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首页> 外文期刊>Analytica chimica acta >Bromine determination in polymers by inductively coupled plasma-mass spectrometry and its potential for fast first screening of brominated flame retardants in polymers and paintings
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Bromine determination in polymers by inductively coupled plasma-mass spectrometry and its potential for fast first screening of brominated flame retardants in polymers and paintings

机译:电感耦合等离子体质谱法测定聚合物中的溴及其在聚合物和涂料中快速筛选溴化阻燃剂的潜力

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The impact of brominated flame retardants (BFRs) on the environment and their potential risk in animal and human health is a present concern. Therefore, existing legislation in the European Union demands that polymers with BFRs are identified and eliminated from the recycling process due to their potential health hazard. In this work, a flow-injection (FI) system coupled to inductively coupled plasma-mass spectrometry (ICP-MS) was optimized for the detection of traces of bromine in polymers, plastic paints and enamels containing BFRs. Sample preparation requires a microwave-assisted digestion in order to transfer bromine in polymeric samples to solution. After appropriate optimization of the digestion procedure and the ICP-MS detection, a detection limit (DL) of 4.2 mg kg~(-1) was obtained for synthesized polyurethane standards containing known concentrations of bromine. The precision of the proposed method, evaluated as the R.S.D. of signals obtained for three replicates of polymeric standard BFRs at the normative EU level, was as low as 3.6%. This simple developed methodology was characterized for the screening of bromine in polymeric matrices. The proposed system provides rapid binary yeso overall responses, being appropriate for the screening of bromine above a pre-set concentration threshold. The unreliability region (UR), given by the probability of false positives and false negatives (set at 5% in both cases), was in the range between 442 and 678mg kg~(-1) of bromine (at a cut-off level of 0.1% in BFRs by weight of homogeneous material fixed by the EU normative). Finally, the applicability of the proposed screening system was tested for the reliable control of bromine in different commercial samples including flame-retardant paints and enamels.
机译:目前,溴化阻燃剂(BFR)对环境的影响及其对动物和人类健康的潜在风险。因此,欧盟现有法规要求对具有BFR的聚合物进行鉴定,因为其潜在的健康危害,应将其从回收过程中清除。在这项工作中,优化了与电感耦合等离子体质谱(ICP-MS)耦合的流动注射(FI)系统,用于检测聚合物,塑料涂料和含有BFR的搪瓷中的痕量溴。样品制备需要微波辅助消化,以便将聚合物样品中的溴转移到溶液中。经过适当优化的消解程序和ICP-MS检测,对于合成的含有已知浓度溴的聚氨酯标准物,检出限(DL)为4.2 mg kg〜(-1)。拟议方法的精度,以R.S.D.在欧盟标准水平上,三份重复的聚合标准BFR获得的信号低至3.6%。该简单开发的方法的特点是用于筛查聚合物基质中的溴。拟议的系统提供快速的二进制“是/否”总体响应,适用于筛查高于预设浓度阈值的溴。由假阳性和假阴性的概率给出的不可靠区域(UR)(在两种情况下均设置为5%)在442至678mg kg〜(-1)之间的溴范围内(处于临界水平)含量按欧盟规范确定的均质材料重量的0.1%以溴化阻燃剂计)。最后,对所提出的筛选系统的适用性进行了测试,以可靠地控制包括阻燃涂料和搪瓷在内的各种商业样品中的溴。

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