, Part II. Topical studies in oceanography >Seasonality and composition of downward particulate fluxes at the continental shelf and Okinawa Trough in the East China Sea
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Seasonality and composition of downward particulate fluxes at the continental shelf and Okinawa Trough in the East China Sea

机译:季节性和向下的组成颗粒在大陆架和通量东海冲绳海槽

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As part of the Marginal Sea Flux Experiment in the West Pacific (MASFLEX) program, conventional sediment traps were deployed at three mooring sites on the East China Sea shelf for 1-2 days during 4 seasonal cruises. Time-series sediment traps also were deployed in the East China Sea, one at the northern part of the Okinawa Trough (Stn. SST 1) and the other to the north-west of the Okinawa Island (SST 2), for 1 year from March 1993 to February 1994. The settling particles were analyzed for total mass flux and the abundance of major biogenic constituents (organic carbon, nitrogen, inorganic carbon and opal). On the inner shelf, particulate fluxes were large and rapidly increased near the bottom throughout the year, probably due to resuspended bottom sediment and suspended particles from the Changjiang, forming a bottom turbid layer (BTL). On the central shelf, particulate fluxes in the BTL were extremely high in summer when Changjiang discharge peaks, possibly indicating a seasonal supply of the Changjiang particles to the central shelf. At the shelf edge, the fluxes in the BTL were significantly higher in autumn and winter than in spring and summer. At the Okinawa Trough stations (ca. 1100 m), particulate fluxes at 600 m depth were extremely low but increased noticeably with depth (800 and 50 m above the bottom). The flux generally peaked from late autumn to early spring and was lowest during summer, with an unusually large peak in September at SST 1. Considering that there is no strong seasonality of the primary productivity and phytoplankton biomass in the surface layers at the Okinawa Trough, we hypothesize that the seasonality of particle fluxes at the deep waters of the Trough is linked to seasonal events in shelf waters. Downwelling and seaward bottom flow induced by the northeast monsoon in winter favor the offshore transport of particles in the BTL, while in summer a transverse circulation pattern may inhibit it (Hu, 1994; Yanagi et al., 1996). Near-bottom transport may be a key process for shelf-to-deep sea export of biogenic/lithogenic particles. As a result, the continental slope and the Okinawa Trough may play an important role as a carbon sink for the East China Sea.
机译:作为边缘海的一部分通量实验西太平洋(MASFLEX)项目,传统沉积物陷阱被部署在三系泊网站在中国东海大陆架1 - 2天在4季节性邮轮。陷阱也被部署在东海,一个在冲绳海槽北部(Stn。冲绳岛(SST 2),从3月1年1993年到1994年2月。总质量流量和分析了吗丰富的主要生物成分(有机食品碳、氮、无机碳和蛋白石)。内部货架,颗粒通量大和快速增加的底部附近今年,大概是因为resuspended底部沉积物和悬浮粒子浑浊的长江,形成底部层(线下)。中央架子上,颗粒通量瓶在夏天当长江极高放电峰值,可能表明一个季节性的供应长江粒子的中央架子上。在秋季和冬季明显高于比在春季和夏季。站(ca 1100),颗粒通量,享年600岁米深度是极低的,但增加明显的深度(800和50米以上底部)。秋天早春期间最低夏天,9月份异常大的峰值在风场1。季节性的初级生产力浮游植物生物量在地面层冲绳海槽,我们假设在深水粒子通量的季节性槽的季节性事件有关大陆架水域。冬天的东北季候风引起的粒子在线下的海上运输,而在夏天横向环流模式it may inhibit (Hu, 1994;表明运输可能是一个关键过程shelf-to-deep海洋生物结石/出口粒子。冲绳海槽可能发挥重要作用中国东海的碳汇。

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