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REMOVAL OF OIL FROM PRODUCED WATER BY COALESCENCE/FILTRATION IN A GRANULAR BED

机译:通过粒状床中的结垢/过滤去除生产用水中的油

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Oil production generates a significant amount of water byproduct known as produced water. Following primary gravity separation, produced water is normally disposed of by injection into the formation from which it came. However, high amounts of suspended solids or oil in the produced water may cause clogging of the injection formation. This study evaluated the effectiveness of coalescence/filtration in treating two produced water samples obtained from Saskatchewan heavy oil production sites. In the coalescence/filtration experiments, percentage removals of oil and suspended solids were observed to be as high as 97 and 91 percent, respectively. Mechanisms of filtration and coalescence were identified and observed through experimental data and mathematical models. The maximum coalescence efficiency observed was three percent at the lowest flow rate. Coalescence efficiencies decreased with increasing flow rate. Experimental data for single and two-phase flow were shown to fit the Carmen-Kozeny filtration equation. Coalescence/filtration satisfied a first order rate equation using the Crickmore model.
机译:石油生产会产生大量的水副产物,称为产出水。在初次重力分离之后,采出水通常通过注入其所来自的地层中进行处理。但是,采出水中大量的悬浮固体或油可能会导致注入物堵塞。这项研究评估了合并/过滤处理从萨斯喀彻温省稠油生产基地获得的两个采出水样品的有效性。在聚结/过滤实验中,油和悬浮物的去除率分别高达97%和91%。通过实验数据和数学模型确定并观察了过滤和聚结的机理。在最低流速下,观察到的最大聚结效率为3%。聚结效率随着流速的增加而降低。单相和两相流的实验数据表明符合Carmen-Kozeny过滤方程。使用Crickmore模型,聚结/过滤满足一阶速率方程。

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