4.5 Article

Composites of ZnO nanoparticles and biomass based activated carbon: adsorption, photocatalytic and antibacterial capacities

期刊

WATER SCIENCE AND TECHNOLOGY
卷 -, 期 2, 页码 492-508

出版社

IWA PUBLISHING
DOI: 10.2166/wst.2018.176

关键词

activated carbons; antibacterial nanoparticles; Dubinin-Radushkevich; photocatalysis; residual biomass; surface diffusion; water pollutants

资金

  1. Academy of Finland [269631]
  2. National University of Tumbes (Proyecto Canon - Resolucion) [0722-2014/UNT-R]
  3. Peruvian National Council for Science and Technology (CONCYTEC) [024-2016-FONDECYT]

向作者/读者索取更多资源

Composite material (AC-ZnO) was prepared by growing ZnO nanoparticles during the production of biomass based-activated carbon (AC) via the incorporation of zinc acetate in the process. Comprehensive analyses confirmed the presence of ZnO nanoparticles over the AC surface and described the particular nature of the composite adsorbent. Methylene blue (MB) equilibrium data fitted the Dubinin-Radushkevich model. The MB adsorption capacity was higher for the bare activated carbons (197.9-188.7 mg/g) than the activated carbons with ZnO nanoparticles (137.6-149.7 mg/g). The adsorption of the MB on the adsorbents is physical because the mean adsorption energy (E) is between 1.76 and 2.00 kJ/mol. Experiments that combine adsorption and photocatalysis were carried out with different loads of adsorbents and with and without UV-light exposure. Photocatalytic activity was identified mostly at the first stage of the adsorption process and, in the case of experiments with less load of the composite AC-ZnO, because the light obstruction effect of the activated carbon is more for higher loads. The ZnO grown over AC improves the adsorption of cations such as Pb, Al and Fe in aqueous phase (polluted river water) and provides antibacterial capacity against Escherichia coli and Salmonella typhimurium.

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