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无卤阻燃剂的持久性、生物累积性和毒性。

Persistence, bioaccumulation, and toxicity of halogen-free flame retardants.

机构信息

Institute for Biodiversity and Ecosystem Dynamics, University of Amsterdam, The Netherlands.

出版信息

Rev Environ Contam Toxicol. 2013;222:1-71. doi: 10.1007/978-1-4614-4717-7_1.

Abstract

Polymers are synthetic organic materials having a high carbon and hydrogen content, which make them readily combustible. Polymers have many indoor uses and their flammability makes them a fire hazard. Therefore, flame retardants (FRs) are incorporated into these materials as a safety measure. Brominated flame retardants (BFRs), which accounted for about 21% of the total world market of FRs, have several unintended negative effects on the environment and human health. Hence, there is growing interest in finding appropriate alternative halogen-free flame retardants (HFFRs). Many of these HFFRs are marketed already, although their environ- mental behavior and toxicological properties are often only known to a limited extent, and their potential impact on the environment cannot yet be properly assessed. Therefore, we undertook this review to make an inventory of the available data that exists (up to September 2011) on the physical-chemical properties, pro- duction volumes, persistence, bioaccumulation, and toxicity (PBT) of a selection of HFFRs that are potential replacements for BFRs in polymers. Large data gaps were identified for the physical-chemical and the PBT properties of the reviewed HFFRs. Because these HFFRs are currently on the market, there is an urgent need to fill these data gaps. Enhanced transparency of methodology and data are needed to reevaluate certain test results that appear contradictory, and, if this does not provide new insights, further research should be performed. TPP has been studied quite extensively and it is clearly persistent, bioaccumulative, and toxic. So far, RDP and BDP have demonstrated low to high ecotoxicity and persistence. The compounds ATH and ZB exerted high toxicity to some species and ALPI appeared to be persistent and has low to moderate reported ecotoxicity. DOPO and MPP may be persistent, but this view is based merely on one or two studies, clearly indicating a lack of information. Many degradation studies have been performed on PER and show low persistence, with a few exceptions. Additionally, there is too l ittle information on the bioaccumulation potential of PER. APP mostly has low PBT properties; however, moderate ecotoxicity was reported in two studies. Mg(OH)₂, ZHS, and ZS do not show such remarkably high bioaccumulation or toxicity, but large data gaps exist for these compounds also. Nevertheless, we consider the latter compounds to be the most promising among alternative HFFRs. To assess whether the presently reviewed HFFRs are truly suitable alternatives, each compound should be examined individually by comparing its PBT values with those of the relevant halogenated flame retardant. Until more data are available, it remains impossible to accurately evaluate the risk of each of these compounds, including the ones that are already extensively marketed.

摘要

聚合物是一种含有高碳和氢的合成有机材料,这使得它们很容易燃烧。聚合物在室内有许多用途,其可燃性使其成为火灾隐患。因此,作为安全措施,阻燃剂(FRs)被添加到这些材料中。溴化阻燃剂(BFRs)占全球阻燃剂市场总量的 21%左右,对环境和人类健康有几个意外的负面影响。因此,人们越来越感兴趣地寻找合适的替代卤化阻燃剂(HFFRs)。许多此类 HFFRs 已经投放市场,尽管它们的环境行为和毒理学特性通常只在有限的程度上被了解,而且它们对环境的潜在影响还不能得到适当的评估。因此,我们进行了这项综述,以了解现有的有关物理化学性质、生产规模、持久性、生物蓄积性和毒性(PBT)的可用数据,这些数据是聚合物中替代 BFR 的潜在 HFFR。对于所审查的 HFFR 的物理化学和 PBT 特性,存在很大的数据差距。由于这些 HFFRs 目前在市场上,因此迫切需要填补这些数据空白。需要提高方法和数据的透明度,以重新评估某些似乎相互矛盾的测试结果,如果这不能提供新的见解,则需要进一步研究。TPP 已经得到了相当广泛的研究,它显然是持久的、生物蓄积的和有毒的。到目前为止,RDP 和 BDP 已经表现出低至高的生态毒性和持久性。化合物 ATH 和 ZB 对某些物种表现出高毒性,ALPI 似乎具有持久性和低至中度的报告生态毒性。DOPO 和 MPP 可能是持久的,但这种观点仅仅基于一两项研究,显然表明信息不足。已经对 PER 进行了许多降解研究,表明其持久性低,但也有一些例外。此外,关于 PER 的生物蓄积潜力的信息太少。APP 主要具有低 PBT 特性;然而,在两项研究中报告了中度生态毒性。Mg(OH)₂、ZHS 和 ZS 没有表现出如此高的生物蓄积性或毒性,但这些化合物也存在很大的数据差距。然而,我们认为替代 HFFR 中最有前途的是后者。为了评估目前审查的 HFFRs 是否真的是合适的替代品,应该通过将其 PBT 值与相关卤化阻燃剂的 PBT 值进行比较,对每种化合物进行单独检查。在获得更多数据之前,仍然不可能准确评估这些化合物中的每一种的风险,包括已经广泛销售的化合物。

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