U.S. Geological Survey, 12201 Sunrise Valley Drive, Reston, Virginia 20192, USA.
Environ Sci Technol. 2009 Dec 15;43(24):9306-13. doi: 10.1021/es902622r.
Technical nonylphenol (tNP), used for industrial production of nonylphenol polyethoxylate surfactants, is a complex mixture of C(3-10)-phenols. The major components, 4-nonylphenols, are weak endocrine disruptors whose estrogenicities vary according to the structure of the branched nonyl group. Thus, accurate risk assessment requires isomer-specific determination of 4-NPs. Comprehensive two-dimensional gas chromatography/time-of-flight mass spectrometry (GC x GC/ToFMS) was used to characterize tNP samples obtained from seven commercial suppliers. Under optimal chromatographic conditions, 153-204 alkylphenol peaks, 59-66 of which were identified as 4-NPs, were detected. The 4-NPs comprised approximately 86-94% of tNP, with 2-NPs and decylphenols making up approximately 2-9% and approximately 2-5%, respectively. The tNP products were analyzed for eight synthetic 4-NP isomers, and results were compared with published data based on GC/MS analysis. Significant differences were found among the products and between two samples from a single supplier. The enhanced resolution of GC x GC coupled with fast mass spectral data acquisition by ToFMS facilitated identification of all major 4-NP isomers and a number of previously unrecognized components. Analysis of tNP altered by the bacterium, Sphingobium xenophagum Bayram, revealed several persistent 4-NPs whose structures and estrogenicities are presently unknown. The potential of this technology for isomer-specific determination of 4-NP isomers in environmental matrices is demonstrated using samples of wastewater-contaminated groundwater and municipal wastewater.
技术壬基酚(tNP)用于工业生产壬基酚聚氧乙烯醚表面活性剂,是 C(3-10)-苯酚的复杂混合物。主要成分 4-壬基酚是弱内分泌干扰物,其雌激素活性根据支化壬基基团的结构而变化。因此,准确的风险评估需要对 4-NPs 进行异构体特异性测定。综合二维气相色谱/飞行时间质谱(GC x GC/ToFMS)用于表征从 7 家商业供应商获得的 tNP 样品。在最佳色谱条件下,检测到 153-204 个烷基苯酚峰,其中 59-66 个被鉴定为 4-NPs。4-NPs 约占 tNP 的 86-94%,2-NPs 和癸基酚分别约占 2-9%和 2-5%。对 tNP 产品进行了八种合成 4-NP 异构体的分析,并将结果与基于 GC/MS 分析的已发表数据进行了比较。发现产品之间以及来自单个供应商的两个样品之间存在显着差异。GC x GC 与 ToFMS 快速质谱数据采集相结合,提高了分辨率,有助于鉴定所有主要的 4-NP 异构体和许多以前未被识别的成分。分析被细菌 Sphingobium xenophagum Bayram 改变的 tNP 揭示了几种持久性 4-NPs,其结构和雌激素活性目前尚不清楚。使用受废水污染的地下水和城市废水的样品证明了该技术在环境基质中对 4-NP 异构体进行异构体特异性测定的潜力。