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确定近海石油平台排放化学品的海洋生物降解动力学——高稀释度下的全混合物测试提高了环境相关性。

Determining Marine Biodegradation Kinetics of Chemicals Discharged from Offshore Oil Platforms─Whole Mixture Testing at High Dilutions Increases Environmental Relevance.

机构信息

Technical University of Denmark, Department of Environmental and Resource Engineering, Building 115, 2800 Kgs. Lyngby, Denmark.

Department of Environmental Science, Stockholm University, Stockholm 106 91, Sweden.

出版信息

Environ Sci Technol. 2024 Oct 1;58(39):17454-17463. doi: 10.1021/acs.est.4c05692. Epub 2024 Sep 18.

Abstract

Offshore oil platforms discharge enormous volumes of produced water that contain mixtures of petrochemicals and production chemicals. It is crucial to avoid the discharge of particularly those chemicals that are persistent in the marine environment. This study aims to (1) develop a biodegradation testing approach for discharged chemicals by native marine microorganism, (2) determine how dilution affects biodegradation, and (3) determine biodegradation kinetics for many discharged chemicals at low and noninhibitory concentrations. Produced water from an offshore oil platform was diluted in the ratio of 1:20, 1:60, and 1:200 in seawater from the same location and incubated for 60 days at 10 °C. Automated solid-phase microextraction GC-MS was used as a sensitive analytical technique, and chemical-specific primary degradation was determined based on peak area ratios between biotic test systems and abiotic controls. Biodegradation was inhibited at lower dilutions, consistent with ecotoxicity tests. Biodegradation kinetics were determined at the highest dilution for 139 chemicals (43 tentatively identified), and 6 chemicals were found persistent (half-life >60 days). Nontargeted analysis by liquid chromatography-high-resolution MS was demonstrated as a proof-of-principle for a comprehensive assessment. Biodegradation testing of chemicals in discharges provides the possibility to assess hundreds of chemicals at once and find the persistent ones.

摘要

海上石油平台排放大量含有石油化工品和生产化学品混合物的生产废水。避免排放特别是那些在海洋环境中持久存在的化学品至关重要。本研究旨在:(1)通过本土海洋微生物开发排放化学品的生物降解测试方法;(2)确定稀释度如何影响生物降解;(3)在低浓度和非抑制浓度下确定许多排放化学品的生物降解动力学。从同一地点的海水中以 1:20、1:60 和 1:200 的比例稀释海上石油平台的生产废水,并在 10°C 下孵育 60 天。采用自动固相微萃取 GC-MS 作为灵敏的分析技术,根据生物测试系统和非生物对照之间的峰面积比确定化学物质的特定初级降解。较低的稀释度会抑制生物降解,与生态毒性测试一致。在最高稀释度下,对 139 种化学物质(43 种暂定鉴定)进行了生物降解动力学测定,发现 6 种化学物质具有持久性(半衰期>60 天)。通过液相色谱-高分辨率 MS 进行的非靶向分析证明了全面评估的原理。排放物中化学物质的生物降解测试提供了同时评估数百种化学物质并发现持久性化学物质的可能性。

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