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Universal approach for selective trace metal determinations via sequential injection-bead injection-lab-on-valve using renewable hydrophobic bead surfaces as reagent carriers

机译:通过使用可再生疏水性珠粒表面作为试剂载体的顺序注入珠粒在阀上进样的实验室方法选择性测定痕量金属的通用方法

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摘要

A new concept is presented for selective and sensitive determination of trace metals via electrothermal atomic absorption spectrometry based on the principle of bead injection (BI) with renewable reversed-phase surfaces in a sequential injection-lab-on-valve (SI-LOV) mode. The methodology involves the use of poly(styrene-divinylbenzene) beads containing pendant octadecyl moieties (C-18-PS/DVB), which are preimpregnated with a selective organic metal chelating agent prior to the automatic manipulation of the beads in the microbore conduits of the LOV unit. By adapting this approach, the immobilization of the most suitable chelating agent can be effected irrespective of the kinetics involved, optimal reaction conditions can be used for implementing the chelating reaction of the target metal analyte with the immobilized reagent, and an added degree of freedom is offered in selecting the most favorable elution mode in order to attain the highest sensitivity. The potential of the SI-BI-LOV scheme is demonstrated by taking Cr(VI) as a model analyte, using a 1,5-diphenylcarbazide (DPC)-loaded bead column as the active microzone. As this reaction requires the use of high acidity, it is also shown that the bead material exhibits excellent chemical stability at low pH values. On-line pH sample adjustment prevents alteration of the original distribution of chromium species while ensuring fast rates for the DPC-Cr(VI) reaction. The proposed procedure was successfully applied to the determination of trace levels of Cr(VI) in natural waters containing high levels of dissolved salts (such as seawater and hard tap water) without requiring any dilution step. Method validation was performed by determination of total chromium in an NIST standard reference material (NIST 1640, natural water) after Cr(Ill) oxidation, and the results were in good agreement with the certified value.
机译:提出了一种新的概念,该方法基于电热原子吸收光谱法,以珠粒注入(BI)的原理,通过可逆序表面连续注入阀(SI-LOV)模式下的可再生反相表面,选择性地灵敏地测定痕量金属。 。该方法包括使用含有十八烷基侧基部分(C-18-PS / DVB)的聚(苯乙烯-二乙烯基苯)磁珠,在自动操作磁珠的微孔导管中之前,将其预先浸渍有选择性的有机金属螯合剂。 LOV单位。通过采用这种方法,可以实现最合适的螯合剂的固定化,而无需考虑所涉及的动力学,可以使用最佳反应条件进行目标金属分析物与固定化试剂的螯合反应,并且增加了自由度。在选择最有利的洗脱模式时可获得最高的灵敏度。 SI-BI-LOV方案的潜力通过使用Cr(VI)作为模型分析物,使用1,5-二苯卡巴肼(DPC)负载的微珠柱作为活性微区来证明。由于该反应需要使用高酸度,因此还表明,珠粒材料在低pH值下显示出优异的化学稳定性。在线pH样品调整可防止铬物种原始分布的改变,同时确保DPC-Cr(VI)反应的快速速率。所建议的程序已成功地用于测定含高浓度溶解盐(例如海水和硬自来水)的天然水中痕量的Cr(VI),而无需任何稀释步骤。通过在Cr(III)氧化后确定NIST标准参考材料(NIST 1640,天然水)中的总铬来进行方法验证,其结果与认证值高度吻合。

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