首页> 外文期刊>Analytical and bioanalytical chemistry >Thiourea catalysis of MeHg ligand exchange between natural dissolved organic matter and a thiol-functionalized resin: a novel method of matrix removal and MeHg preconcentration for ultratrace Hg speciation analysis in freshwaters
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Thiourea catalysis of MeHg ligand exchange between natural dissolved organic matter and a thiol-functionalized resin: a novel method of matrix removal and MeHg preconcentration for ultratrace Hg speciation analysis in freshwaters

机译:硫脲催化天然溶解的有机物和硫醇官能化树脂之间MeHg配体交换:去除水中超痕量汞形态的基质去除和MeHg预浓缩的新方法

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摘要

Ultratrace analysis of dissolved MeHg in freshwaters requires both dissociation of MeHg from strong ligands in the sample matrix and preconcentration for detection. Existing solid phase extraction methods generally do not efficiently adsorb MeHg from samples containing high concentrations of natural dissolved organic matter. We demonstrate here that the addition of 10-60 mM thiourea (TU) quantitatively releases MeHg from the dissolved matrix of freshwater samples by forming a more labile complex (MeHgTU+) that quantitatively exchanges MeHg with thiol-functionalized resins at pH similar to 3.5 during column loading. The contents of these columns were efficiently eluted with acidified TU and MeHg was analyzed by Hg-TU complex ion chromatography with cold-vapor atomic fluorescence spectrometry detection. Routinely more than 90% of MeHg was recovered with good precision (average relative standard deviation of 6%) from natural waters-obtained from pools and saturated sediments of wetlands and from rivers-containing up to 68.7 mg C L-1 dissolved organic matter. With the preconcentration step, the method detection limit of 0.29 pg absolute or 0.007 ng L-1 in 40-mL samples is equivalent to that of the current state-of-the- art as practiced by skilled analysts. MeHg in 20-50-mL samples was completely trapped. On the basis of our knowledge of the chemistry of the process, breakthrough volume should depend on the concentrations of TU and H+. At a TU concentration of 12 mM breakthrough occurred between 50 and 100 mL, but overall adsorption efficiency was still 85% at 100 mL. Formation of artifactual MeHg is minimal; only about 0.7% of ambient MeHg is artifactual as estimated from samples spiked with 4 mu g L-1 Hg-II.
机译:要对淡水中溶解的MeHg进行超痕量分析,既需要将MeHg从样品基质中的强配体解离,也需要进行预浓缩以进行检测。现有的固相萃取方法通常不能有效地从含有高浓度天然溶解有机物的样品中吸附MeHg。我们在这里证明,通过形成更不稳定的络合物(MeHgTU +),在色谱柱中pH值与3.5相似的情况下,与硫醇官能化的树脂定量交换MeHg,添加10-60 mM硫脲(TU)可以从溶解的淡水样品基质中定量释放MeHg。加载中。这些柱的内容物用酸化的TU进行了有效洗脱,MeHg通过Hg-TU络合离子色谱和冷蒸气原子荧光光谱检测进行了分析。通常,从天然水(从水池和湿地的饱和沉积物中以及含有多达68.7 mg C L-1的溶解性有机物的河流中获得)以较高的精度(平均相对标准偏差为6%)回收90%以上的MeHg。通过预浓缩步骤,方法检出限在40 mL样品中为0.29 pg绝对值或0.007 ng L-1,相当于熟练分析人员所采用的当前技术水平。完全捕获了20-50 mL样品中的MeHg。根据我们对过程化学的了解,突破体积应取决于TU和H +的浓度。在TU浓度为12 mM时,在50至100 mL之间发生了突破,但在100 mL时,总吸附效率仍为85%。人为的甲基汞的形成极少;从掺有4μgL-1 Hg-II的样品中估计,仅约0.7%的环境MeHg是人为的。

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