首页> 外文期刊>Chemosphere >Analysis of two alternative organophosphorus flame retardants in electronic and plastic consumer products: Resorcinol bis-(diphenylphosphate) (PBDPP) and bisphenol A bis (diphenylphosphate) (BPA-BDPP)
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Analysis of two alternative organophosphorus flame retardants in electronic and plastic consumer products: Resorcinol bis-(diphenylphosphate) (PBDPP) and bisphenol A bis (diphenylphosphate) (BPA-BDPP)

机译:电子和塑料消费产品中两种替代有机磷阻燃剂的分析:间苯二酚双-(二苯基磷酸酯)(PBDPP)和双酚A双(二苯基磷酸酯)(BPA-BDPP)

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摘要

Following the phase-out of polybrominated diphenyl ethers (PBDEs), organophosphorus flame retardants (PFRs) are increasingly used as alternative flame retardants in many products. Data on the presence of two alternative PFRs in consumer products, resorcinol bis (diphenylphosphate) (PBDPP or RDP) and bisphenol A bis (diphenylphosphate) (BPA-BDPP or BDP) is still scarce or non-existing. In this study we propose a simple extraction method and analysis by liquid chromatography-atmospheric pressure chemical ionization (APCI) coupled to a high resolution time-of-flight mass spectrometry (TOF) for plastic consumer products. Detection limits were low enough for trace quantitation in plastic or electronic samples (0.001% and 0.002% w/w for PBDPP and BPA-BDPP, respectively). The APCI source provided better sensitivity and matrix effects than the commonly used ESI source for the analysis of these PFRs. Both PBDPP and BPA-BDPP were detected in 7 of the 12 products purchased in 2012 (at 0.002-03% w/w for PBDPP and 0.02-0.18% w/w for BPA-BDPP) while only PBDPP was found in 4 of the 13 products purchased before 2006 (0.005-7.8% w/w). In newly purchased products, PBDPP, BPA-BDPP and triphenyl phosphate (TPHP) were the most frequently detected PFRs. These results support the recent findings of our research group about high concentration levels of PBDPP and BPA-BDPP up to 0.5-1 mg g~(-1) in house dust collected on electronic equipment and highlights the need for further research on these two novel PFRs.
机译:随着多溴联苯醚(PBDE)的淘汰,有机磷阻燃剂(PFR)越来越多地被用作许多产品中的替代阻燃剂。消费品中间苯二酚双(磷酸二苯酯)(PBDPP或RDP)和双酚A双(磷酸二苯酯)(BPA-BDPP或BDP)中存在两种替代PFR的数据仍然很少或不存在。在这项研究中,我们提出了一种简单的提取方法,并通过液相色谱-大气压化学电离(APCI)结合高分辨率的塑料消费品飞行时间质谱(TOF)进行分析。检测限低到足以用于塑料或电子样品中的痕量定量(PBDPP和BPA-BDPP分别为0.001%和0.002%w / w)。与用于分析这些PFR的常用ESI源相比,APCI源提供了更好的灵敏度和基质效果。在2012年购买的12种产品中,有7种检测到PBDPP和BPA-BDPP(PBDPP为0.002-03%w / w,BPA-BDPP为0.02-0.18%w / w),而在4种产品中仅发现PBDPP 2006年之前购买了13种产品(0.005-7.8%w / w)。在新购买的产品中,PBDPP,BPA-BDPP和磷酸三苯酯(TPHP)是最常检测到的PFR。这些结果支持了我们研究小组的最新发现,即电子设备上收集的室内灰尘中PBDPP和BPA-BDPP的浓度最高可达0.5-1 mg g〜(-1),并强调了需要对这两种新型PFR。

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