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九龙江河口沉积物中痕量金属行为及其对底栖交换通量的影响

Trace metal behavior in sediments of Jiulong River Estuary and implication for benthic exchange fluxes.

作者信息

Wang Wenhao, Wang Wen-Xiong

机构信息

Environmental Science Program, The Hong Kong University of Science and Technology (HKUST), Clear Water Bay, Kowloon, Hong Kong.

Environmental Science Program, The Hong Kong University of Science and Technology (HKUST), Clear Water Bay, Kowloon, Hong Kong; Marine Environmental Laboratory, HKUST Shenzhen Research Institute, Shenzhen 518057, China.

出版信息

Environ Pollut. 2017 Jun;225:598-609. doi: 10.1016/j.envpol.2017.03.028. Epub 2017 Mar 21.

Abstract

Severe metal pollution due to industrial effluents releases has been documented in Jiulong River estuary, Southern China. However, integrated understanding of trace metal behavior in the sediment is lacking. In the present study, DGT (diffusive gradients in thin films) technique was employed together with sediment cores to study the porewater dynamics of trace metals as well as the benthic exchange fluxes from four sampling sites over three different months. The sedimentary environment showed distinct spatial and temporal variations due to effluent discharge and biological activities. Metal behavior was controlled by early diagenetic reactions below the interface, in suboxic layer and in deeper sediment. Precipitation as sulfides and adsorption onto Mn/Fe (hydr)oxides were important in scavenging trace metals. Estimated exchange fluxes at sediment-water interface in this estuary indicated that the overlying water was a major source for trace metals, whereas sediments could also be the source if surface remobilization (Mn/Fe reduction) dominated. Our results highlighted the impacts of both natural and anthropogenic processes on the source, fate and transformation of trace metals in this dynamic system.

摘要

中国南方九龙江河口已记录到因工业废水排放导致的严重金属污染。然而,目前缺乏对沉积物中痕量金属行为的综合认识。在本研究中,采用薄膜扩散梯度(DGT)技术结合沉积物岩芯,研究了三个不同月份来自四个采样点的痕量金属孔隙水动力学以及底栖交换通量。由于废水排放和生物活动,沉积环境呈现出明显的空间和时间变化。金属行为受界面以下、亚氧层和更深沉积物中早期成岩反应的控制。硫化物沉淀和吸附到锰/铁(氢)氧化物上对清除痕量金属很重要。该河口沉积物 - 水界面的估计交换通量表明,上覆水是痕量金属的主要来源,而如果表面再活化(锰/铁还原)占主导,沉积物也可能是来源。我们的结果突出了自然和人为过程对这个动态系统中痕量金属的来源、归宿和转化的影响。

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