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首页> 外文期刊>Food analytical methods >Bromine, chlorine, and iodine determination in soybean and its products by ICP-MS after digestion using microwave-induced combustion.
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Bromine, chlorine, and iodine determination in soybean and its products by ICP-MS after digestion using microwave-induced combustion.

机译:微波诱导燃烧消解后,通过ICP-MS测定大豆及其制品中的溴,氯和碘。

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A method for bromine, chlorine, and iodine determination in soybean and related products was developed by inductively coupled plasma mass spectrometry (ICP-MS) after digestion by microwave-induced combustion (MIC). Samples were pressed as pellets and combusted using pressurized oxygen (20 bar) and ammonium nitrate solution (50 muL of 6 mol L-1) as the igniter. Analytes were absorbed in alkaline solution (100 mmol L-1 NH4OH), and a reflux step of 5 min, microwave power of 1,400 W, was applied after combustion in order to improve analyte recoveries. For Cl determination by ICP-MS, a dynamic reaction cell was used with ammonia as the reaction gas. The accuracy was evaluated using certified reference materials (CRMs) and spiked samples. Using MIC, the agreement with CRM values and spike recoveries was higher than 95 % for all analytes for certified reference materials of a similar composition (National Institute of Standards and Technology (NIST), corn bran and NIST, whole milk). Limits of detection were 0.03, 1.2, and 0.002 mug g-1 for Br, Cl, and I, respectively. The residual carbon content in the digests obtained after MIC procedure was lower than 0.5 %. Blanks were always negligible and no memory effects were observed. Digestion by MIC allowed processing up to eight samples by each run in 25 min with high efficiency of digestion providing a suitable medium for further bromine, chlorine, and iodine determination by ICP-MS. copyright Springer Science+Business Media New York 2012.
机译:建立了微波诱导燃烧(MIC)消解后电感耦合等离子体质谱(ICP-MS)测定大豆及相关产品中溴,氯和碘的方法。将样品压成小球,并使用加压氧气(20 bar)和硝酸铵溶液(50μL6 mol L -1 )作为点火器进行燃烧。将分析物吸收到碱性溶液(100 mmol L -1 NH 4 OH)中,并在燃烧后,施加5分钟的回流步骤(微波功率为1,400 W)为了提高分析物的回收率。为了通过ICP-MS测定Cl,使用了动态反应池,其中氨为反应气体。使用认证的参考材料(CRM)和加标样品评估准确性。使用MIC,对于具有相似成分的认证参考材料(美国国家标准技术研究院(NIST),玉米麸皮和NIST,全脂牛奶),所有分析物与CRM值和加标回收率的一致性均高于95%。 Br,Cl和I的检出限分别为0.03、1.2和0.002马克杯g -1 。 MIC程序后获得的消化液中的残留碳含量低于0.5%。空白总是可以忽略不计的,没有观察到记忆效应。通过MIC进行的消化可以在25分钟内每次运行多达8个样品,并且具有很高的消化效率,从而为通过ICP-MS进一步测定溴,氯和碘提供了合适的介质。版权所有Springer Science + Business Media纽约,2012年。

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