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Particulate and Dissolved Black Carbon in Coastal China Seas: Spatiotemporal Variations, Dynamics, and Potential Implications

机译:沿海海海域的颗粒状和溶解黑碳:时尚变化,动力学和潜在影响

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摘要

Elaborating the spatiotemporal variations and dynamic mechanisms of black carbon (BC) in coastal seas, the geographically pivotal intermediate zones that link the terrestrial and open oceanic ecosystems, will contribute significantly to refine the regional and global BC geochemistry. In this study, we implemented a large spatial-scale and multiseason and -layer seawater sampling campaign in high BC emission influenced coastal China seas (Bohai Sea and Northern Yellow Sea) and quantified the thermal/optical reflectance-based particulate BC (PBC) and benzene polycarboxylic acids-based dissolved BC (DBC). We found that the climate and its associated hydrological effects (including the intensive resuspension and coastal current transport) largely regulate both PBC and DBC spatiotemporal variations and dynamics. In combination with previous work on upstream rivers and downstream open ocean, a significant and continuous decrease in the DBC aromatic condensation was observed along the river-to-ocean continuum, probably due to the increment of the photochemical degradation during the waterborne transport. Based on our DBC methodological development, i.e., the determination and subsequent inclusion of the nitrated BC molecular markers, the magnitudes of the current global DBC fluxes and pools were updated. After the update, the DBC fluxes from atmospheric deposition and riverine delivery were estimated at rates of 4.3 and 66.3 Tg yr~(-1), respectively, and the global oceanic DBC pool was approximately 36 Gt. This update will greatly assist in constructing a more robust regional and global DBC and BC cycling and budgets.
机译:阐述了沿海地区的黑碳(BC)的时空变化和动态机制,与陆地和开放的海洋生态系统联系起来的地理位置的中间地区将有助于优化区域和全球BC地球化学。在这项研究中,我们在高BC排放中实施了大量空间和多档和 - 层海水采样运动,影响了沿海中海(渤海和北部黄海),并量化了热/光学反射率的颗粒BC(PBC)和基于苯多羧酸的溶解BC(DBC)。我们发现气候及其相关的水文效应(包括密集重悬浮和沿海流动)在很大程度上调节PBC和DBC时尚变化和动力学。在与上游河流以前的工作和下游开口海洋组合,在河边到海洋连续观察到DBC芳香族缩合显著和持续下降,可能是由于光化学降解的水上运输期间的增量。基于我们的DBC方法,即氮化BC分子标记的测定和随后的含量,更新了目前全球DBC助熔剂和游泳池的幅度。更新后,在DBC从大气沉积通量和河流输送估计为4.3和Tg为66.3岁的速率〜(-1),分别与全球海洋DBC池约为36亿吨。此更新将极大地帮助构建更强大的区域和全球DBC和BC骑自行车和预算。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第1期|788-796|共9页
  • 作者单位

    College of Marine Ecology and Environment Shanghai Ocean University Shanghai 201306 China;

    Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3) Department of Environmental Science and Engineering Fudan University Shanghai 200438 China;

    State Key Laboratory of Environmental Geochemistry Guiyang Institute of Geochemistry Chinese Academy of Sciences Guiyang 550081 China;

    College of Marine Geosciences Ocean University of China Qingdao 266100 China;

    Key Laboratory of Coastal Environmental Processes and Ecological Remediation Yantai Institute of Coastal Zone Research Chinese Academy of Sciences Yantai 264003 China;

    College of Marine Ecology and Environment Shanghai Ocean University Shanghai 201306 China;

    College of Marine Ecology and Environment Shanghai Ocean University Shanghai 201306 China;

    College of Marine Ecology and Environment Shanghai Ocean University Shanghai 201306 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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