首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Quantification of total concentration of thiol functional groups in environmental samples by titration with monobromo(trimethylammonio) bimane and determination with tandem mass spectrometry
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Quantification of total concentration of thiol functional groups in environmental samples by titration with monobromo(trimethylammonio) bimane and determination with tandem mass spectrometry

机译:通过用单溴烃(三甲基氨基)双胺滴定与串联质谱法测定环境样品中硫醇官能团的总浓度。用串联质谱法测定

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摘要

Thiol compounds (R-SH) have many important biological functions and are principal controls of the speciation of several toxic metals in the environment. However, determining the concentration of thiols associated with environmental matrices is challenging due to the compounds' low abundance and interferences from non-thiol compounds for many available methods. Here a novel method has been developed and validated to quantify the total concentration of thiol functional groups in aqueous samples using derivatization with monobromo(trimethylammonio)bimane (qBBr) and quantification with tandem mass spectrometry. The thiol concentration was determined by titration of the sample with qBBr, which reacts selectively with thiols, and quantification of the residual qBBr. We systematically evaluated potential interferences from various organic compounds, inorganic ions (including sea water matrices), sulfide and mercury (Hg) species, and demonstrate that the method is highly sensitive, selective and robust. The limit of detection (LOD) for total thiols is in the nanomolar concentration range (similar to 6 nM). The method performance was also demonstrated by determination of the total thiol concentration in different natural samples including boreal stream water (1.16 mu M), wetland porewater (0.96 mu M) and the Suwanee River natural organic matter (NOM) reference material SR101 N (7.9 mu mol g(-1)). The developed method represents a combination of low LOD and high selectivity and robustness that is unsurpassed for total thiol concentration measurements.
机译:硫醇化合物(R-SH)具有许多重要的生物学功能,并且是环境中几种有毒金属的形态的主要控制。然而,测定与环境基质相关的硫醇的浓度由于化合物对许多可用方法的非硫醇化合物的低丰度和干扰而挑战。这里已经开发并验证了一种新的方法,以使用衍生化与甘氨酸(三甲基氨基酮)双胺(QBBR)的衍生化来量化水性样品中硫醇官能团的总浓度,并用串联质谱法定量。通过用QBBR滴定样品测定硫醇浓度,其选择性地与硫醇反应,并定量残留的QBBR。我们系统地评估了各种有机化合物,无机离子(包括海水基),硫化物和汞(HG)物种的潜在干扰,并证明该方法是高敏感的,选择性和鲁棒。总硫醇的检测极限(LOD)是纳米摩尔浓度范围(类似于6nm)。还通过测定包括北方物流水(1.16μm),湿地沉积物(0.96亩)和Suwanee河天然有机物(NOM)参考材料SR101 N(7.9)的不同天然样品中的总硫醇浓度证明了方法性能mu mol g(-1))。开发的方法表示低床单和高选择性和鲁棒性的组合,其对于总硫醇浓度测量来说是无与伦比的。

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