首页> 外文期刊>Environmental Science & Technology >Identification of Photoinitiators, Including Novel Phosphine Oxides, and Their Transformation Products in Food Packaging Materials and Indoor Dust in Canada
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Identification of Photoinitiators, Including Novel Phosphine Oxides, and Their Transformation Products in Food Packaging Materials and Indoor Dust in Canada

机译:鉴定光引发剂,包括新型膦氧化醚,以及加拿大的食品包装材料和室内尘埃的转化产物

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摘要

Although photopolymerization is generally considered a green technology, the contamination of foodstuffs by photoinitiators (PIs), an essential component of photopolymerization systems, has recently attracted notice. Despite this interest, little attention has been paid to PI contamination in the environment. To date, only one study, performed in China, has reported the occurrence of PIs in the environment. In the present study, the occurrence of 25 PI additives with discrete molecular structures was investigated in food packaging materials and indoor dust. The PIs studied here include benzophenones (BZPs), thioxanthones (TXs), amine co-initiators (ACIs), and novel phosphine oxides (POs). Twenty-four PIs were detected in food packaging materials. Total concentrations of PIs (Sigma PIs) ranged between 122 and 44 113 ng/g, with a geometric mean (GM) of 3375 ng/g. The photodegradation of PIs in food packaging materials was investigated for the first time, and the half-lives of PIs in these materials were found to range from 32 to 289 h. These 24 PIs were also detected in indoor dust samples (GM of Sigma PIs = 1483 ng/g). The relative abundances of different PIs were found to vary between the packaging materials and the indoor dust, which is attributed in part to the different stabilities of different PIs under simulated sunlight. Using standards synthesized in our lab, four TX transformation products (GM: 34.8 ng/g) were also detected in indoor dust. The concentrations of the transformation products were higher than the concentrations of the parent chemicals in indoor dust. Thus, further studies exploring human exposure to TXs should include these transformation products to avoid underestimation. This is the first report of PIs and relevant transformation products in the indoor environment in North America.
机译:尽管光聚合通常被认为是一种绿色技术,但光引发剂(PIS)是光聚合物的污染,光聚合系统的必要组分,最近吸引了通知。尽管有这种兴趣,但在环境中的PI污染已经提出了很少的关注。迄今为止,只有一项研究在中国进行,报告了对环境中PIS的发生。在本研究中,在食品包装材料和室内粉尘中研究了25种具有离散分子结构的PI添加剂的发生。这里研究的PIS包括二苯甲酯(BZPS),硫代吡喃酮(TXS),胺共引发剂(ACIS)和新型磷酸(POS)。在食品包装材料中检测到二十四个PI。 PIS(Sigma PI)的总浓度范围在122和44113ng / g之间,几何平均值(GM)为3375 ng / g。第一次研究了食品包装材料中PIS的光降解,并发现这些材料中PI的半衰期为32至289小时。还在室内粉尘样品(Sigma PIS = 1483 Ng / g)中检测到这些24种PI。发现不同PIS的相对丰度在包装材料和室内灰尘之间变化,这部分归因于模拟阳光下不同PIS的不同稳定性。在室内灰尘中也检测到使用我们实验室中合成的标准,在室内灰尘中检测到四种TX转化产品(GM:34.8 ng / g)。转化产物的浓度高于室内粉尘中母体化学物质的浓度。因此,探索人类暴露于TXS的进一步研究应包括这些转化产品,以避免低估。这是北美室内环境中PIS和相关转型产品的第一个报告。

著录项

  • 来源
    《Environmental Science & Technology》 |2019年第8期|4109-4118|共10页
  • 作者

    Liu Runzeng; Mabury Scott A.;

  • 作者单位

    Univ Toronto Dept Chem 80 St George St Toronto ON M5S 3H6 Canada;

    Univ Toronto Dept Chem 80 St George St Toronto ON M5S 3H6 Canada;

  • 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
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