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Comparing methods and sediment contaminant indicators for determining produced water fate in a Louisiana estuary

机译:比较方法和沉积物污染物指标以确定路易斯安那州河口产出水的命运

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Produced water is a high salinity by-product resulting from oil and gas production. Disposal methods include surface water discharge. The current field method used to determine its fate in estuarine systems involves extending a compass oriented transect (COT) from the point source discharge―a method designed for a uniformly dispersing effluent discharged into a uniform offshore environment that may be inappropriate for the hydrologic and geomorphologic complexities found in estuarine systems. Prior research established the viability of the salinity stratification transect (SST) method. Both COT and SST methods were used in a small open bay to determine which more accurately detected effluent dispersion. Determination was based on sediment contaminant indicators (SCIs), including interstitial salinity, hydrocarbons, metals, and radium concentrations. Additionally, SCIs were evaluated for their ability to serve as indicators of effluent dispersion. The data revealed that SST stations exhibited higher contaminant concentrations and that this approach was more accurate in tracking the produced water plume. The data also suggested that SCIs varied in their ability to serve as indicators. Good indicators included interstitial salinity, total targeted aromatic hydrocarbons substantiated with a modified fossil fuel pollution index value, certain metals, and radium-228.
机译:采出水是石油和天然气生产产生的高盐分副产品。处置方法包括地表排水。当前用于确定河口系统命运的现场方法涉及从点源排放中扩展罗盘定向样带(COT),该方法旨在将排放的污水均匀地分散到均匀的近海环境中,这可能不适合水文和地貌河口系统中的复杂性。先前的研究确定了盐度分层样带(SST)方法的可行性。在一个小型开放式隔间中使用了COT和SST方法,以确定哪种方法可以更准确地检测出废水的扩散。确定是基于沉积物污染物指标(SCI),包括间隙盐度,碳氢化合物,金属和镭的浓度。此外,评估了SCI作为污水扩散指标的能力。数据显示,SST站显示出较高的污染物浓度,并且此方法在跟踪产出的水羽中更准确。数据还表明,SCI充当指标的能力各不相同。良好的指标包括间隙盐度,经修正的化石燃料污染指数值证实的目标芳香烃总量,某些金属和镭228。

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