AI Article Synopsis

  • Photocatalytic paper sheets were created by mixing different amounts of a TiO2/Sodium alginate (TSA) nanocomposite, which enhanced their ability to treat waste-water by improving the removal of chemical oxygen demand (COD).
  • Characterization techniques like XRD, TGA, SEM, and EDX were used to analyze the structure and composition of the modified paper, confirming that sodium alginate improved the adhesion of nanoparticles while minimizing any negative effects on the paper fibers.
  • The paper with 7% and 15% TSA exhibited strong photocatalytic and antimicrobial properties against bacteria like Salmonella typhimurium and fungi like Candia albicans, with the highest effectiveness observed at 15% TSA, while excessive TSA (

Article Abstract

Photocatalytic paper sheets were prepared by addition of different ratios of TiO2/Sodium alginate (TSA) nanocomposite. The modified paper sheets were characterized by XRD, TGA. Their morphology was studied by scanning electron microscope (SEM) and energy dispersive X-ray (EDX). Photocatalytic activity of modified paper has been studied by analysis of chemical oxygen demand (COD) of waste-water. The results confirmed the mineralization of the waste-water and enhanced removal of chemical oxygen demand (COD) by increasing the amount of photocatalyst in the paper. Moreover, the results also confirmed that presence of sodium alginate as biopolymer increased adhesion of nanoparticles to paper fibers and reduced the harmful effect of the photocatalyst on them. The paper sheets containing 7% as well as 15% TSA showed high photocatalytic activity and anti-bacterial effect against Salmonella typhimurium higher than standard antibiotic beside other microorganisms such as Candida albicans. The maximum antimicrobial effect was found in case of specimen loaded with 15% TSA. Moreover, it was found that by adding 20% TSA to the paper matrix, the properties of the paper composite collapse. The obtained results confirm the possible utilization of the modified paper in both hygienic and food packaging applications.

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Source
http://dx.doi.org/10.1016/j.carbpol.2016.04.061DOI Listing

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