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首页> 外文期刊>Chemical engineering journal >Perfluorooctane sulfonate and perfluorobutane sulfonate removal from water by nanofiltration membrane: The roles of solute concentration, ionic strength, and macromolecular organic foulants
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Perfluorooctane sulfonate and perfluorobutane sulfonate removal from water by nanofiltration membrane: The roles of solute concentration, ionic strength, and macromolecular organic foulants

机译:全氟辛烷磺酸盐和全氟丁烷磺酸盐通过纳滤膜从水中除去:溶质浓度,离子强度和大分子有机污垢的作用

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摘要

The influence of solute concentration, ionic strength, and macromolecular organic matter on the rejection of perfluorooctane sulfonate (PFOS) and perfluorobutane sulfonate (PFBS) via nanofiltration (NF) was investigated using poly(piperazineamide) membranes. The results showed that compared with PFBS (steady-state rejection < 69%), PFOS with the larger molecular size and stronger hydrophobicity displayed higher retention (steady-state rejection > 88%) in all water matrices. Rejection of PFOS and PFBS increased with higher solute concentrations, attributable to enhanced size exclusion resulting from pore blockage. As ionic strength increased from 0 to 100 mM, PFOS retention increased from 89.6% to 91.9%; conversely, PFBS rejection declined from 48.9% to 20.5%. These phenomena, in conjunction with the decrease in membrane flux and charge with increasing ionic strength, suggest that the retention of PFOS and PFBS was dominated by size exclusion and electrostatic repulsion, respectively. In addition, model macromolecular organic foulants-bovine serum albumin (BSA) and sodium alginate (SA)-influenced the rejection of PFOS and PFBS significantly. The presence of BSA and SA caused improved PFOS rejection, while adsorption dominated PFOS retention before the formation of an organic fouling layer and size exclusion was dominant after formation of the layer. As for PFBS feed systems, SA facilitated PFBS rejection, while BSA only contributed to PFBS removal temporarily and thereafter led to decreased PFBS rejection. From further consideration of the characteristics of membrane surface charge variation and organic fouling, it is concluded that electrostatic repulsion was the preponderant retention mechanism for PFBS during the entire organic fouling process.
机译:使用聚(PiperazineameameDeamide)膜研究了溶质浓度,离子强度和大分子有机物对全氟辛酸磺酸酯(PFOS)和全氟丁烷磺酸盐(PFB)的抑制的影响。结果表明,与PFB(稳态排出69%)相比,具有较大分子尺寸和更强的疏水性的PFO在所有水基质中显示出更高的保留(稳态排斥> 88%)。通过孔隙堵塞引起的增强尺寸排除,抑制PFOS和PFB的抑制增加,可归因于增强的尺寸排除。由于离子强度从0增加到100mm,PFOS保持从89.6%增加到91.9%;相反,PFB拒绝从48.9%下降至20.5%。这些现象与随着离子强度的增加,结合膜通量和电荷的降低,表明PFOS和PFB的保留分别由尺寸排除和静电排斥来支配。此外,模型大分子有机污垢 - 牛血清白蛋白(BSA)和藻酸钠(SA) - 灭绝出明显的磷脂磷脂和PFB。 BSA和SA的存在导致改善的PFOS排斥,而吸附在形成有机污垢层之前的PFOS保留,并且在形成层后的尺寸排除尺寸占主导地位。至于PFBS进料系统,SA便利的PFB抑制,而BSA仅临时促使PFBS去除,然后导致PFBS抑制减少。从进一步考虑膜表面电荷变化和有机污垢的特征,得出结论,静电排斥是整个有机污垢过程中PFB的优势保留机制。

著录项

  • 来源
    《Chemical engineering journal》 |2018年第2018期|共11页
  • 作者单位

    Xian Univ Architecture &

    Technol Key Lab Membrane Separat Shaanxi Prov Yan Ta Rd 13 Xian 710055 Shaanxi Peoples R China;

    Xian Univ Architecture &

    Technol Key Lab Membrane Separat Shaanxi Prov Yan Ta Rd 13 Xian 710055 Shaanxi Peoples R China;

    Xian Univ Architecture &

    Technol Key Lab Membrane Separat Shaanxi Prov Yan Ta Rd 13 Xian 710055 Shaanxi Peoples R China;

    Xian Univ Architecture &

    Technol Key Lab Membrane Separat Shaanxi Prov Yan Ta Rd 13 Xian 710055 Shaanxi Peoples R China;

    Xian Univ Architecture &

    Technol Key Lab Membrane Separat Shaanxi Prov Yan Ta Rd 13 Xian 710055 Shaanxi Peoples R China;

    Xian Univ Architecture &

    Technol Key Lab Membrane Separat Shaanxi Prov Yan Ta Rd 13 Xian 710055 Shaanxi Peoples R China;

    Xian Univ Architecture &

    Technol Key Lab Membrane Separat Shaanxi Prov Yan Ta Rd 13 Xian 710055 Shaanxi Peoples R China;

    Xian Univ Architecture &

    Technol Key Lab Membrane Separat Shaanxi Prov Yan Ta Rd 13 Xian 710055 Shaanxi Peoples R China;

    Xian Univ Architecture &

    Technol Key Lab Membrane Separat Shaanxi Prov Yan Ta Rd 13 Xian 710055 Shaanxi Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Nanofiltration; Perfluorooctane sulfonate; Perfluorobutane sulfonate; Ionic strength; Organic fouling; Rejection mechanism;

    机译:纳滤;全氟辛烷磺酸盐;全氟丁烷磺酸盐;离子力量;有机污垢;排斥机制;

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