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Seasonal and spatial variations in rare earth elements and yttrium of dissolved load in the middle, lower reaches and estuary of the Minjiang River, southeastern China

机译:中国东南Min江中下游及下游河口稀土元素和溶解态钇的时空变化

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摘要

With the aim of elucidating the spatial and seasonal behaviors of rare earth elements (REEs),we investigated the dissolved REE concentrations of surface water collected during four seasons from middle,lower reaches and estuary of the Minjiang River,southeastern China.The results display that the REE abundances in Minjiang River,ranging from 3.3-785.9 ng/L,were higher than those of many of the major global rivers.The total REE concentrations (∑REE) were seasonally variable,averaging in 5 937.30,863.79,825.65 and 1 065.75 ng/Lduring second highest flow (SHF),normal flow (NF),low flow (LF) and high flow (HF) season,respectively.The R(L/M) and R(H/M) ratios reveal the spatial and temporal variations of REE patterns,and particularly vary apparently in the maximum turbidity zone and estuary.REE patterns of dissolved loads are characterized by progressing weaker LREEs-enrichment and stronger HREEs-enrichment downstream from middle reaches to estuary during all four seasons.Comparing with NF and LF seasons,in which REE patterns are relatively flat,samples of SHF season have more LREE-enriched and HREE-depleted patterns that close to parent rocks,while samples of HF season are more LREEs-depleted and HREE-enriched.REE fractionations from the middle to lower reaches are stronger in the SHF and HF seasons than those in NF and LF seasons.Generally,spatial and seasonal variations in REE abundance and pattern are presumably due to several factors,such as chemical weathering,mixture with rainfall and groundwater,estuarine mixing,runoff,biological production and mountain river characters,such as strong hydrodynamic forces and steep slopes.The highest Gd/Gd* always occurs at north ports during all four seasons,where most of the large hospitals are located.This suggests Gd anomalies are depended on the density of modem medical facilities.Y/Ho ratios fluctuate and positively correlate to salinity in estuary,probably because of the geochemical behavior differences between Y and Ho.
机译:为了阐明稀土元素(REE)的空间和季节行为,我们调查了中国东南the江中下游和河口四个季节收集的地表水中溶解性REE浓度。结果表明: Min江的REE丰度范围为3.3-785.9 ng / L,高于全球许多主要河流的REE丰度。总REE浓度(∑REE)是季节性变化的,平均为5 937.30,863.79,825.65和1在第二高流量(SHF),正常流量(NF),低流量(LF)和高流量(HF)季节分别为065.75 ng / L.R(L / M)和R(H / M)比率揭示了空间REE模式的时空变化,尤其是在最大浊度带和河口明显变化。溶解负荷的REE模式的特征是,在所有四个季节中,从中游到河口的下游,较弱的LREEs富集和较强的HREEs富集都在进行。核因子在REE相对平坦的LF季节,SHF季节的样本具有更多的LREE富集和HREE贫乏的模式,接近母岩,而HF季节的样本则更多的LREEs贫乏和HREE丰富。 SHF和HF季节的中下游比NF和LF季节的要强。一般来说,REE丰度和格局的空间和季节变化可能是由于多种因素引起的,例如化学风化,降雨和地下水的混合,河口混合,径流,生物生产和山区河流特征,例如强大的水动力和陡峭的斜坡。在所有四个大型医院都位于的四个季节中,北部港口始终出现最高的Gd / Gd *。这表明Gd异常这取决于现代医疗设施的密度。河口的Y / Ho比波动并与盐度成正相关,这可能是由于Y和Ho之间的地球化学行为差异所致。

著录项

  • 来源
    《中国海洋湖沼学报(英文版)》 |2018年第3期|700-716|共17页
  • 作者单位

    College of Ocean and Earth Sciences,Xiamen University,Xiamen 361102,China;

    College of Ocean and Earth Sciences,Xiamen University,Xiamen 361102,China;

    State Key Laboratory of Marine Environmental Sciences,Xiamen 361102,China;

    Marine and Fisheries Technology Center of Fuzhou,Fuzhou 350026,China;

    College of Ocean and Earth Sciences,Xiamen University,Xiamen 361102,China;

    State Key Laboratory of Marine Environmental Sciences,Xiamen 361102,China;

    College of Ocean and Earth Sciences,Xiamen University,Xiamen 361102,China;

    College of Ocean and Earth Sciences,Xiamen University,Xiamen 361102,China;

    College of Ocean and Earth Sciences,Xiamen University,Xiamen 361102,China;

    College of Ocean and Earth Sciences,Xiamen University,Xiamen 361102,China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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