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Oilfield produced water treatment to clean water using integrated activated carbon-bentonite adsorbent and double stages membrane process

机译:油田生产水处理以使用集成活性炭 - 膨润土吸附剂和双阶段膜工艺清洁水。

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摘要

Large quantities of produced water are generated during the oil and gas production, with a global estimation of three times larger than the products of oil and gas. Water obtained from produced water treatment is potential as an alternative source of clean water for the surrounding community. Integration of physical adsorption as pretreatment and double stages membrane separation as main treatment was confirmed to enhance the performance in term of membrane separation efficiency for produced water treatment. The nanohybrid membrane of PES-nano silica was fabricated by preparing stable and homogeneous polymer dope solution composed of 18 wt% Polyethersulfone, 2 wt% polyethylene glycol, 1.5 wt% nano silica, and N-methyl Pyrrolidone as a solvent. The double stages system was proven significantly enhanced the flux of 26.4- 30.6%. In addition, this system increased rejection of TDS, turbidity, and salinity to 72%, 6%, and 90%, respectively. The integrated adsorber - double stages system also performed excellent stability in term of permeate water flux and rejection efficiency. It is verified that the proposed concept can achieve a higher membrane performance and extends the membrane lifetime in produced water treatment.
机译:在石油和天然气生产过程中产生大量生产的水,全球估计比石油和天然气产品大三倍。从生产的水处理获得的水是作为周围社区清洁水的替代源。确认将物理吸附作为预处理和双阶段分离作为主要处理的分离,以提高生产水处理的膜分离效率期限的性能。通过制备由18wt%聚醚砜,2wt%聚乙二醇,1.5wt%纳米二氧化硅和N-甲基吡咯烷酮作为溶剂制备稳定和均相的聚合物掺杂溶液,制备PES-纳米二氧化硅的纳米膜膜。经过验证的双级系统显着提高了26.4-30.6%的助焊剂。此外,该系统分别增加了TDS,浊度和盐度分别抑制了72%,6%和90%。集成的吸附器 - 双级系统也在渗透水通量和排斥效率方面进行了出色的稳定性。验证所提出的概念可以达到更高的膜性能并在生产的水处理中延伸膜寿命。

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