4.6 Article

Adsorptive Recovery of Cu2+ from Aqueous Solution by Polyethylene Terephthalate Nanofibres Modified with 2-(Aminomethyl)Pyridine

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APPLIED SCIENCES-BASEL
卷 11, 期 24, 页码 -

出版社

MDPI
DOI: 10.3390/app112411912

关键词

waste plastic; polyethylene terephthalate; electrospinning; 2-(aminomethyl)pyridine; adsorption; copper ion; nanofibre

资金

  1. Environmental and Nano Sciences Research Group, University of the Western Cape, South Africa
  2. Research Foundation of the Lappeenranta-Lahti University of Technology LUT
  3. and Academy of Finland

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The study demonstrated that WPET-SiAMPy composite nanofibres were highly efficient in adsorbing Cu2+ ions from aqueous solution, reaching equilibrium within 60 seconds and achieving high adsorption capacities. The nanofibres could be regenerated at least five times using 5 M H2SO4, making them a promising material for environmental remediation.
Featured Application:Adsorption of Cu2+ ions from aqueous solution and desorption of Cu2+ from WPET-SiAMPy composite nanofibres. The accumulation of plastic waste products in the environment has adversely affected wildlife and human beings. Common plastics that accumulate in the environment are plastics that are made of polyethylene terephthalate (PET) polymer. PET plastic waste products can be recycled for beneficial use, which would reduce their negative impacts. In this study, modified PET or waste PET (WPET) from plastic bottles was blended with powder commercial 2-(aminomethyl)pyridine (SiAMPy) resin and electrospun into composite nanofibres and applied for Cu2+ adsorption. PET-SiAMPy or WPET-SiAMPy composite nanofibres fibre diameters from the HRSEM images were 90-140 nm and 110-155 nm, respectively. In batch adsorption experiments, PET-SiAMPy or WPET-SiAMPy composite nanofibres achieved Cu2+ adsorption equilibrium within 60 secs of contact time with 0.98 mmol/g (89.87%) or 1.24 mmol/g (96.04%) Cu2+ adsorption capacity. The Cu2+ complex formation rate (k) with WPET-SiAMPy was 0.0888 with the mole ratio of Cu2+ and WPET-SiAMPy nanofibres 1:2. The complex molecular formula formed was Cu(WPET-SiAMPy)(2) with a square planar geometry structure. The WPET-SiAMPy nanofibres' adsorption was best fitted to the Freundlich isotherm. WPET-SiAMPy composite nanofibres were considered highly efficient for Cu2+ adsorption from aqueous solution and could be regenerated at least five times using 5 M H2SO4.

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