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Innovative ceramic hollow fiber membranes for recycling/reuse of oilfield produced water

机译:创新的陶瓷中空纤维膜,用于油田采出水的回收/再利用

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The focus of this study was on the development and application of ceramic hollow fiber membrane (CHFM) technology for the treatment of oilfield produced water (PW) prior to disposal/discharge into the environment. PW refers to any fossil water that is brought to the surface along with crude oil or natural gas. It is a complex mixture of dispersed oil, dissolved organic compounds, suspended solids, production chemicals, heavy metals, and natural radioactive minerals. PW is difficult to handle/treat and represents the largest volume of waste associated with the oil and gas industry. It can have different potential impacts on offshore or onshore environments depending on where it is discharged. Therefore, the development of effective treatment technologies for PW is essential from both ecological and economic standpoints. The first stage of any treatment process for PW consists of a significant reduction in the level of dispersed hydrocarbons and suspended solids. In a second and often in a third stage, the oil and total carbon (TC) content is reduced by hydrocyclones and by micro-and ultrafiltration using membrane technologies. Due to legal requirements, final oil contents below 10 ppm are required in some regions before PW disposal to the environment. CHFMs represent a new generation in the development of inorganic membranes by offering the advantages of one membrane consisting of both inorganic material and hollow fiber geometry. In this study, the effect of cross-flow velocity on the CHFM performance at a low trans-membrane pressure of 0.5 bar, as well as the permeate quantity and quality, was investigated in terms of fouling behavior and efficiency of oil and TC removal. In the filtration system presented here, using ceramic hollow fiber ultrafiltration (UF) membranes with a d(90) pore diameter of 40 nm, the removal of oil and TC from samples of tank dewatering produced water and oily model systems, was successfully demonstrated with a remarkable decontamination efficiency of >99.5% (oil) and 61-94% (TC), respectively.
机译:这项研究的重点是陶瓷中空纤维膜(CHFM)技术的开发和应用,该技术用于在处置/排入环境之前处理油田采出水(PW)。 PW是指与原油或天然气一起带到地面的任何化石水。它是分散的油,溶解的有机化合物,悬浮固体,生产化学品,重金属和天然放射性矿物的复杂混合物。 PW难以处理/处理,代表了与石油和天然气行业相关的最大数量的废物。根据排放的位置,它对海上或陆上环境可能具有不同的潜在影响。因此,从生态和经济角度来看,开发有效的PW处理技术至关重要。 PW的任何处理过程的第一步都包括大量减少分散的碳氢化合物和悬浮固体的含量。在第二阶段(通常是第三阶段)中,水力旋流器以及使用膜技术的超滤和超滤会降低油和总碳(TC)的含量。根据法律要求,在将PW排放到环境中之前,某些地区最终油含量必须低于10 ppm。 CHFM通过提供一种由无机材料和中空纤维几何形状组成的膜的优点,代表了无机膜开发的新一代。在这项研究中,研究了横流速度对低跨膜压力(0.5巴)下CHFM性能的影响,以及渗透物的数量和质量,从结垢行为,除油和TC效率方面进行了研究。在此处介绍的过滤系统中,使用ad(90)孔径为40 nm的陶瓷中空纤维超滤(UF)膜,成功地证明了罐脱水生产水和油性模型系统样品中的油和TC去除效果。显着的去污效率分别> 99.5%(油)和61-94%(TC)。

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