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Organically functionalized bentonite for the removal of perfluorooctane sulfonate, phenanthrene and copper mixtures from wastewater

机译:有机官能化膨润土用于去除废水中的全氟辛烷磺酸盐,菲和铜混合物

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摘要

The co-occurrence of a wide range of hydrophobic and hydrophilic contaminants with contrasting physicochemical properties in wastewaters makes practical remediation a challenge. Applications of ion exchangers such as clays are an environmentally friendly option in a cleanup strategy. However, clays often require chemical functionalization to adsorb non-polar contaminants. In this study, the most readily available low-cost Iranian bentonite was modified with Arquad (R) 2HT-75 (IBA) and further tailored with palmitic acid (IBAP) in order to prepare effective adsorbents. They were used for the removal of perfluorooctane sulfonate (PFOS), phenanthrene (PHE) and copper ions (Cu2+) both in single (S) and binary (B) contaminant conditions in simulated and real wastewater. The IB showed a large affinity for Cu2+ in both single (q(max): 43.43 mg/L) and binary (q(max):43.95 mg/L) systems. Adsorption of PFOS and PHE was dramatically enhanced by the functionalized clays IBA (K-F(PHE) : 11.1 and K-F(PHE) : 9.65 mg((1-n)) L-n g (-1)) and IBAP (K-F(PFOS) : 10.2 and K-F(PHE) : 16.68 mg((1-n)) L-n g(-1)). The co-occurrence of PFOS or PHE with Cu2+ enhanced their adsorption onto clays indicating that Cu2+ can form bridges between clays and PFOS or PHE in different mechanism to increase adsorption of PFOS or PHE in binary solutions. The surface-tailored organoclay IBAP showed great potential for the complete removal of PFOS, PHE and 86.6% of Cu2+ from real wastewater, which is usually considered challenging.
机译:在废水器中具有对比的物理化学性质的各种疏水性和亲水污染物的共同发生,使得实际修复成为挑战。诸如粘土的离子交换器的应用是在清理策略中的环保选择。然而,粘土通常需要化学官能化以吸附非极性污染物。在这项研究中,最容易获得的低成本伊朗膨润土用Arquad(R)2HT-75(IBA)改性,并用棕榈酸(IBAP)进一步定制,以制备有效的吸附剂。它们用于除去在模拟和实际废水中的单一(S)和二元(B)污染物条件下的全氟辛烷磺酸盐(PFOS),菲(PHE)和铜离子(Cu2 +)。 IB在单次(Q(最多):43.43mg / L)和二元(Q(最多):43.95mg / L)系统中对Cu2 +显示了大的亲和力。通过官能化粘土IBA(KF(PHE):11.1和KF(PHE)显着增强了PFOS和PHE的吸附:9.65mg((1-N))LN G(-1))和IBAP(KF(PFOS): 10.2和Kf(PHE):16.68mg((1-N))LN G(-1))。用Cu2 +的PFO或PHE的共发+将它们的吸附增强到表明CU2 +可以在不同机制中形成粘土和PFOS或PHE之间的桥,以增加二元溶液中PFOS或PHE的吸附。表面量身定制的有机粘土IBAP显示出完全除去PFOS,PHE和86.6%的CU2 +的潜力,这通常被认为是挑战性的。

著录项

  • 来源
    《Applied clay science》 |2021年第1期|105883.1-105883.11|共11页
  • 作者单位

    Shiraz Univ Dept Earth Sci Coll Sci Shiraz 71454 Iran|Univ Newcastle Cooperat Res Ctr Contaminat Assessment & Remediat ATC Bldg Callaghan NSW Australia;

    Univ South Australia Future Ind Inst STEM Unit Mawson Lakes SA 5095 Australia;

    Shiraz Univ Dept Earth Sci Coll Sci Shiraz 71454 Iran;

    Univ Newcastle Global Ctr Environm Remediat ATC Bldg Callaghan NSW Australia;

    Univ Newcastle Global Ctr Environm Remediat ATC Bldg Callaghan NSW Australia|Univ Newcastle Cooperat Res Ctr Contaminat Assessment & Remediat ATC Bldg Callaghan NSW Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bentonite; Organoclays; Mixed contamination; Adsorption; PFOS; Wastewater;

    机译:膨润土;有机粘土;混合污染;吸附;PFOS;废水;

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