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Optimization of simultaneous determination of metals in commercial pumpkin seed oils using inductively coupled atomic emission spectrometry

机译:电感耦合原子发射光谱法同时测定商业南瓜种子油中金属的优化

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摘要

In this work, the inductively coupled plasma atomic emission spectrometry (ICP-AES) was developed and validated for determination of 27 metals in nine pumpkin oils from two production processes (cold pressed and roasted). A microwave assisted digestion was applied for the dissolution of the samples. To evaluate plasma robustness and analytical performance, the Mg II 280.270 nm/Mg I 285.213 nm (Mg II/Mg I) line intensity ratio was used. The robust plasma conditions in axial/radial view mode were reached at an RW power of 1150 W and an argon nebulizer flow rate of 0.5 L/min. The method is evaluated by application of the standard addition method and by recovery test. In general, the recoveries for all elements in pumpkin seed oils were between 90% and 110% except, only for Cd, Pb and As they were 90% and 110%. The most abundant element is K followed by, Mg, P, Ca and Na. Pumpkin seed oils were also found to be a good source of Fe, Zn, Cu and Mn. The highest levels of analyzed elements were found in pumpkin seed oils producing from the roasted pumpkin seed paste. In all samples, the content of heavy metals was below the recommended tolerable levels proposed by Joint FAO/WHO Expert Committee on Food Additives and does not a pose a health risk for the consumer. The levels of the metals in pumpkin seed oils were also compared with those reported by the literature. Cluster analysis (CA) of the analytical data confirmed the observed differences between oils from two production processes.
机译:在这项工作中,开发了电感耦合等离子体原子发射光谱法(ICP-AES),并验证了来自两种生产过程的九个南瓜油中的27金属(冷压和烤)。施加微波辅助消化以溶解样品。为了评估血浆鲁棒性和分析性能,使用Mg II 280.270nm / mg I 285.213nm(Mg II / Mg i)线强度比。以1150W的RW功率达到轴向/径向视图模式中的鲁棒等离子体条件,氩气雾化器流速为0.5L / min。该方法通过应用标准添加方法和恢复测试来评估。一般而言,南瓜种子油中所有元素的回收率在90%至110%之间,除非仅适用于Cd,Pb,并且它们是& 90%和 110%。最丰富的元素是k,然后是mg,p,ca和na。南瓜种子油也被发现是Fe,Zn,Cu和Mn的良好来源。在从烤南瓜种子糊生产的南瓜种子油中发现了最高水平的分析元素。在所有样品中,重金属的含量低于粮农组织/世卫组织食品添加剂专家委员会(粮食添加剂专家委员会)提出的推荐腐蚀水平,并且不会对消费者构成健康风险。还与文献报道的南瓜种子油中金属水平。分析数据的聚类分析(CA)确认了来自两个生产过程的油之间观察到的差异。

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