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是时候和16种美国环保署优先控制的多环芳烃说再见了?迈向多环芳烃在环境治理中的最新应用。

Time to Say Goodbye to the 16 EPA PAHs? Toward an Up-to-Date Use of PACs for Environmental Purposes.

作者信息

Andersson Jan T, Achten Christine

机构信息

Institute of Inorganic and Analytical Chemistry, University of Muenster , Muenster , Germany.

Institute of Geology and Palaeontology - Applied Geology, University of Muenster , Muenster , Germany.

出版信息

Polycycl Aromat Compd. 2015 Mar 15;35(2-4):330-354. doi: 10.1080/10406638.2014.991042. Epub 2015 Jun 17.

Abstract

The 16 EPA PAHs have played an exceptionally large role above all in environmental and analytical sciences in the last 40 years, but now there are good reasons to question their utility in many circumstances even though their use is so established and comfortable. Here we review the reasons why the list has been so successful and why sometimes it is seen as less relevant. Three groups of polycyclic aromatic compounds (PAC) are missing: larger and highly relevant PAHs, alkylated PACs, and compounds containing heteroatoms. Attempts to improve the situation for certain matrixes are known and here: (1) an updated list of PAHs (including the 16 EPA PAHs) for the evaluation of the toxicity in the environment (40 EnvPAHs); (2) a list of 23 NSO-heterocyclic compounds and 6 heterocyclic metabolites; and (3) lists of 10 oxy-PAHs and 10 nitro-PAHs are proposed for practical use in the future. A discussion in the scientific community about these lists is invited. Although the state of knowledge has improved dramatically since the introduction of the 16 EPA PAHs in the 1970s, this summary also shows that more research is needed about the toxicity, occurrence in the environment and chemical analysis, particularly of alkylated PAHs, higher molecular weight PAHs and substituted PACs such as amino-PAHs, cyano-PAHs, etc.. We also suggest that a long overdue discussion of an update of regulatory environmental PAH analysis is initiated.

摘要

在过去40年里,16种美国环境保护局(EPA)多环芳烃(PAHs)在环境科学和分析科学领域发挥了极其重要的作用。然而,尽管它们的应用已根深蒂固且方便实用,但现在有充分理由质疑它们在许多情况下的实用性。在此,我们回顾了这份清单如此成功的原因以及为何有时它被认为不太适用。有三类多环芳烃化合物(PAC)未被纳入:更大且高度相关的PAHs、烷基化PACs以及含杂原子的化合物。已知有一些针对特定基质改善这种情况的尝试,具体如下:(1)一份用于评估环境毒性的PAHs更新清单(包括16种EPA PAHs,共40种环境PAHs);(2)一份包含23种NSO - 杂环化合物和6种杂环代谢物的清单;(3)建议列出10种含氧PAHs和10种硝基PAHs以供未来实际使用。欢迎科学界对这些清单展开讨论。尽管自20世纪70年代引入16种EPA PAHs以来,知识水平有了显著提高,但本综述也表明,仍需要对毒性、在环境中的存在情况以及化学分析进行更多研究,特别是针对烷基化PAHs、高分子量PAHs以及取代的PACs,如氨基PAHs、氰基PAHs等。我们还建议启动一场早就该进行的关于更新监管环境PAH分析的讨论。

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