Simultaneous determination of picomolar level of dissolved silver with other key trace metals in seawater samples using solid phase extraction and isotope dilution methods

IF 3 3区 地球科学 Q2 CHEMISTRY, MULTIDISCIPLINARY Marine Chemistry Pub Date : 2024-05-01 DOI:10.1016/j.marchem.2024.104396
Kuo Hong Wong , Keisuke Nishitani , Hajime Obata , Hideki Fukuda , Hiroshi Ogawa , Farah Akmal Idrus , Fatimah A'tirah binti Mohamad , Asami S. Mashio , Hiroshi Hasegawa
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Abstract

Simultaneous determination of dissolved silver (dAg) with other key GEOTRACES trace metals is difficult because dAg in seawater tends to form negatively charged chloride species that result in only 75% recovery efficiency with commonly used NOBIAS PA-1 chelating resins. In this study, we developed a method using solid phase extraction coupled with isotope dilution that enables full quantification (97.9 ± 2.1%) of dAg along with other major trace metals including cadmium (Cd), copper (Cu), manganese (Mn), nickel (Ni), and lead (Pb) (recovery efficiency = 100% to 102%) in seawater samples. Seawater samples were first spiked with Ag-109 and allowed to reach isotopic equilibrium before extraction using NOBIAS PA-1 chelating resin. Then, dAg isotope ratios (Ag-109/Ag-107) before and after solid phase extraction were determined and used to quantify dAg. Determination of dAg with dissolved Cd, Cu. Mn, Ni, and Pb in reference seawater material CASS-6 resulted in deviations of between 1.0% and 8.8% from the consensus values, which are well within the standard error of measurement. We then successfully determined the concentrations of dissolved Cd (0.05–0.2 nM), Cu (0.5–13 nM), Mn (10–140 nM), Ni (2–12 nM), Pb (5–110 nM), and Ag (10–40 pM) in Otsuchi Bay, Japan and its surrounding rivers. Evaluation of the behavior of dAg under a salinity gradient using estuarine samples collected from Samunsam River, Malaysia shows increasing dAg concentration with salinity (R2 = 0.68), which suggests release of sedimental Ag under high ambient chloride concentrations. Our new method enables rapid and simultaneous measurements of dAg with other key GEOTRACES trace metals in a single analysis, which is expected to expedite analysis and increase availability of oceanic dAg data globally.

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利用固相萃取和同位素稀释法同时测定海水样本中的皮摩尔级溶解银和其他主要痕量金属
同时测定溶解银(dAg)和其他关键的 GEOTRACES 微量金属非常困难,因为海水中的 dAg 往往会形成带负电荷的氯化物,导致常用的 NOBIAS PA-1 螯合树脂的回收率仅为 75%。在这项研究中,我们开发了一种采用固相萃取和同位素稀释相结合的方法,可以对海水样品中的 dAg 以及其他主要痕量金属,包括镉(Cd)、铜(Cu)、锰(Mn)、镍(Ni)和铅(Pb)进行完全定量(97.9 ± 2.1%)(回收率 = 100%至 102%)。首先在海水样品中添加 Ag-109,使其达到同位素平衡,然后使用 NOBIAS PA-1 螯合树脂进行萃取。然后,测定固相萃取前后的 dAg 同位素比(Ag-109/Ag-107),用于定量 dAg。dAg 与溶解的镉、铜、锰、镍和铅一起测定。在参考海水材料 CASS-6 中,dAg 与溶解的镉、铜、锰、镍和铅的测定结果与共识值的偏差在 1.0% 到 8.8% 之间,完全在测量标准误差范围内。随后,我们成功测定了日本大土湾及其周边河流中溶解镉(0.05-0.2 nM)、铜(0.5-13 nM)、锰(10-140 nM)、镍(2-12 nM)、铅(5-110 nM)和银(10-40 pM)的浓度。利用从马来西亚Samunsam河采集的河口样本对盐度梯度下的dAg行为进行了评估,结果显示dAg浓度随盐度的增加而增加(R2 = 0.68),这表明在环境氯化物浓度较高的情况下会释放沉积的Ag。我们的新方法可在一次分析中快速同时测量 dAg 和其他关键的 GEOTRACES 微量金属,有望加快分析速度,提高全球海洋 dAg 数据的可用性。
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来源期刊
Marine Chemistry
Marine Chemistry 化学-海洋学
CiteScore
6.00
自引率
3.30%
发文量
70
审稿时长
4.5 months
期刊介绍: Marine Chemistry is an international medium for the publication of original studies and occasional reviews in the field of chemistry in the marine environment, with emphasis on the dynamic approach. The journal endeavours to cover all aspects, from chemical processes to theoretical and experimental work, and, by providing a central channel of communication, to speed the flow of information in this relatively new and rapidly expanding discipline.
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