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Surface functionalised adsorbent for emerging pharmaceutical removal: Adsorption performance and mechanisms

  • Maja Turk Sekulic
  • , Nikola Boskovic
  • , Aleksandar Slavkovic
  • , Jelena Garunovic
  • , Srdana Kolakovic
  • , Sabolc Pap

科研成果: Article同行评审

179 引用 (Scopus)
241 下载量 (Pure)

摘要

А highly effective adsorbent (PPhA) was designed using “acid catalyst” functionalisation and tested for six emerging PhCs (sulfamethoxazole (SMX), carbamazepine (CBZ), ketoprofen (KP), naproxen (NPX), diclofenac (DCF) and ibuprofen (IBF)) in a batch study. Characterisation results (BET, SEM, FTIR, XRD and pHzpc) showed that the functionalisation process generates a microporous material with a multitude of new functional groups (such as phosphate and phosphonate) present on the surface. Adsorption capacity reached near maximum within 10 min while equilibrium was obtained in 60 min. Findings suggest that the mass transfer was governed mainly by intraparticle diffusion processes through formation of H-bonds, π–π and n–π electron donor–acceptor interactions. A pH influence study showed that electrostatic interactions played a minor role in the overall removal mechanism. The magnitude of E was <8 kJ mol−1 for all studied PhCs, indicating that adsorption is mainly due to physisorption. Equilibrium data were best represented by the Freundlich model and the theoretical monolayer adsorption capacities were 17.193, 17.685, 19.265, 17.657, 21.116 and 23.332 mg g−1 for SMX, CBZ, KP, NPX, DCF and IBF, respectively. Based on these results, this PPhA is proposed as an excellent adsorbent for PhC removal.
源语言English
页(从-至)50-63
页数14
期刊Process Safety and Environmental Protection
125
早期在线日期9 3月 2019
DOI
出版状态Published - 5月 2019

联合国可持续发展目标

此成果有助于实现下列可持续发展目标:

  1. Clean water and sanitation
    Clean water and sanitation
  2. Responsible consumption and production
    Responsible consumption and production

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