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Evaluation of Medicinal Plant Decomposition Efficiency Using Microwave Ovens and Mini-Vials for Cd Determination by TS-FF-AAS

机译:用TS-FF-AAS微波炉和微型样品瓶测定镉对药用植物分解效率的评估

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Sample preparation is an important step in the analytical process because it can introduce different error sources. Its efficiency is checked based on the quality and reliability of the data obtained, and the time spent on this task. This work evaluates medicinal plant decomposition parameters using polypropylene mini-vials heated by microwave radiation, applying the single vessel concept. As an example, sample mass amount (5 mg), mixture of oxidant agents (200 µL conc. HNO3+150 µL 30% v/v H2O2), microwave time and power were evaluated by heating 24 mini-vials in both closed-vessel (CV) and focused (F) microwave ovens. In order to achieve the best-optimised condition for sample preparation, cadmium and residual carbon determinations were carried out for all experiments. The residual carbon (between 0.30 and 0.45%) was determined by CHN elemental analysis and the cadmium concentration (up to 0.80 µg g−1) by thermospray flame furnace atomic absorption spectrometry (TS-FF-AAS) in three different medicinal plants. The accuracy of the proposed methods was assessed using certified reference materials (rye grass, BCR 281 and bovine liver, NIST 1577b) as well as conventional microwave assisted decomposition. The new method used a minimum sample amount (5 mg) and reagent volume (ca. 400 µL) and only 4 and 10 min of microwave sample decomposition for CV and F ovens, respectively. In addition, the capacity of both microwave ovens was increased up to 4 times while contamination risks were inherently reduced with the single vessel concept.
机译:样品制备是分析过程中的重要步骤,因为它会引入不同的误差源。根据所获得数据的质量和可靠性以及在此任务上花费的时间来检查其效率。这项工作采用了单容器概念,通过微波辐射加热的聚丙烯小瓶来评估药用植物的分解参数。例如,样品质量(5 mg),氧化剂混合物(200 µL浓硝酸+150 µL 30%v / v H2 O2 ),微波时间和功率通过在密闭式微波炉(CV)和聚焦式(F)微波炉中加热24个小瓶来进行评估。为了获得最佳的样品制备条件,对所有实验进行了镉和残留碳的测定。通过CHN元素分析确定残留碳(0.30至0.45%),并通过热喷雾火焰炉原子吸收光谱法(TS-FF-AAS)测定镉浓度(最高0.80 µg g-1 )药用植物。使用认证的参考材料(黑麦草,BCR 281和牛肝,NIST 1577b)以及常规微波辅助分解法评估了所提出方法的准确性。新方法分别使用最少的样品量(5 mg)和试剂量(大约400 µL),分别对CV和F烤箱仅分解4和10分钟的微波样品。此外,两个微波炉的容量均提高了4倍,而采用单一容器的设计固有地降低了污染风险。

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