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Information Journal Paper

Title

Mechanical, optical and antibacterial properties improvement of paper using nanofibrillated cellulose modified with nanosilver particles

Pages

  79-103

Abstract

 Background and Objectives: The aim of this study was to produce NFC/Ag nanocomposites for improving the mechanical and antibacterial paper properties. Materials and Methodes: Silver nanoparticles was reduced on Nanofibrillated cellulose at the level of 5 and 10 ppm by NaBH, then nanocomposite NFC /Ag at 5, 10, 15% w/w was used to improve mechanical and antibacterial paper properties. Results: The results showed that the density and burst index of the treated paper with Ag nanoparticles increased. Also, the brightness of treated paper with nanocomposite NFC /Ag decreased and opacity index increased. Antibacterial properties investigated against gram negative (E. colie) and gram positive (S. aureus) bacteria. The results showed that low amounts of silver in the treated paper inhibited bacterial growth. Conclusion: The results show that the NFC / Ag Nanocomposite Antibacterial properties were higher than NFC film treated with Ag nanoparticles by immersion method because of the Ag nanoparticle deposited on the NFC.

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    APA: Copy

    AFRA, E., SHAFAEE, M., ABYAZ, A., & NARCHIN, P.. (2019). Mechanical, optical and antibacterial properties improvement of paper using nanofibrillated cellulose modified with nanosilver particles. JOURNAL OF WOOD AND FOREST SCIENCE AND TECHNOLOGY, 26(1 ), 79-103. SID. https://sid.ir/paper/368844/en

    Vancouver: Copy

    AFRA E., SHAFAEE M., ABYAZ A., NARCHIN P.. Mechanical, optical and antibacterial properties improvement of paper using nanofibrillated cellulose modified with nanosilver particles. JOURNAL OF WOOD AND FOREST SCIENCE AND TECHNOLOGY[Internet]. 2019;26(1 ):79-103. Available from: https://sid.ir/paper/368844/en

    IEEE: Copy

    E. AFRA, M. SHAFAEE, A. ABYAZ, and P. NARCHIN, “Mechanical, optical and antibacterial properties improvement of paper using nanofibrillated cellulose modified with nanosilver particles,” JOURNAL OF WOOD AND FOREST SCIENCE AND TECHNOLOGY, vol. 26, no. 1 , pp. 79–103, 2019, [Online]. Available: https://sid.ir/paper/368844/en

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