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首页> 外文期刊>Environmental research >In situ high-resolution measurement of phosphorus, iron and sulfur by diffusive gradients in thin films in sediments of black-odorous rivers in the Pearl River Delta region, South China
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In situ high-resolution measurement of phosphorus, iron and sulfur by diffusive gradients in thin films in sediments of black-odorous rivers in the Pearl River Delta region, South China

机译:原位高分辨率测量磷,熨斗和硫在南方珠江三角洲地区黑色食品河沉积物中的薄膜扩散梯度

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摘要

The cycling of phosphorus (P), iron (Fe) and sulfur (S) in sediments has been previously investigated, but its impacts on the formation of black-odorous waterbodies remains unclear. Here, high-resolution (i.e., 2 mm for P and Fe, and 0.042 mm for S of 2D presentation) simultaneous measurements of P, Fe, and S profiles in river sediments based on the diffusive gradients in thin-films (DGT) technique were conducted in the Pearl River Delta region, South China. Similar distribution trends and significant positive correlations (R = 0.67-0.93, p < 0.01) were observed between Fe and P. Considering the high diffusion fluxes of Fe and P together, it revealed that P release was promoted by the Fe reduction. The two-dimensional labile S profiles showed that their concentrations in sediments were higher by factors of 1.6-20 than those in overlying water. The minor diffusion fluxes of S and the accumulation of acid volatile sulfide indicated that S~(2-) combining with Fe~(2+) occurred prior to diffusion. Furthermore, the formation mechanisms of black-odorous waterbodies were explored: (ⅰ) oxygen depletion by COD and NH_4~+-N and large amounts of sulfate input were the main exogenous driving factors. (ⅱ) Reduction of Fe and S to form ferrous sulfide accompanied with P release in sediments were the dominant endogenous causes. These observations together with mechanism analysis can provide a basis for the governance of black-odorous rivers.
机译:先前已经研究了沉积物中磷(P),铁(Fe)和硫(S)的循环,但其对形成黑色气味水上的影响仍然不明确。这里,基于薄膜(DGT)技术的漫射梯度,高分辨率(即,对于P和Fe的P和Fe,对于P和Fe的2mm,以及0.042mm的2d,以及S 0.042 mm)同时测量P,Fe和S曲线的河沉积物中的曲线在华南珠江三角洲地区进行。在Fe和P之间观察到类似的分布趋势和显着的阳性相关性(R = 0.67-0.93,p <0.01)。考虑到Fe和P的高扩散通量,显示P释放通过还原促进了P释放。二维不稳定的型材表明,它们在沉积物中的浓度均以1.6-20的因素更高,而不是上覆水的因素。 S的次要扩散通量和酸挥发性硫化物的积累表明S〜(2-)与Fe〜(2+)组合在扩散之前发生。此外,探索了黑色臭氧水平的形成机制:(Ⅰ)焦点和NH_4〜+ -N的氧气耗尽,大量的硫酸盐输入是主要的外源驱动因子。 (Ⅱ)减少Fe和S形成硫化含铁硫化物,沉积物中的P释放是主要的内源性原因。这些观察结果与机制分析一起可以为黑毒河流的治理提供基础。

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  • 来源
    《Environmental research》 |2020年第10期|109918.1-109918.8|共8页
  • 作者单位

    South China Institute of Environmental Sciences Ministry of Ecology and Environment Guangzhou 510530 China State Environmental Protection Key Laboratory of Water Environmental Simulation and Pollution Control Guangzhou 510530 China;

    South China Institute of Environmental Sciences Ministry of Ecology and Environment Guangzhou 510530 China State Environmental Protection Key Laboratory of Water Environmental Simulation and Pollution Control Guangzhou 510530 China;

    South China Institute of Environmental Sciences Ministry of Ecology and Environment Guangzhou 510530 China Guangdong Key Laboratory of Water and Air Pollution Control Guangzhou 510530 China;

    South China Institute of Environmental Sciences Ministry of Ecology and Environment Guangzhou 510530 China Guangdong Key Laboratory of Water and Air Pollution Control Guangzhou 510530 China;

    South China Institute of Environmental Sciences Ministry of Ecology and Environment Guangzhou 510530 China State Environmental Protection Key Laboratory of Water Environmental Simulation and Pollution Control Guangzhou 510530 China;

    State Key Laboratory on Environmental Aquatic Chemistry Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

    State Key Laboratory of Pollution Control and Resources Reuse School of the Environment Nanjing University Nanjing 210023 China State Key Laboratory on Environmental Aquatic Chemistry Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

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

    Black-odorous waterbodies; Diffusive gradients in thin films (DGT); River sediment; Diffusion flux; Pearl River Delta region;

    机译:黑臭的水平;薄膜(DGT)中的扩散梯度;河沉积物;扩散助焊剂;珠江三角洲地区;

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