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Microplate-reader method for the rapid analysis of copper in natural waters with chemiluminescence detection

机译:微孔板读数器方法用于化学发光检测快速分析天然水中的铜

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摘要

We have developed a method for the determination of copper in natural waters at nanomolar levels. The use of a microplate-reader minimizes sample processing time (~25 s per sample), reagent consumption (~120 μL per sample), and sample volume (~700 μL). Copper is detected by chemiluminescence. This technique is based on the formation of a complex between copper and 1,10-phenanthroline and the subsequent emission of light during the oxidation of the complex by hydrogen peroxide. Samples are acidified to pH 1.7 and then introduced directly into a 24-well plate. Reagents are added during data acquisition via two reagent injectors. When trace metal clean protocols are employed, the reproducibility is generally less than 7% on blanks and the detection limit is 0.7 nM for seawater and 0.4 nM for freshwater. More than 100 samples per hour can be analyzed with this technique, which is simple, robust, and amenable to at-sea analysis. Seawater samples from Storm Bay in Tasmania illustrate the utility of the method for environmental science. Indeed other trace metals for which optical detection methods exist (e.g., chemiluminescence, fluorescence, and absorbance) could be adapted to the microplate-reader.
机译:我们已经开发出一种以纳摩尔水平测定天然水中铜的方法。使用微孔板读数器可最大程度地减少样品处理时间(每个样品约25 s),试剂消耗量(每个样品约120μL)和样品量(约700μL)。铜通过化学发光检测。该技术基于铜与1,10-菲咯啉之间的络合物的形成以及随后该络合物被过氧化氢氧化期间的光发射。将样品酸化至pH 1.7,然后直接引入24孔板中。在数据采集期间,通过两个试剂进样器添加了试剂。当采用痕量金属清洁方案时,空白样品的重现性通常小于7%,海水的检出限为0.7 nM,淡水的检出限为0.4 nM。每小时可以使用这种技术分析100个样本,该技术简单,可靠并且适合海上分析。塔斯马尼亚州暴风湾的海水样本说明了该方法在环境科学中的实用性。实际上,可以将存在光学检测方法(例如化学发光,荧光和吸光度)的其他痕量金属应用于酶标仪。

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