首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Chromium available fractions in arousa sediments using a modified microwave BCR protocol based on microwave assisted extraction
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Chromium available fractions in arousa sediments using a modified microwave BCR protocol based on microwave assisted extraction

机译:使用基于微波辅助萃取的改进微波BCR方案,在阿鲁萨(Arousa)沉积物中的铬可利用馏分

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In a research of chromium availability,the three-stage sequential extraction procedure,proposed by European Community Bureau of Reference(BCR),has been applied for the metal fractionation in marine sediment samples.The procedure has been modified,evaluating the effect of microwave energy to perform the sequential method.Results achieved a substantial reduction in time in comparison to the traditional shaking technique.The time of the first and the second extractions were reduced to 30s in both steps using microwave heating and working at 66 W of power.To the third extraction,higher power was necessary so it was chosen to work at 198 W.In the last step investigated,time was reduced to 1 min,being a great improvement respect to the conventional BCR sequential extraction protocol.Chromium determinations in these extracts were carried out by Electrothermal Atomic Absorption Spectrometry(ETAAS).The developed method was applied for chromium determination in marine sediment samples from Ria de Arousa(Galicia,NW of Spain).The values obtained by our laboratory ranged from 0.10 to 1.02 mugg~(-1) for soluble and reducible fractions,and from 5.5 to 60.0 mug g~(-1) for the oxidisable fraction.The higher concentrations obtained were the chromium associated with the organic fraction of the marine sediments.
机译:在铬的可利用性研究中,欧洲参考局(BCR)提出的三步顺序萃取程序已用于海洋沉积物样品中的金属分离。已对该程序进行了修改,以评估微波能量的效果与传统的摇动技术相比,结果显着减少了时间。使用微波加热并以66 W的功率工作,第一步和第二步提取的时间都减少到了30s。第三次萃取,需要更高的功率,因此选择在198 W下工作。在研究的最后一步中,时间减少到1分钟,相对于常规BCR顺序萃取方案而言有很大的改进。对这些萃取物中的铬进行了测定用电热原子吸收光谱法(ETAAS)分离。该方法用于测定来自Ria d的海洋沉积物样品中的铬。 e Arousa(西班牙西北加利西亚)。我们实验室获得的可溶和可还原级分的值在0.10至1.02 mugg〜(-1)之间,可氧化级分的值在5.5至60.0 cupg〜(-1)之间。所获得的较高浓度是与海洋沉积物中有机物有关的铬。

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