首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Hydrological and Biogeochemical Controls on Absorption and Fluorescence of Dissolved Organic Matter in the Northern South China Sea
【24h】

Hydrological and Biogeochemical Controls on Absorption and Fluorescence of Dissolved Organic Matter in the Northern South China Sea

机译:南海北部溶解有机物吸收和荧光的水文和生物地球化学对照

获取原文
获取原文并翻译 | 示例
           

摘要

The Kuroshio intrusion from the West Philippine Sea (WPS) and mesoscale eddies are important hydrological features in the northern South China Sea (SCS). In this study, absorption and fluorescence of dissolved organic matter (CDOM and FDOM) were determined to assess the impact of these hydrological features on DOM dynamics in the SCS. DOM in the upper 100 m of the northern SCS had higher absorption, fluorescence, and degree of humification than in the Kuroshio Current of the WPS. The results of an isopycnal mixing model showed that CDOM and humic-like FDOM inventories in the upper 100 m of the SCS were modulated by the Kuroshio intrusion. However, protein-like FDOM was influenced by in situ processes. This basic trend was modified by mesoscale eddies, three of which were encountered during the fieldwork (one warm eddy and two cold eddies). DOM optical properties inside the warm eddy resembled those of DOM in the WPS, indicating that warm eddies could derive from the Kuroshio Current through Luzon Strait. DOM at the center of cold eddies was enriched in humic-like fluorescence and had lower spectral slopes than in eddy-free waters, suggesting inputs of humic-rich DOM from upwelling and enhanced productivity inside the eddy. Excess CDOM and FDOM in northern SCS intermediate water led to export to the Pacific Ocean interior, potentially delivering refractory carbon to the deep ocean. This study demonstrated that DOM optical properties are promising tools to study active marginal sea-open ocean interactions.
机译:来自西菲律宾海(WPS)和Mesoscale Eddies的Kuroshio入侵是南海(SCS)的重要水文特征。在该研究中,确定溶解有机物(CDom和FDom)的吸收和荧光,以评估这些水文特征对SCS中的DOM动态的影响。北部SCS的上部100米的DOM具有较高的吸收,荧光和蜂窝程度,而不是WPS的Kuroshio电流。异构化混合模型的结果表明,CDOM和腐殖质的FDOM库存通过KUROSHIO侵入调节了SC的上部100米。然而,蛋白质的FDom受原位过程的影响。这种基本趋势是由Messcale Eddies修改的,其中三个在实地工作期间(一个温暖的涡流和两个冷涡)遇到。温暖涡流内的DOM光学属性类似于WPS中的DOM,表明温暖的漩涡可以通过吕宋海峡源于Kuroshio电流。冷涡旋中心的DOM富含腐殖质的荧光,并且具有比无涡般的水域更低的光谱斜率,提出了富含腐殖质的DOM的输入,从上升升高并提高了涡流内的生产率。北部SCS中间水中的过度CDOM和FDOM导致出口到太平洋内部,可能会向深海提供耐火碳。本研究表明,DOM光学特性是研究主动边际海洋开放海洋相互作用的有希望的工具。

著录项

  • 来源
  • 作者单位

    State Key Laboratory of Marine Environmental Science College of Ocean and Earth Sciences Xiamen University Xiamen China;

    State Key Laboratory of Marine Environmental Science College of Ocean and Earth Sciences Xiamen University Xiamen China;

    Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies Xiamen University Xiamen China;

    Skidaway Institute of Oceanography Department of Marine Sciences University of Georgia Savannah GA USA;

    Department of Applied Ocean Physics and Engineering Woods Hole Oceanographic Institution Woods Hole MA USA;

    Key Laboratory of Marine Chemistry Theory and Technology Ministry of Education Ocean University of China Qingdao China;

    Key Laboratory of Coastal and Wetland Ecosystems Ministry of Education Xiamen University Xiamen China;

    South China Sea Institute of Oceanology Chinese Academy of Sciences Guangzhou China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物分布与生物地理学;
  • 关键词

    Hydrological; Biogeochemical Controls; Absorption;

    机译:水文;生物地球化学对照;吸收;

相似文献

  • 外文文献
  • 中文文献
  • 专利
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