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Sample introduction in multi-syringe flow injection systems: comparison between time-based and volume-based strategies

机译:多注射器流动注射系统中的样品引入:基于时间和基于体积的策略之间的比较

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摘要

In multi-syringe flowinjection analysis (MSFIA), devices as selection, injection or commutation valves must be incorporated to the manifold to provide access to sample and standard solutions. Therefore, the definition of sample amount can be either volume or time-based. In the present work, four configurations for sample introduction (two for each approach) were tested in order to establish if the different strategiesaffect the analytical signal in MSFIA systems. The mean absorbance value from ten consecutive injections of a bromothymol blue solution obtained for the time-based strategy was lower than that provided by the volume-based approach as the exact volume delivered by each configuration was different from the “theoretical” volume. For time-based configurations, the exact volume delivered is 2–5% lower than thetheoretical value while for volume-based configurations, the volume delivered was between 6 and 46% larger than the theoretical volume. Moreover, for time-based sampling, the order of steps in the analytical cycle was of utmost importance since any alteration in the flow directionaffected the volume delivered in the subsequent step in the analytical cycle. The influence of the two sampling approaches was also evaluated in the MSFIA systems for the spectrophotometric determination of phenolic compounds and the potentiometric determination of chloride.There was no evidence that the use of either volume or time-based sampling would improve the analytical features of these determinations when real samples were tested.
机译:在多针流注射分析(MSFIA)中,必须将诸如选择,注射或换向阀之类的设备整合到歧管中,以提供进样和标准溶液的通道。因此,样本量的定义可以基于体积或基于时间。在本工作中,测试了四种用于样品引入的配置(每种方法两种),以确定不同的策略是否影响MSFIA系统中的分析信号。对于基于时间的策略,连续十次注射溴百里酚蓝溶液获得的平均吸光度值低于基于体积的方法所提供的平均吸光度值,因为每种配置提供的准确体积与“理论”体积不同。对于基于时间的配置,实际交付的体积比理论值低2–5%,而对于基于体积的配置,交付的体积比理论值大6%至46%。此外,对于基于时间的采样,分析循环中步骤的顺序至关重要,因为流动方向的任何变化都会影响分析循环中后续步骤中输送的体积。还在MSFIA系统中评估了两种采样方法对酚类化合物的分光光度测定和氯化物的电位测定的影响,没有证据表明使用基于体积或基于时间的采样会改善这些方法的分析特性确定何时测试真实样品。

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