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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Reduction of mercury(II) by tropical river humic substances (Rio Negro)-Part II. Influence of structural features (molecular size, aromaticity, phenolic groups, organically bound sulfur)
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Reduction of mercury(II) by tropical river humic substances (Rio Negro)-Part II. Influence of structural features (molecular size, aromaticity, phenolic groups, organically bound sulfur)

机译:热带河流腐殖质(里约内格罗)减少汞(II)-第二部分。结构特征的影响(分子大小,芳香性,酚基,有机结合的硫)

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The influence of structural features of tropical river humic substances (HS) on their capability to reduce mercury(II) in aqueous solutions was studied. The HS investigated were conventionally isolated from Rio Negro water-Amazonas State/Brazil by means of the collector XAD 8. In addition, the isolated HS were on-line fractionated by tangential-flow multistage ultrafiltration (nominal molecular-weight cut-offs: 100, 50, 30, 10, 5 kDa) and characterized by potentiometry and UV/VIS spectroscopy. The reduction of Hg(II) ions to elemental Hg by size-fractions of Rio Negro HS was assessed by cold-vapor AAS (CVAAS). UV/VIS spectrometry revealed that the fractions of high molecular-size (F_1>100 kDa and F_2: 50-100 kDa) have a higher aromaticity compared to the fractions of small molecular-size (F_5: 5-10 kDa, F_6: <5 kDa). In contrast, the potentiometric study showed different concentration of functional groups in the studied HS fractions. The reduction of Hg(II) by aquatic HS fractions at pH 5 proceeded in two steps (I, II) of slow first order kinetics (t_(1/2) of I: 160 min, t_(1/2) of II: 300 min) weakly influenced by the molecular-size, in contrast to the differing degree of Hg(II) reduction (F_5>F-2F_1>F_3>F_4F_6). Accordingly, Hg(II) ions were preferably reduced by HS molecules having a relatively high ratio of phenolic/carboxylic groups and a small concentration of sulfur. From these results a complex 'competition' between reduction and complexation of mercury(II) by aquatic HS occurring in tropical rivers such as the Rio Negro can be suggested.
机译:研究了热带河流腐殖质(HS)的结构特征对其在水溶液中还原汞(II)的能力的影响。传统上,通过收集器XAD 8从里约内格罗水-亚马逊河州/巴西的亚马逊分离出HS。此外,分离的HS通过切向流多级超滤在线分离(标称分子量截断值:100) ,50、30、10、5 kDa),并通过电位计和UV / VIS光谱进行表征。通过冷蒸气原子吸收光谱法(CVAAS)评估了Rio Negro HS的尺寸分数将Hg(II)离子还原为元素Hg的过程。 UV / VIS光谱分析显示,与小分子级分(F_5:5-10 kDa,F_6:<相比),高分子级分(F_1> 100 kDa和F_2:50-100 kDa)具有较高的芳香性。 5 kDa)。相反,电位研究表明,所研究的HS组分中官能团的浓度不同。 pH值为5的水生HS馏分对Hg(II)的还原以缓慢一阶动力学的两个步骤(I,II)进行(I的t_(1/2):160分钟,II的t_(1/2):与Hg(II)还原的不同程度相反(F_5> F-2 F_1> F_3> F_4 F_6)相比,分子大小的影响较小(300分钟)。因此,优选通过具有相对高的酚/羧基比例和低硫浓度的HS分子来还原Hg(II)离子。从这些结果可以看出,在诸如里约内格罗这样的热带河流中,水生HS对汞(II)的还原与络合之间存在着复杂的“竞争”。

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