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Detection of Organophosphate Flame Retardants in Furniture Foam and U.S. House Dust

机译:检测家具泡沫和美国房屋灰尘中的有机磷酸盐阻燃剂

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摘要

Restrictions on the use of polybrominated diphenyl ethers (PBDEs) have resulted in the increased use of alternate flame retardant chemicals to meet flammability standards. However, it has been difficult to determine which chemical formulations are currently being used in high volumes to meet flammability standards since the use of flame retardant formulations in consumer products is not transparent (i.e., not provided to customers). To investigate chemicals being used as replacements for PentaBDE in polyurethane foam, we analyzed foam samples from 26 different pieces of furniture purchased in the United States primarily between 2003 and 2009. Samples included foam from couches, chairs, mattress pads, pillows, and, in one case, foam from a sound-proofing system of a laboratory-grade dust sieve, and were analyzed using gas chromatography mass spectrometry. Fifteen of the foam samples contained the flame retardant tris(1,3-dichloro-2-propyl) phosphate (TDCPP; 1-5% by weight), four samples contained tris(1-chloro-2-propyl) phosphate (TCPP; 0.5 -2.2% by weight), one sample contained brominated chemicals found in a new flame retardant mixture called Firemaster 550 (4.2% by weight), and one foam sample collected from a futon likely purchased prior to 2004 contained PentaBDE (0.5% by weight). Due to the high frequency of detection of the chlorinated phosphate compounds in furniture foam, we analyzed extracts from 50 house dust samples collected between 2002 and 2007 in the Boston, MA area for TDCPP, TCPP, and another high volume use organophosphate-based flame retardant used in foam, triphenylphosphate (TPP). Detection frequencies for TDCPP and TPP in the dust samples were >96% and were log normally distributed, similar to observations for PBDEs. TCPP was positively detected in dust in only 24% of the samples, but detection was significantly limited by a coelution problem. Therngeometric mean concentrations for TCPP, TDCPP, and TPP in house dust were 570,1890, and 7360 ng/g, respectively, and maximum values detected in dust were 5490,56,080 and 1,798,000 ng/g, respectively. These data suggest that levels of these organophosphate flame retardants are comparable, or in some cases greater than, levels of PBDEs in house dust The high prevalence of these chemicals in foam and the high concentrations measured in dust (as high as 1.8 mg/g) warrant further studies to evaluate potential health effects from dust exposure, particularly for children.
机译:限制使用多溴二苯醚(PBDEs)导致更多使用替代的阻燃化学品以满足可燃性标准。然而,由于消费产品中阻燃剂配方的使用不是透明的(即,未提供给客户),因此很难确定当前正在大量使用哪些化学配方以满足可燃性标准。为了研究用作聚氨酯泡沫中五溴二苯醚替代品的化学物质,我们分析了2003年至2009年之间从美国购买的26种不同家具中的泡沫样品。样品包括沙发,椅子,床垫,枕头和沙发上的泡沫。一种情况是,泡沫来自实验室级防尘筛的隔音系统,并使用气相色谱质谱法进行了分析。泡沫样品中的十五个包含阻燃性磷酸三(1,3-二氯-2-丙基)(TDCPP; 1-5%重量),四个样品包含三(1-氯-2-丙基)磷酸三酯(TCPP; 0.5%-2.2%的重量),一个样品中含有一种称为Firemaster 550的新型阻燃剂混合物中的溴化化学品(4.2%重量),从2004年之前购买的蒲团中收集到的一种泡沫样品中含有五溴二苯醚(0.5%重量) )。由于检测家具泡沫中氯代磷酸盐化合物的频率很高,因此我们分析了2002年至2007年间在马萨诸塞州波士顿地区收集的50种房屋粉尘样品中的TDCPP,TCPP和另一种大量使用的基于有机磷酸盐的阻燃剂用于泡沫,磷酸三苯酯(TPP)。尘埃样品中TDCPP和TPP的检测频率> 96%,呈对数正态分布,类似于多溴二苯醚的观测值。仅在24%的样品中尘埃中检测到了TCPP,但由于共洗脱问题,检测受到很大限制。室内尘埃中TCPP,TDCPP和TPP的几何平均浓度分别为570,1890和7360 ng / g,尘埃中检测到的最大值分别为5490,56,080和1,798,000 ng / g。这些数据表明,这些有机磷酸酯阻燃剂的含量与室内灰尘中的PBDEs相当,或在某些情况下要高于PBDEs。泡沫中这些化学物质的普遍性以及灰尘中的高浓度(高达1.8 mg / g)值得进一步研究,以评估粉尘暴露对健康的潜在影响,尤其是对儿童而言。

著录项

  • 来源
    《Environmental Science & Technology》 |2009年第19期|7490-7495|共6页
  • 作者单位

    Nicholas School of the Environment, Duke University,Durham, North Carolina;

    San Francisco Estuary Institute,Oakland, California;

    Nicholas School of the Environment, Duke University,Durham, North Carolina;

    Nicholas School of the Environment, Duke University,Durham, North Carolina;

    University of Michigan, Ann Arbor,Michigan;

    Department of Chemistry, University of California Green Science Policy Institute, Berkeley, California;

    Boston University School of Public Health,Boston, Massachusetts;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 14:04:56

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