Startseite Preparation of O-HACC/HEC-acrylate emulsion and its application in paper protection
Artikel
Lizenziert
Nicht lizenziert Erfordert eine Authentifizierung

Preparation of O-HACC/HEC-acrylate emulsion and its application in paper protection

  • Hanhan Yang , Jinjie Zhang ORCID logo , Yingping Qi , Yongfeng Shen und Hua Li EMAIL logo
Veröffentlicht/Copyright: 28. Januar 2022
Veröffentlichen auch Sie bei De Gruyter Brill

Abstract

To enhance the strength of paper cultural relics and prolong the life of paper cultural relics, it is an urgent need to prepare new material for preservation and protection of paper. In this paper, chitosan quaternary ammonium salt/HEC-acrylate was synthesized with O-hydroxypropyl trimethyl quaternary ammonium salt chitosan (O-HACC) and Hydroxyethyl Cellulose (HEC)-acrylate emulsion, the synthesized materials has multiple functions, such as deacidification, reinforcement, anti-mildew and antibacterial etc. The synthesized new materials were applied on paper, and their protective effect was evaluated by testing the mechanical and optical properties and antibacterial properties of the paper. The results showed that when the mass concentration of O-HACC was 0.6 %, the tensile strength, folding times and tearing strength of the paper coated with protective solution were improved to a certain extent, while the optical properties and appearance of the paper remained basically unchanged. Meanwhile, the paper also had certain anti-mildew and bacterial resistance.

Funding statement: This work was supported by National Undergraduate Training Program for Innovation and Entrepreneurship in 2021, No. 202110459035.

  1. Conflict of interest: The author declares no conflict of interests regarding the publication of this paper.

References

Andreica, B.-I., Cheng, X.J., Marin, L. (2020) Quaternary ammonium salts of chitosan. A critical overview on the synthesis and properties generated by quaternization. Eur. Polym. J. 139.10.1016/j.eurpolymj.2020.110016Suche in Google Scholar

Du, B., Chen, F., Luo, R., Zhou, S., Wu, Z. (2019) Synthesis and Characterization of Nano-TiO2/SiO2-Acrylic Composite Resin. Adv. Mater. Sci. Eng. 2019:1–7.10.1155/2019/6318623Suche in Google Scholar

Guo, H.P. (2008) Preparation of chitosan quaternary ammonium salt and its application in antibacterial paper. Xi’an Shaanxi Univ. Sci. Technol.Suche in Google Scholar

Jablonsk, M., Hrobonova, K., Katuscak, S., Lehotay, J., Botkova, M. (2012) Formation of Acetic and Formic Acid in Unmodified and Modified Papers During Accelarated Ageing. Cellul. Chem. Technol. 46:331–340.Suche in Google Scholar

Krappitz, T., Feibusch, P., Aroonsirichock, C., Hoven, V.P., Theato, P. (2017) Synthesis of Poly(glycidyl 2-ylidene-acetate) and Functionalization by Nucleophilic Ring-Opening Reactions. Macromol. 50(4):1415–1421.10.1021/acs.macromol.6b02465Suche in Google Scholar

Kim, C.H., Choi, J.W., Chun, H.J., Choi, K.S. (1997) Synthesis of chitosan derivatives with quaternary ammonium salt and their antibacterial activity. Polym. Bull. 38:387–393.10.1007/s002890050064Suche in Google Scholar

Martínez, J.R., Nieto-Villena, A., de la Cruz-Mendoza, J.Á., Ortega-Zarzosa, G., Guerrero, A.L. (2017) Monitoring the natural aging degradation of paper by fluorescence. J. Cult. Herit. 26:22–27.10.1016/j.culher.2017.01.011Suche in Google Scholar

Nasr, H.E., Sayyah, S.M., Essa, D.M., Samaha, S.H., Rabie, A.M. (2009) Utilization of acrylates emulsion terpolymer with chitosan as a finishing agent for cotton fabrics. Carbohydr. Polym. 76(1):36–45.10.1016/j.carbpol.2008.09.025Suche in Google Scholar

Standards Press of China: Beijing (2002) GB/T 455-2002. Paper and board – Determination of tearing resistance.Suche in Google Scholar

Standards Press of China: Beijing (2008) GB/T 12914-2008. Paper and board – Determination of tensile properties.Suche in Google Scholar

Standards Press of China: Beijing (2008) GB/T 457-2008. Paper and board – Determination of folding endurance.Suche in Google Scholar

Standards Press of China: Beijing (2013) GB/T 8941-2013. Paper and board – Measurement of specular gloss.Suche in Google Scholar

Standards Press of China: Beijing (2013) GB/T 7974-2013. Paper, board and pulps – Measurement of diffuse blue reflectance factor – D65 brightness.Suche in Google Scholar

Sequeira, S., Casanova, C., Cabrita, E.J. (2006) Deacidification of paper using dispersions of Ca(OH)2 nanoparticles in isopropanol. Study of efficiency. J. Cult. Herit. 7:264–272.10.1016/j.culher.2006.04.004Suche in Google Scholar

Xu, J.C., Jiang, Y., Qiu, F.X., Dai, Y.T., Yang, D.Y., Yu, Z.P., Yang, P.F. (2018) Synthesis, mechanical properties and iron surface conservation behavior of UV-curable waterborne polyurethane-acrylate coating modified with inorganic carbonate. Polym. Bull. 75:4713–4734.10.1007/s00289-018-2294-1Suche in Google Scholar

Xu, J.C., Jiang, Y., Zhang, T., Chen, Q., Yang, D.Y., Qiu, F.X., Yu, Z.P. (2020) Synthesis of microcrystalline cellulose/TiO2/fluorine/styrene-acrylate coatings and the application for simulated paper cultural relic protection. Cell 27:6549–6562.10.1007/s10570-020-03210-wSuche in Google Scholar

Yi, X.H., Yan, Z.P., Zhang, M., Long, K. (2017) Study on the Consolidation of Aged Literature’s Paper by Nanocellulose. J. Cell Sci. Technol. 25:8–13. 19.Suche in Google Scholar

Yang, C. (2018) Research on the protection of paper cultural relics by nano-chitosan. Xi’an Shaanxi Normal Univ.Suche in Google Scholar

Zhao, Y., Su, Hj., Tan, T.W. (2008) Nano TiO2 modified chitosan antibacterial mildew was used in paper. J. Beijing Univ. Chem. Technol. (Nat. Sci. Ed.) 35(6):67–70.Suche in Google Scholar

Received: 2021-10-10
Accepted: 2021-12-21
Published Online: 2022-01-28
Published in Print: 2022-03-28

© 2022 Walter de Gruyter GmbH, Berlin/Boston

Artikel in diesem Heft

  1. Frontmatter
  2. Chemical pulping
  3. Evaluation of fines separation from unbleached softwood kraft pulp using microperforated hole screens
  4. Evaluation of pulp and paper making properties of Caesalpinia decapetela
  5. Novel bulking technologies for cellulose fibres
  6. Mechanical pulping
  7. Interpretation of force profiles in mill-scale LC refining
  8. Effects of plate wear on bar forces and fiber properties in a mill scale LC-refiner
  9. Paper technology
  10. Research on the physical properties of calcium sulfate whisker and the effects of its addition on paper and its printing performance
  11. Preparation and properties of an intelligent adjustable functional paper for organic cultural relics
  12. Paper chemistry
  13. Application of DSA to improve strength of thermomechanical pulp blended paper
  14. Coating
  15. The influence of pigment modulus on failure resistance of paper barrier coatings
  16. Effect of filler additions on pilot-scale extrusion coating of paperboard with PLA-based blends
  17. Packaging
  18. Influence of paper properties on adhesive strength of starch gluing
  19. Environmental impact
  20. Interfering elements on determination of hexavalent chromium in paper materials with UV-vis spectrophotometry
  21. Nanotechnology
  22. Enhanced mechanical and gas barrier performance of plasticized cellulose nanofibril films
  23. Lignin
  24. The preparations of nanoporous carbon with multi-heteroatoms co-doping from black liquor powders for supercapacitors
  25. Miscellaneous
  26. Hybrid films from plant and bacterial nanocellulose: mechanical and barrier properties
  27. Mass-balance based soft sensor for monitoring ash content at two-ply paperboard manufacturing
  28. Investigation of the effect of light fastness on the color changes of maps prepared by electrophotographic digital printing
  29. Bulking of cellulose fibres – a review
  30. Preparation of O-HACC/HEC-acrylate emulsion and its application in paper protection
  31. Mineral-filled biopolyester coatings for paperboard packaging materials: barrier, sealability, convertability and biodegradability properties
Heruntergeladen am 22.9.2025 von https://www.degruyterbrill.com/document/doi/10.1515/npprj-2021-0063/html
Button zum nach oben scrollen