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Modern sampling and analytical methods for the determination of trace elements in marine particulate material using magnetic sector inductively coupled plasma-mass spectrometry

机译:磁扇形电感耦合等离子体质谱法测定海洋颗粒物中痕量元素的现代采样和分析方法

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Trace elements often limit phytoplankton growth in the ocean, and the quantification of particulate forms is essential to fully understand their biogeochemical cycling. There is presently a lack of reliable measurements on the trace elemental content of marine particles, in part due to the inadequacies of the sampling and analytical methods employed. Here we report on the development of a series of state-of-the-art trace metal clean methods to collect and process oceanic particulate material in open-ocean and sea ice environments, including sampling, size-fractionated filtration, particle digestions and analysis by magnetic sector inductively coupled plasma-mass spectrometry (ICP-MS). Particular attention was paid to the analysis of certified reference materials (CRMs) and field blanks, which are typically the limiting factor for the accurate analysis of low concentrations of trace metals in marine particulate samples. Theoretical detection limits (3 s of the blank) were low for all 17 elements considered, and varied according to filter material and porosity (sub-μg L~(-1) for polycarbonate filters and 1-2 μg L~(-1) for quartz and polyester filters). Analytical accuracy was verified using fresh water CRMs, with excellent recoveries noted (93-103%). Digestion efficiencies for various acid combinations were assessed using sediment and plankton CRMs. Using nitric acid only, good recoveries (79-90%) were achieved for Mo, Cd, Ba, Pb, Mn, Fe, Co, Ni, Cu, Zn and Ga. The addition of HF was necessary for the quantitative recovery of the more refractory trace elements such as U, Al, V and Cr. Bioactive elements such as P can also be analysed and used as a biomass normaliser. Our developed sampling and analytical methods proved reliable when applied during two major field programs in both the open Southern Ocean and Antarctic sea ice environments during the International Polar Year in 2007. Trace elemental data are presented for particulate samples collected in both suspended and sinking marine material, and also within sea ice cores.
机译:微量元素通常会限制海洋中浮游植物的生长,而颗粒形式的量化对于充分了解其生物地球化学循环至关重要。当前缺乏对海洋微粒中痕量元素含量的可靠测量,部分原因是所采用的采样和分析方法不足。在这里,我们报告了一系列最新的痕量金属清洁方法的发展情况,这些方法用于在开放的海洋和海冰环境中收集和处理海洋颗粒物质,包括采样,分级过滤,颗粒消化以及通过磁区电感耦合等离子体质谱(ICP-MS)。尤其要注意对认证参考材料(CRM)和现场空白的分析,这通常是精确分析海洋微粒样品中痕量金属低浓度的限制因素。对于所有考虑的17种元素,理论检测限(空白3 s)均较低,并且根据过滤器材料和孔隙率而变化(聚碳酸酯过滤器的亚微克L〜(-1)和1-2微克L〜(-1)用于石英和聚酯过滤器。使用淡水CRM验证了分析的准确性,并且回收率极高(93-103%)。使用沉积物和浮游生物CRM评估了各种酸组合的消化效率。仅使用硝酸,就可以实现Mo,Cd,Ba,Pb,Mn,Fe,Co,Ni,Cu,Zn和Ga的良好回收率(79-90%)。添加HF对于定量回收高锰酸钾是必要的。更多难熔的微量元素,例如U,Al,V和Cr。还可以分析生物活性元素(例如P)并将其用作生物量归一化剂。我们开发的采样和分析方法在2007年国际极地年期间在开放的南大洋和南极海冰环境中的两个主要野外计划中应用时证明是可靠的。提供了悬浮和下沉海洋物质中收集的微粒样品的痕量元素数据。 ,以及在海冰芯内。

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