University of Maryland Center for Environmental Science , Chesapeake Biological Laboratory, Solomons, Maryland United States.
Helmholtz Zentrum Muenchen , Research Unit Analytical BioGeoChemistry, Neuherberg, Germany.
Environ Sci Technol. 2017 May 16;51(10):5377-5385. doi: 10.1021/acs.est.6b06213. Epub 2017 Apr 26.
Large volumes of water return to the surface following hydraulic fracturing of deep shale formations to retrieve oil and natural gas. Current understanding of the specific organic constituents in these hydraulic fracturing wastewaters is limited to hydrocarbons and a fraction of known chemical additives. In this study, we analyzed hydraulic fracturing wastewater samples using ultrahigh resolution Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR-MS) as a nontargeted technique to assign unambiguous molecular formulas to singly charged molecular ions. Halogenated molecular formulas were identified and confirmed using isotopic simulation and MS-MS fragmentation spectra. The abundance of halogenated organic compounds in flowback fluids rather than older wastewaters suggested that the observed molecular ions might have been related to hydraulic fracturing additives and related subsurface reactions, such as through the reaction of shale-extracted chloride, bromide, and iodide with strong oxidant additives (e.g., hypochlorite, persulfate, hydrogen peroxide) and subsequently with diverse dissolved organic matter. Some molecular ions matched the exact masses of known disinfection byproducts including diiodoacetic acid, dibromobenzoic acid, and diiodobenzoic acid. The identified halogenated organic compounds, particularly iodinated organic molecules, are absent from inland natural systems and these compounds could therefore play an important role as environmental tracers.
大量的水在深层页岩地层水力压裂以开采石油和天然气后返回地面。目前对这些水力压裂废水中特定有机成分的了解仅限于碳氢化合物和已知化学添加剂的一部分。在这项研究中,我们使用超高分辨率傅里叶变换离子回旋共振质谱(FT-ICR-MS)分析了水力压裂废水样品,作为一种非靶向技术,将单电荷分子离子分配给明确的分子公式。使用同位素模拟和 MS-MS 碎片谱鉴定并确认了含卤分子公式。在回流液中而不是旧废水中发现的含卤有机化合物的丰度表明,观察到的分子离子可能与水力压裂添加剂以及相关的地下反应有关,例如通过与强氧化剂添加剂(例如次氯酸盐、过硫酸盐、过氧化氢)反应,随后与各种溶解的有机物质反应,从页岩中提取的氯、溴和碘与强氧化剂添加剂(例如次氯酸盐、过硫酸盐、过氧化氢)反应,随后与各种溶解的有机物质反应。一些分子离子与已知的消毒副产物的精确质量相匹配,包括二碘乙酸、二溴苯甲酸和二碘苯甲酸。所鉴定的含卤有机化合物,特别是碘代有机分子,在内陆自然系统中不存在,因此这些化合物可以作为环境示踪剂发挥重要作用。