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评估污水处理厂合成麝香化合物对大气和水生态环境的贡献。

Assessing Contributions of Synthetic Musk Compounds from Wastewater Treatment Plants to Atmospheric and Aquatic Environments.

机构信息

Air Quality Processes Research Section, Environment and Climate Change Canada, 4905 Dufferin St, Toronto, ON M3H 5T4, Canada.

College of the Environment and Ecology, Xiamen University, Xiamen 361005, China.

出版信息

Environ Sci Technol. 2024 Mar 26;58(12):5524-5533. doi: 10.1021/acs.est.4c00840. Epub 2024 Mar 11.

Abstract

The high environmental concentrations, persistence, and toxicity of synthetic musk compounds (SMCs) necessitate a better grasp of their fate in wastewater treatment plants (WWTPs). To investigate the importance of WWTPs as pathways of SMCs to the environment, air and wastewater samples were collected at four WWTPs in Ontario, Canada. Polycyclic musks (PCMs) were present at higher concentrations than nitro musks (NMs) and macrocyclic musks (MCMs). Three PCMs [galaxolide (HHCB), tonalide (AHTN), and iso-E super (OTNE)] were the most abundant compounds (0.30-680 ng/m in air, 0.40-15 μg/L in influent, and 0.007-6.0 μg/L in effluent). Analyses of multiyear data suggest that risk management measures put in place have been effective in reducing the release of many SMCs into the environment. The highest removal efficiency, up to almost 100% of some SMCs, was observed for the plant with the longest solid retention time. A fugacity-based model was established to simulate the transport and fate of SMCs in the WWTP, and good agreement was obtained between the measured and modeled values. These findings indicate that the levels of certain SMCs discharged into the atmospheric and aquatic environments were substantial, potentially resulting in exposure to both humans and wildlife.

摘要

合成麝香化合物(SMCs)在环境中的浓度高、持久性强且毒性大,这就需要更好地了解它们在废水处理厂(WWTP)中的归宿。为了研究 WWTP 作为 SMCs 向环境中迁移的重要途径,在加拿大安大略省的四个 WWTP 采集了空气和废水样本。多环麝香(PCMs)的浓度高于硝基麝香(NMs)和大环麝香(MCMs)。三种 PCMs[加乐麝香(HHCB)、檀香麝香(AHTN)和异-E 超级麝香(OTNE)]是最丰富的化合物(空气中的浓度为 0.30-680ng/m,进水口浓度为 0.40-15μg/L,出水口浓度为 0.007-6.0μg/L)。对多年数据的分析表明,已采取的风险管理措施在减少许多 SMC 向环境中释放方面已取得成效。具有最长固体保留时间的工厂对某些 SMC 的去除效率最高,可达近 100%。建立了一个逸度模型来模拟 SMC 在 WWTP 中的迁移和归宿,实测值与模拟值吻合良好。这些发现表明,排放到大气和水生态环境中的某些 SMC 水平相当高,可能导致人类和野生动物接触到这些化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bc6/10976898/b740c64cd801/es4c00840_0001.jpg

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