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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Feasibility of using beryllium as internal reference to reduce non-spectroscopic carbon species matrix effect in the inductively coupled plasma-mass spectrometry (ICP-MS) determination of boron in biological samples
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Feasibility of using beryllium as internal reference to reduce non-spectroscopic carbon species matrix effect in the inductively coupled plasma-mass spectrometry (ICP-MS) determination of boron in biological samples

机译:在感应耦合等离子体质谱法(ICP-MS)测定生物样品中硼时,使用铍作为内部参照物以减少非光谱碳物种基质效应的可行性

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摘要

The mechanism by which carbon matrix species cause non-spectroscopic matrix interference on boron (B) and beryllium (Be) during the determination of B in biological samples is investigated. The study indicates that, unlike other matrix species such as Ca and Na that cause non-spectroscopic matrix interference only through space charge effect, carbon species manifest non-spectroscopic interference by two mechanisms. The minor non-spectroscopic interference of carbon is through space charge effect. However, the major non-spectroscopic effect of carbon is by a charge transfer mechanism from C~+-species to B and Be atoms in the central channel of the plasma discharge. The large difference in the magnitude of the carbon charge transfer non-spectroscopic matrix interference between Be and B makes Be unsuitable as an internal reference for B in solutions containing more than 1500 #mu#g/ml dissolved organic carbon (DOC). This DOC content is approximately half the DOC usually present in the final sample solution for B determination in biological samples. However, Be still acts as a perfect internal reference to B in solution containing matrix elements that exert their non-spectroscopic interference effect through space charge mechanism (such as Na, K, Ca, etc.).
机译:研究了碳基质物质在生物样品中B的测定过程中对硼(B)和铍(Be)产生非光谱基质干扰的机理。研究表明,与仅通过空间电荷效应引起非光谱基质干扰的其他基质物质(例如Ca和Na)不同,碳物质通过两种机制表现出非光谱干扰。碳的较小非光谱干扰是通过空间电荷效应。然而,碳的主要非光谱效应是通过电荷转移机制从C〜+物种转移到等离子体放电中心通道中的B和Be原子。 Be和B之间的碳电荷转移非光谱基质干扰的量值差异很大,使得Be不适合作为B的内部参照物,所述溶液的溶解有机碳含量超过1500#mu#g / ml。此DOC含量约为最终样品溶液中通常存在的DOC的一半,用于确定生物样品中的B。但是,Be在含有通过空间电荷机制(例如Na,K,Ca等)发挥非光谱干扰作用的基质元素的溶液中仍可作为B的完美内部参照。

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