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快速液相色谱-串联质谱法分析槽罐车清洗行业废水中烷基酚及其乙氧基化物

Fast liquid chromatography-tandem mass spectrometry methodology for the analysis of alkylphenols and their ethoxylates in wastewater samples from the tank truck cleaning industry.

机构信息

Pharmaceutical Analysis, Department of Pharmaceutical and Pharmacological Sciences, KU Leuven, O&N II Herestraat 49, 3000, Leuven, Belgium.

Process and Environmental Technology Lab, Department of Chemical Engineering, KU Leuven, J. De Nayerlaan 5, 2860, Sint-Katelijne-Waver, Belgium.

出版信息

Anal Bioanal Chem. 2019 Mar;411(8):1611-1621. doi: 10.1007/s00216-019-01623-6. Epub 2019 Feb 4.

Abstract

A fast methodology to quantify 4-tert-octylphenol (4-t-OP) and 4-nonylphenol (4-NP) and their mono- and di-ethoxylates was developed, validated, and applied to real wastewater samples. Dispersive liquid-liquid microextraction was employed as a sample preparation step, leading to a pre-concentration factor of roughly 30. Analysis was carried out by liquid chromatography-tandem mass spectrometry with electrospray ionisation in multiple reaction monitoring mode. Average recoveries were generally between 80 and 120% for both the alkylphenols and their mono- and di-ethoxylates in influent and effluent wastewater. A minimum of 5 concentration levels per compound, ranging between 1 and 500 ng/mL, were prepared to construct calibration curves making use of isotopically labelled internal standards. The method presented good linearity and repeatability over the whole range of concentrations. Taking into account the concentration factor, and the recovery of the compounds, lower limits of quantification obtained in effluent wastewater were 0.04 ng/mL for 4-t-OP and 0.14 ng/mL for 4-NP, complying with European regulations, and between 0.03 ng/mL and 0.39 ng/mL for the ethoxylates. In influent wastewater, these limits were slightly higher. The total run time of 5 min for the alkylphenols and 8 min for the ethoxylates ensured high throughput. The developed method was applied to determine 4-t-OP and 4-NP and their mono- and di-ethoxylates in wastewater from several tank truck cleaning companies, which was subjected to ozonation and/or biological treatment. It was demonstrated that ozonation was best applied after the biological treatment, since in this case, the biological treatment could degrade most of the biodegradable organic matter, after which ozone could react directly with the recalcitrant organic pollutants. In this case, the concentrations of the target compounds in the wastewater of the investigated company decreased below the legally allowed concentration of the European water legislation.

摘要

开发、验证并应用于实际废水样品的一种快速定量 4-叔辛基苯酚(4-t-OP)和 4-壬基苯酚(4-NP)及其单和双乙氧基化物的方法。采用分散液液微萃取作为样品制备步骤,浓缩倍数约为 30。采用液相色谱-串联质谱法,以电喷雾电离多反应监测模式进行分析。进水和出水废水中烷基酚及其单和双乙氧基化物的平均回收率一般在 80%至 120%之间。每种化合物至少准备 5 个浓度水平,范围在 1 至 500ng/mL 之间,使用同位素标记的内标物构建校准曲线。该方法在整个浓度范围内具有良好的线性和重复性。考虑到浓缩倍数和化合物的回收率,出水废水中定量下限分别为 4-t-OP 为 0.04ng/mL,4-NP 为 0.14ng/mL,符合欧洲法规,乙氧基化物为 0.03ng/mL 至 0.39ng/mL。进水废水中这些限值略高。烷基酚的总运行时间为 5 分钟,乙氧基化物的总运行时间为 8 分钟,确保了高通量。该方法应用于测定几家罐车清洗公司废水的 4-t-OP 和 4-NP 及其单和双乙氧基化物,这些废水经过臭氧氧化和/或生物处理。结果表明,臭氧氧化最好在生物处理之后进行,因为在这种情况下,生物处理可以降解大部分可生物降解的有机物,然后臭氧可以直接与难生物降解的有机污染物反应。在这种情况下,所调查公司废水中的目标化合物浓度降低到低于欧洲水法规允许的法定浓度以下。

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