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首页> 外文期刊>Environmental Science: Processes & Impacts >Tris(2-chloroethyl) phosphate, a pervasive flame retardant: critical perspective on its emissions into the environment and human toxicity
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Tris(2-chloroethyl) phosphate, a pervasive flame retardant: critical perspective on its emissions into the environment and human toxicity

机译:Tris(2-氯乙基)磷酸盐,一种普遍存存阻燃剂:对环境和人类毒性排放的批判性观点

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摘要

Regulations and the voluntary activities of manufacturers have led to a market shift in the use of flame retardants (FRs). Accordingly, organophosphate ester flame retardants (OPFRs) have emerged as a replacement for polybrominated diphenyl ethers (PBDEs). One of the widely used OPFRs is tris(2-chloroethyl) phosphate (TCEP), the considerable usage of which has reached 1.0 Mt globally. High concentrations of TCEP in indoor dust (similar to 2.0 x 10(5)ng g(-1)), its detection in nearly all foodstuffs (max. concentration of similar to 30-300 ng g(-1)or ng L-1), human body burden, and toxicological properties as revealed by meta-analysis make TCEP hard to distinguish from traditional FRs, and this situation requires researchers to rethink whether or not TCEP is an appropriate choice as a new FR. However, there are many unresolved issues, which may impede global health agencies in framing stringent regulations and manufacturers considering the meticulous use of TCEP. Therefore, the aim of the present review is to highlight the factors that influence TCEP emissions from its sources, its bioaccessibility, threat of trophic transfer, and toxicogenomics in order to provide better insight into its emergence as an FR. Finally, remediation strategies for dealing with TCEP emissions, and future research directions are addressed.
机译:法规和制造商的自愿活动导致了使用阻燃剂(FRS)的市场转变。因此,有机磷酸酯阻燃剂(OPFRS)作为多溴苯醚(PBDE)的替代品。其中一个广泛使用的OPFRS是TRIS(2-氯乙基)磷酸盐(TCEP),其使用率相当多,在全球范围内达到1.0吨。室内粉尘中的高浓度TCEP(类似于2.0×10(5)Ng(-1)),其在几乎所有食品中的检测(最大。浓度与30-300ng g(-1)或ng l- 1),人体负担,和毒理学属性,如Meta分析所揭示的,使TCEP难以区分传统FRS,并且这种情况需要研究人员,以重新思考TCEP是一种适当的选择作为新的FR。但是,有许多未解决的问题,可能会妨碍全球卫生机构在框架严格的规定和制造商中,考虑到TCEP细致使用。因此,本综述的目的是突出影响来自其来源的TCEP排放的因素,其生物可接受性,营养疏水性转移威胁以及毒性组织,以便为其作为FR的出现提供更好的洞察力。最后,解决了处理TCEP排放和未来研究方向的修复策略。

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