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Study of the contribution of the main pollutants in the oilfield polymer-flooding wastewater to the critical flux

机译:油田注聚合物废水中主要污染物对临界通量的贡献研究

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摘要

One of the major technical requirements of the crude oil exploitation industry is to minimize the concentration of hydrolyzed polyacrylamide (HPAM), crude oil and suspended solid (SS) in the oilfield polymer-flooding wastewater and realize the reuse of this wastewater. In this study, the membrane technology was used to achieve this goal in laboratory-scale dead-end test unit with flat polyvinylidene fluoride (PVDF) membrane (MW 100 kDa). We systematically inspected the membrane fouling mechanism, the variety of total membrane resistance, total fouling resistance, the dominant resistance, membrane fouling driving force and the filtration proceeds in the filtration process. The orthogonal method and multivariate linear regression method were applied to analyze the influencing degree of the main pollutant concentration on the critical flux. According to comparison of the average rates of change of the critical flux for the HPAM concentration, oil concentration and SS concentration in single solute solution, double solute solution and oilfield polymer-flooding wastewater, HPAM can decrease the average rate of change of the critical flux for other two solutes and has the crucial effect on the critical flux. The sequence of influence degree on the critical flux is the HPAM concentration (84.58%)>oil concentration (14.36%)>SS concentration (1.06%).
机译:原油开采行业的主要技术要求之一是使油田聚合物驱油废水中的水解聚丙烯酰胺(HPAM),原油和悬浮固体(SS)的浓度最小化,并实现对废水的再利用。在这项研究中,膜技术被用于在实验室规模的带有扁平聚偏二氟乙烯(PVDF)膜(MW 100 kDa)的死角测试装置中实现这一目标。我们系统地检查了膜的结垢机理,总的膜阻力,总的结垢阻力,主导阻力,膜的结垢驱动力以及在过滤过程中的过滤过程。采用正交方法和多元线性回归方法分析了主要污染物浓度对临界通量的影响程度。通过比较HPAM浓度,单溶质,双溶质溶液和油田聚合物驱废水中HPAM浓度,油浓度和SS浓度的临界通量平均变化率,HPAM可以降低临界通量的平均变化率。对于其他两种溶质,对临界通量具有关键作用。对临界通量的影响程度顺序为:HPAM浓度(84.58%)>油浓度(14.36%)> SS浓度(1.06%)。

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