...
首页> 外文期刊>Biogeosciences Discussions >Influence of physical and biological processes on the seasonal cycle of biogenic flux in the equatorial Indian Ocean
【24h】

Influence of physical and biological processes on the seasonal cycle of biogenic flux in the equatorial Indian Ocean

机译:物理过程对赤道印度洋季节性通量季节性循环的影响

获取原文
           

摘要

Seasonal cycle of biogenic fluxes obtained from sediment trap at two locations 5°24' N, 86°46' E (southern Bay of Bengal trap; SBBT) and 3°34' N, 77°46' E (equatorial Indian Ocean trap; EIOT) within the equatorial Indian Ocean (EIO) were examined to understand the factors that control them. The sediment trap data at SBBT was collected for ten years from November 1987 while that at EIOT was for a one year period from January 1996. The characteristic of biogenic flux at SBBT was the strong seasonality with peak flux in August, while lack of seasonality characterised the flux at EIOT. The high chlorophyll biomass at the SBBT during the summer monsoon was supported by a combination of processes such as wind-mixing and advection, both of which supplied new nitrogen to the upper ocean. In contrast, the elevated chlorophyll at EIOT during summer monsoon was supported only by wind mixing. High cell counts of phytoplankton ( 5 μm) at SBBT dominated by diatoms suggest the operation of classical food web and high carbon export. On the contrary, dominance of pico-phytoplankton and one-and-a-half time higher magnitude of micro-zooplankton biomass along with 2-fold lesser meso-zooplankton at EIOT indicated the importance of microbial loop. The substantial decrease in the carbon export at EIOT indicated faster remineralization of photosynthetically produced organic matter.
机译:从沉积物陷阱中获得的季节性循环从沉积物陷阱获得5°24'n,86°46'e(孟加拉陷阱的南部)和3°34'n,77°46'e(赤道印度洋陷阱;赤道印度洋(EIO)在赤道印度洋(EIO),了解控制它们的因素。 SBBT的沉积物陷阱数据于1987年11月收集了十年的十年,虽然Eiot在1996年1月开始的一年时间。SBBT的生物助焊剂的特征是8月份缺乏季节性的强烈季节性,同时缺乏季节性骚乱的助焊剂。 SBBT在夏季季风在SBBT的高叶绿素生物质通过诸如风力混合和平流的方法的组合来支持,这两者都向上海提供了新的氮。相比之下,夏季季孔期间Eiot的叶绿素升高仅通过风混合负载。 SBBT的浮游植物(>5μm)的高细胞计数由硅藻占据硅藻表明古典食品网和高碳出口的运作。相反,微微浮游植物的主导地位和微自浮游植物生物量的一半和半级较高幅度以及Eiot的2倍较小的Meso-Zooplon表示微生物环的重要性。 Eiot碳出口的大幅下降表明了光合作用的有机物质的更快再矿化。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号