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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Flow injection method for the rapid determination of Chemical Oxygen Demand based on microwave digestion and chromium speciation in Flame Atomic Absorption Spectrometry
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Flow injection method for the rapid determination of Chemical Oxygen Demand based on microwave digestion and chromium speciation in Flame Atomic Absorption Spectrometry

机译:流动注射法火焰原子吸收光谱法快速测定微波消解和铬形态的化学需氧量。

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摘要

The present paper describes a new flow injection method for the determination of Chemical Oxygen Demand (COD). This method consists of a first digestion step, where the sample is heated by microwave radiation, a second one where an anionic exchange resin retains the Cr(VI) that has not been reduced by the organic matter of the sample and a third one where Cr(VI), after being eluted, is determined by flame atomic absorption spectrometry. The microwave power applied, the sulphuric acid concentration, the liquid flow in the digestion step and the sample volume were the variables studied. The recovery and precision obtained with this method are similar to those obtained using a standard semi-micro method, whereas the throughput is much higher (up to 50determinations per hour), As regards sensitivity, by changing the sample loop volume and the concentration of dichromate, one can analyze samples with Chemical Oxygen Demand values between 25 and 5000 mg/1. The limit of detection is about 7 mg/1 COD. Aninteresting feature of the new method, which is not shared by. most other flow injection methods of Chemical Oxygen Demand determination, is that there is no matrix effect in the determination step.
机译:本文介绍了一种用于测定化学需氧量(COD)的新的流动注射方法。该方法包括第一个消解步骤,其中样品通过微波辐射加热;第二个消解步骤,其中阴离子交换树脂保留未被样品有机物还原的Cr(VI),第二个消解步骤,其中Cr (VI)被洗脱后,通过火焰原子吸收光谱法测定。所研究的变量包括所施加的微波功率,硫酸浓度,消化步骤中的液体流量和样品量。通过此方法获得的回收率和精密度与使用标准半微量方法获得的回收率和精密度相似,但是通量要高得多(每小时多达50个测定值)。关于灵敏度,通过更改样品定量管体积和重铬酸盐的浓度,可以分析化学需氧量介于25和5000 mg / 1之间的样品。检测极限为约7 mg / 1 COD。新方法的一个有趣功能,未被共享。确定化学需氧量的其他大多数流动注射方法是,在确定步骤中没有基质效应。

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