Department of Biological Sciences, Duquesne University, Pittsburgh, Pennsylvania, USA.
Department of Geology and Environmental Science, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2020;55(1):11-23. doi: 10.1080/10934529.2019.1666561. Epub 2019 Sep 24.
Flowback and produced water generated by the hydraulic fracturing of unconventional oil and gas plays contain a suite of cations (e.g., metals) typically in a high salt (e.g., NaCl) matrix. Here, we analyzed the chemical (cation) composition of production fluids associated with natural gas and oil development (e.g., flowback, produced water, impoundment fluids), along with mine drainage, and surface and ground water samples using ICP-OES and ICP-MS. ICP-MS and ICP-OES analytical performance and interference effects were evaluated. Both platforms exhibited excellent analytical spike recoveries, detection limits for blank and spiked solutions, and accuracy for standard certified reference materials. Mass ratio analyses using Ca/Sr, Ca/Mg, Ba/Sr, Mg/Sr, and B and Li, were assessed for their efficacy in differentiation among brines from conventional oil wells, produced water from unconventional oil and gas wells and impoundments, mine drainage treatment pond water, groundwater, and surface water. Examination of Mg/Sr ratios when compared with Li concentrations provide clear separation among the different types of samples, while Ca/Mg versus Ca/Sr correlations were useful for distinguishing between conventional and unconventional oil and gas fluids.
非常规油气藏水力压裂产生的返排液和产出水含有一系列阳离子(例如金属),通常处于高盐(例如 NaCl)基质中。在这里,我们使用 ICP-OES 和 ICP-MS 分析了与天然气和石油开发(例如返排液、产出水、蓄水层流体)相关的生产液,以及矿山排水、地表水和地下水样品的化学(阳离子)组成。评估了 ICP-MS 和 ICP-OES 的分析性能和干扰效应。两个平台都表现出出色的分析刺针回收率、空白和加标溶液的检测限以及标准认证参考物质的准确性。使用 Ca/Sr、Ca/Mg、Ba/Sr、Mg/Sr 和 B 与 Li 的质量比分析评估了它们在区分常规油井卤水、非常规油气井和蓄水层产出水、矿山排水处理池水、地下水和地表水方面的效果。当比较 Mg/Sr 比值与 Li 浓度时,不同类型的样品之间有明显的分离,而 Ca/Mg 与 Ca/Sr 的相关性则可用于区分常规和非常规油气流体。