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Stoichiometry, polarity, and organometallics in solid-phase extracted dissolved organic matter of the Elbe-Weser estuary

机译:易北河-韦瑟河口固相萃取的溶解有机物的化学计量比,极性和有机金属

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摘要

Dissolved organic matter (DOM) is ubiquitous in natural waters and plays a central role in the biogeochemistry in riverine, estuarine and marine environments. This study quantifies and characterizes solid-phase extractable DOM and trace element complexation at different salinities in the Weser and Elbe River, northern Germany, and the North Sea. Dissolved organic carbon (DOC), total dissolved nitrogen (TDN), Co and Cu concentrations were analyzed in original water samples. Solid-phase extracted (SPE) water samples were analyzed for DOC (DOCSPE), dissolved organic nitrogen (DONSPE), sulfur (DOSSPE) and trace metal (51V, 52Cr, 59Co, 60Ni, 63Cu, 75As) concentrations. Additionally, different pre-treatment conditions (acidification vs. non-acidification prior to SPE) were tested. In agreement with previous studies, acidification led to generally higher recoveries for DOM and trace metals. Overall, higher DOM and trace metal concentrations and subsequently higher complexation of trace metals with carbon and sulfur-containing organic complexes were found in riverine compared to marine samples. With increasing salinity, the concentrations of DOM decreased due to estuarine mixing. However, the slightly lower relative decrease of both, DOCSPE and DONSPE (~77%) compared to DOSSPE (~86%) suggests slightly faster removal processes for DOSSPE. A similar distribution of trace metal and carbon and sulfur containing DOM concentrations with salinity indicates complexation of trace metals with organic ligands. This is further supported by an increase in Co and Cu concentration after oxidation of organic complexes by UV treatment. Additionally, the complexation of metals with organic ligands (analyzed by comparing metal/DOCSPE and metal/DOSSPE ratios) decreased in the order Cu > As > Ni > Cr > Co and thus followed the Irving-Williams order. Differences in riverine and marine trace metal containing DOMSPE are summarized by their average molar ratios of (C107N4P0.013S1)1000V0.05Cr0.33Co0.19Ni0.39Cu3.41As0.47 in the riverine endmember and (C163N7P0.055S1)1000V0.05Cr0.47Co0.16Ni0.07Cu4.05As0.58 in the marine endmember.
机译:溶解有机物(DOM)在自然水中无处不在,在河流,河口和海洋环境的生物地球化学中起着重要作用。这项研究定量和表征了在Weser和易北河,德国北部和北海不同盐度下的固相可萃取DOM和痕量元素的络合。在原始水样中分析了溶解有机碳(DOC),总溶解氮(TDN),Co和Cu的浓度。分析固相萃取(SPE)水样品中的DOC(DOCSPE),溶解的有机氮(DONSPE),硫(DOSSPE)和痕量金属( 51 V, 52 Cr, 59 Co, 60 Ni, 63 Cu, 75 As)浓度。另外,测试了不同的预处理条件(SPE之前的酸化与非酸化)。与之前的研究一致,酸化通常可提高DOM和痕量金属的回收率。总体而言,与海洋样本相比,河水中发现较高的DOM和痕量金属浓度,随后发现较高的痕量金属与含碳和含硫有机配合物的络合。随着盐度的增加,由于河口混合,DOM的浓度降低。但是,与DOSSPE(〜86%)相比,DOCSPE和DONSPE的相对降低幅度均较小(〜77%),表明DOSSPE的去除过程略快。微量金属以及含盐度的碳和硫的DOM浓度的相似分布表明,微量金属与有机配体络合。通过紫外线处理有机配合物氧化后,Co和Cu浓度的增加进一步支持了这一点。此外,金属与有机配体的络合(通过比较金属/ DOCSPE和金属/ DOSSPE的比值分析)以Cu> As> Ni> Cr> Co的顺序减少,因此遵循Irving-Williams顺序。 (C107N4P0.013S1)1000V0.05Cr 0.33 Co 0.19 Ni 0.39 的平均摩尔比总结了含DOMSPE的河流和海洋微量金属的差异河端成员中的> Cu 3.41 As 0.47 和(C 163 N 7 P 0.055 S 1 1000 V 0.05 Cr 0.47 Co 0.16 Ni 0.07 Cu 4.05 As 0.58

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