利用GC×GC-MS对近海采出水中有机化合物进行非靶筛选

S. N. Bergfors, K. Huynh, Annette E. Jensen, Jonas Sundberg
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引用次数: 3

摘要

采出水是石油和天然气生产的最大副产品。在离岸设施中,采出水通常被重新注入或排入大海。水中含有分散和溶解的油、固体和无机离子的复杂混合物。更好地了解其组成对于(1)改进环境影响评估工具和(2)开发更高效的水处理技术至关重要。这项研究的目的是筛选从北海丹麦地区的一个生产区取样的采出水,以确定任何含有有机化合物的物质。样品是在测试分离器上采集的,代表了清洁程序前未经过滤的组合物图片。分析物通过液-液萃取分离,并使用甲硅烷基化试剂进行衍生,以增加含氧化合物的挥发性。通过与高分辨率质谱仪耦合的综合多维气相色谱法对最终提取物进行分析。实现了一个非目标处理工作流程,通过与保留指数和分子离子存在的相关性来提取特征并量化文库匹配的置信度。在9个样品中鉴定出大约120种独特的化合物。其中,所有样本中都有15个。主要类型的化合物是脂肪族和芳香族羧酸以及少量的碳氢化合物。这些发现对开发改进的环境影响评估工具和水修复技术具有启示意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-target screening of organic compounds in offshore produced water by GC×GC-MS
Produced water is the largest by-product of oil and gas production. At off-shore installations, the produced water is typically reinjected or discharged into the sea. The water contains a complex mixture of dispersed and dissolved oil, solids and inorganic ions. A better understanding of its composition is fundamental to (1) improve environmental impact assessment tools and (2) develop more efficient water treatment technologies. The objective of the study was to screen produced water sampled from a producing field in the Danish region of the North Sea to identify any containing organic compounds. The samples were taken at a test separator and represent an unfiltered picture of the composition before cleaning procedures. The analytes were isolated by liquid-liquid extraction and derivatized using a silylation reagent to increase the volatility of oxygenated compounds. The final extracts were analyzed by comprehensive multi-dimensional gas chromatography coupled to a high-resolution mass spectrometer. A non-target processing workflow was implemented to extract features and quantify the confidence of library matches by correlation to retention indices and the presence of molecular ions. Approximately 120 unique compounds were identified across nine samples. Of those, 15 were present in all samples. The main types of compounds are aliphatic and aromatic carboxylic acids with a small fraction of hydrocarbons. The findings have implications for developing improved environmental impact assessment tools and water remediation technologies.
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