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首页> 外文期刊>Science of the total environment >Dynamics of arsenic and its interaction with Fe and S at the sediment-water interface of the seasonal hypoxic Changjiang Estuary
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Dynamics of arsenic and its interaction with Fe and S at the sediment-water interface of the seasonal hypoxic Changjiang Estuary

机译:砷的动态及其与季节性缺氧沉积江口沉积水界面的互动及其互动

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摘要

The dynamics of As at the sediment-water interface (SWI) is an important link in driving As release into the upper water column to affect biological activities. At present, it is unclear about the As cycling at the SWI, especially under the influence of seasonal hypoxia in the Changjiang Estuary. In this study, the profile variations of As in porewater and solid phases from the Changjiang Estuary were studied. Results suggested that As profiles presented the "removal-release-removal" pattern with depth. Arsenic profiles were typically characterized by subsurface maxima in porewater and surficial enrichment in solid phase, which were closely related to Fe and S cycling. The occurrence of porewater As peaks and its obvious speciation transition at subsurface layers, companied by the conversion of dominant phases of solid As from reductive to oxidative fractions at the same layers indicated the reductive release of As at redoxcline. Arsenic species, saturation indexes (SI) and net reaction rates (R_(net)~(As)) suggested that the removal of As at surface and deep layers were attributed to the adsorption of As (Ⅴ) by Fe oxides and the formation of orpiment and/or adsorption by Fe sulfides, respectively. The benthic hypoxic environment in late-summer was more favorable for upward migration and diffusion of As. This process was considered as an important contribution to the elevated aquatic As in the Changjiang Estuary.
机译:如沉积物 - 水界面(SWI)的动态是驱动中作为释放到上水柱中的重要环节,以影响生物活性。目前,目前尚不清楚在SWI循环,特别是在季节性缺氧在长江河口的影响下。在这项研究中,研究了与长江河口的沉皮水和固体阶段的轮廓变化。结果表明,随着轮廓呈现了深度的“去除释放拆卸”图案。砷曲线通常是沉皮水中的地下最大值和固相的表面富集,其与Fe和S循环密切相关。在地下层处发生沉淀物作为峰值的峰值和其明显的物质过渡,其通过在相同层的氧化级分的固体阶段转化为伴随的阶段的转化率表明了如二氧化辛霉素的还原释放。砷物种,饱和度指数(Si)和净反应速率(R_(净)〜(AS))表明,在表面和深层处除去归因于Fe氧化物的(Ⅵ)的吸附和形成分别由Fe硫化物和/或吸附。夏季僵硬的缺氧环境更有利于向上迁移和扩散。这一过程被认为是长江河口升高的水生的重要贡献。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|145269.1-145269.10|共10页
  • 作者单位

    CAS Key Laboratory of Marine Ecology and Environmental Sciences Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 PR China Laboratory for Marine Ecology and Environmental Sciences Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 PR China University of Chinese Academy of Sciences Beijing 100049 PR China Center for Ocean Mega-Science Chinese Academy of Sciences Qingdao 266071 PR China;

    CAS Key Laboratory of Marine Ecology and Environmental Sciences Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 PR China Laboratory for Marine Ecology and Environmental Sciences Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 PR China University of Chinese Academy of Sciences Beijing 100049 PR China Center for Ocean Mega-Science Chinese Academy of Sciences Qingdao 266071 PR China;

    CAS Key Laboratory of Marine Ecology and Environmental Sciences Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 PR China University of Chinese Academy of Sciences Beijing 100049 PR China;

    CAS Key Laboratory of Marine Ecology and Environmental Sciences Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 PR China Laboratory for Marine Ecology and Environmental Sciences Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 PR China University of Chinese Academy of Sciences Beijing 100049 PR China Center for Ocean Mega-Science Chinese Academy of Sciences Qingdao 266071 PR China;

    CAS Key Laboratory of Marine Ecology and Environmental Sciences Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 PR China Laboratory for Marine Ecology and Environmental Sciences Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 PR China University of Chinese Academy of Sciences Beijing 100049 PR China Center for Ocean Mega-Science Chinese Academy of Sciences Qingdao 266071 PR China;

    CAS Key Laboratory of Marine Ecology and Environmental Sciences Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 PR China University of Chinese Academy of Sciences Beijing 100049 PR China;

    Laboratory for Marine Ecology and Environmental Sciences Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 PR China University of Chinese Academy of Sciences Beijing 100049 PR China Center for Ocean Mega-Science Chinese Academy of Sciences Qingdao 266071 PR China CAS Key Laboratory of Marine Geology and Environment Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Arsenic; Dynamic; Net reaction rate; The sediment-water interface; The Changjiang Estuary;

    机译:砷;动态的;净反应率;沉积物 - 水界面;长江河口;

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