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Application of the central composite design to optimization of petroleum hydrocarbons removal from oilfield water using advanced oxidation process

机译:中央复合设计在利用先进氧化工艺中从油田水清除石油烃优化的应用

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In the last few years, RSM method has been used widely to analyze. optimize and evaluate the interaction of independent factors for chemical, biochemical, and environmental processes. This study examined and evaluated the applicability of this method to manage Oilfield Produced Water to prevent marine environment due to the presence of hard degradable compounds by ozonation process. In this study simulated oil-water sample and a homogenizer reactor was used. The main reactor used in this study was impeinger equipped with sintered glass filter through which the treated oil-water was entered to reactor in the form of discontinuous flow. After ozonation and at the end of the reaction time (60 min), the concentration of oil hydrocarbons was determined by a gas chromatograpin device equipped with a flame ionization detector. The performance of the central composite design (CCD) approach was evaluated by the F-Value. P-Value, R-2, lack of fit test and Adequate Precision parameters to determine the influence of effective factors. including ozonation time. pH, ozone dose, and TPH concentration on the TPH removal efficiency. The mean TPH efficiency obtained from the design of the 30-step experiment resulting from surface-response method was 49.903%, with a standard deviation of 12.47. This study showed the high power of model adopted from the central composite design to predict the hydrocarbons removal from oilfield water using advanced oxidation process, and it was proved that this model can be used alone to determine the design space nature.
机译:在过去几年中,RSM方法已广泛用于分析。优化和评估独立因素对化学,生化和环境过程的相互作用。本研究检测并评估了这种方法的适用性来管理油田生产的水,以防止海洋环境因臭氧处理的硬降解化合物存在。在该研究中,使用模拟油水样品和均化器反应器。本研究中使用的主要反应器是配备有烧结玻璃过滤器的厄瓜氏菌,通过该粉末过滤器以不连续流动的形式进入反应器的处理过处的油水。在臭氧和反应时间(60分钟)结束后,通过配备有火焰离子化检测器的气体酚素素装置测定油烃的浓度。通过F值评估中央复合设计(CCD)方法的性能。 P值,R-2,缺乏拟合测试和足够的精确参数,以确定有效因素的影响。包括臭氧化时间。 PH,臭氧剂量和TPH浓度在TPH去除效率上。从表面响应法引起的30步实验的设计中获得的平均TPH效率为49.903%,标准偏差为12.47。本研究显示了中央复合设计中采用的模型的高功率,以预测利用先进的氧化过程从油田水去除的碳氢化合物,并证明该模型可以单独使用以确定设计空间性质。

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