首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Seafood Digestion By Microwave-induced Combustion For Total Arsenic Determination By Atomic Spectrometry Techniques With Hydride Generation
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Seafood Digestion By Microwave-induced Combustion For Total Arsenic Determination By Atomic Spectrometry Techniques With Hydride Generation

机译:微波消解-消解-氢化物发生原子光谱法测定海鲜中总砷

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摘要

A microwave-induced combustion (MIC) method was proposed for seafood digestion and further total arsenic determination using hydride generation coupled to atomic spectrometry techniques. It was possible to digest up to 500 mg of mussel tissue, fish tissue and whole shrimp. Combustion was carried out in closed quartz vessels with pressurized oxygen. Total arsenic was determined in MIC digests by conventional inductively coupled plasma mass spectrometry (ICP-MS), flow injection hydride generation coupled to atomic absorption spectrometry (FI-HG AAS) and to ICP-MS (FI-HG-ICP-MS). Accuracy was evaluated using certified reference materials of oyster tissue, dogfish muscle, tuna fish tissue and mussel tissue. The use of a reflux step and water or diluted HNO_3 as absorbing solutions was investigated. The agreement to certified values was from 96 to 103% using 0.1 mol 1~(-1) HNO_3 as absorbing solution and 5 min of reflux. The agreement of results for As determination by FI-HG AAS and FI-HG-ICP-MS was better than 98% when compared with results obtained by ICP-MS after digestion. The proposed method by MIC allowed the digestion in less time than other procedures and with low residual carbon content (< 0.5%). With this method up to eight samples could be processed simultaneously in 25 min. Taking into account that concentrated acids were not necessary, the proposed method can be considered in agreement with green chemistry recommendations.
机译:提出了一种微波诱导燃烧(MIC)方法,用于海产品消化以及使用氢化物​​发生和原子光谱技术进一步测定总砷。可以消化多达500毫克的贻贝组织,鱼组织和整只虾。在密闭的石英容器中用加压氧气进行燃烧。通过常规电感耦合等离子体质谱法(ICP-MS),流动注射氢化物发生与原子吸收光谱法(FI-HG AAS)和ICP-MS(FI-HG-ICP-MS)来测定MIC消解物中的总砷。使用牡蛎组织,dog鱼肌肉,金枪鱼组织和贻贝组织的认证参考材料评估准确性。研究了使用回流步骤和水或稀HNO_3作为吸收溶液。使用0.1 mol 1〜(-1)HNO_3作为吸收液,回流5分钟,达到标准值的96%至103%。与消解后的ICP-MS结果相比,FI-HG AAS和FI-HG-ICP-MS测定As的结果一致性好于98%。 MIC提出的方法比其他方法消化时间短,残留碳含量低(<0.5%)。使用这种方法,可以在25分钟内同时处理八个样本。考虑到不需要浓酸,建议的方法可以与绿色化学推荐方法一起考虑。

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