Startseite Response surface methodology optimization and anti-age properties in paper protection of carboxymethyl cellulose grafted with β –cyclodextrin
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Response surface methodology optimization and anti-age properties in paper protection of carboxymethyl cellulose grafted with β –cyclodextrin

  • Linquan Fang , Hua Li EMAIL logo und Jun Gao
Veröffentlicht/Copyright: 13. August 2025
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Abstract

In order to protect the paper, increase the mechanic performance and delay the aging of paper, CMC-β-CD was synthesized by carboxymethyl cellulose as substrate, epichlorohydrin (ECH) as crosslinking agent, sodium hydroxide (NaOH) as catalyst and solvent, and water as medium, β-Cyclodextrin as grafter, through single factor experiment and response surface method, suitable conditions for the synthesis of CMC-β-CD was obtained; The structure of the synthesized CMC-β-CD was characterized by infrared spectroscopy and SEM and the mechanic properties were evaluated. The results showed that when the mass ratio of CMC-β-CD was 7:15, reaction temperature was 40 °C, and pH was 6.0, the optimum synthetic conditions was obtained. And good anti-age properties was also obtained by thermal aging tests. This paper provides some theoretical guidance for the protection of paper cultural relics.


Corresponding author: Hua Li, School of Chemical Engineering, Zhengzhou University, Zhengzhou, 450001, China, E-mail:

  1. Research ethics: Not applicable.

  2. Informed consent: Not applicable.

  3. Author contributions: The authors have accepted responsibility for the entire content of this manuscript and approved its submission.

  4. Use of Large Language Models, AI and Machine Learning Tools: None declared.

  5. Conflict of interest: All other authors state no conflict of interest.

  6. Research funding: This work was supported by Undergraduate Training Program for Innovation and Entrepreneurship in 2024, No.2024CXCY327.

  7. Data availability: The raw data can be obtained on request from the corresponding author.

References

Afsharpour, M., Rad, F.T., and Malekian, H. (2011). New cellulosic titanium dioxide nanocomposite as a protective coating for preserving paper-art-works. J. Cult. Herit. 12: 380–383, https://doi.org/10.1016/j.culher.2011.03.001.Suche in Google Scholar

Ariafar, A.A., Afsharpour, M., and Samanian, K. (2018). Use of TiO2/chitosan nanoparticles for enhancing the preservative effects of carboxymethyl cellulose in paper-art-works against biodeterioration. Int. Biodeterior. & Biodegrad. 131: 67–77, https://doi.org/10.1016/j.ibiod.2017.04.025.Suche in Google Scholar

Banerjee, S., Haynes, R.D. (2008). Stickies control with cyclodextrins. Tappi J. 7: 4–7, https://doi.org/10.32964/tj7.11.4.Suche in Google Scholar

Brinatti, C., Huang, J., Berry, R.M., Tam, K.C., and Loh, W. (2016). Structural and energetic studies on the interaction of cationic surfactants and cellulose nanocrystals. Langmuir 32: 689–698, https://doi.org/10.1021/acs.langmuir.5b03893.Suche in Google Scholar PubMed

Cao, Y.H. (2008). Research on the application of multi-functional protective glue solution for paper cultural relics. Nanjing University of Aeronautics and Astronautics, Nanjing.Suche in Google Scholar

Cao, S. and Cui, Ch. (2024). Preparation and comprehensive performance comparison of several common surface sizing agents for traditional Chinese painting Xuan paper. Paper Sci. & Technol. 43: 14–18.Suche in Google Scholar

Chen, K., Zhai, H.M., and Cheng, J.L. (2017). Characteristics of carboxymethyl cellulose and its effect on paper reinforcement in wet-end process. China Pulp & Paper Ind. 38: 31–35.Suche in Google Scholar

Chen, Y., Sun, H., Liu, X., Liu, W., and Leng, W. (2022). Stability and surface properties of selenium nanoparticles coated with chitosan and sodium carboxymethyl cellulose. Carbohydr. Polym. 278: 1188–1195.10.1016/j.carbpol.2021.118859Suche in Google Scholar PubMed

Dong, C. (2014). Antibacterial/antiviral cellulose fibers and their paper products. South China University of Technology, Guangzhou.Suche in Google Scholar

Dong, C., Liang, X.T., Qian, L.Y., He, B.H., and Xiao, H.N.(2012). Preparation of cellulose fiber immobilized with β-cyclodextrin and its effect on paper properties. Paper Making Sci. and Technol. 31: 49–53.Suche in Google Scholar

Du, C.Y. (2021) Carboxymethyl cellulose is a water-absorbing material and its preparation. Heilongjiang Paper Mak. 49: 19–20.Suche in Google Scholar

Fan, X.Y., Hu, D.D., and Liang, X.T. (2018). Deacidification and reinforcement of paper archives based on hydroxypropyl methylcellulose composite Nano-Ca(OH)2. Archi. Sci. Study 118–122.Suche in Google Scholar

Feng, Z.Z. and Qi, Y.P. (2020). Study on strengthening degraded paper with cellulose solution. China Adhes. 29: 33–50.Suche in Google Scholar

Heinz, K (1994). Cyclodextrins in pharmacy. Chapter 5. Kluweer Academic publishers, Dordrecht, pp. 83–87.Suche in Google Scholar

Ji, J.F., Zhu, H.X., and Li, Z.L. (2014). Study on preparation of surface sizing agent by grafting fluorinated monomer on nanocrystalline cellulose. Chinese J. Paper Mak. 29: 18–22.Suche in Google Scholar

Li, M.S. and Zhang, M. (1998). Spectrophotometer measuring of β-CD. Anal. Chem. 26: 912-913Suche in Google Scholar

Li, Y.X., Chen, X.Sh, Li, H., and Li, D.D. (2023). Preparation and application in the paper protection of carboxymethyl cellulose grafted with β-cyclodextrin. Nord. Pulp Pap. Res. J. 39: 517–526, https://doi.org/10.1515/npprj-2023-0057.Suche in Google Scholar

Li, J., Ma, R., Wu, P., and Quan, M.(2024). CMC-Ca(OH) 2-TiO2 nanocomposite for paper relics multifunctional restoration: strengthening, deacidification, UV effect resistance, and antimicrobial protection. Coatings 14, 851–853, https://doi.org/10.3390/coatings14070851.Suche in Google Scholar

Pan, Q.Q. (2023). Study on the effects of several common surface sizing agents on handmade Xuan paper. Beijing Institute of Graphic Communication, Beijing.Suche in Google Scholar

Song, B. and Peng, J.J. (2011). Application progress of Cyclodextrin and its derivatives in papermaking. Paper Chem. 13: 1–4.Suche in Google Scholar

Sun, M. (2012). Preparation and properties of polyvinyl alcohol antibacterial films based on clove essential Oil/β-Cyclodextrin inclusion complexes. Hunan University of Technology, Zhuzhou.Suche in Google Scholar

Tian, P., Shi, M., Hou, J., and Fu, p. (2023). Cellulose-graphene bifunctional paper conservation materials: for reinforcement and UV aging protection. Coatings 13: 443, https://doi.org/10.3390/coatings13020443.Suche in Google Scholar

Xu, L.L. (2011). Experimental research on the protection of paper cultural relics by modified natural materials. Nanjing University of Aeronautics and Astronautics, Nanjing.Suche in Google Scholar

Yan, An and Liu, Z.H. (2010). Study on aging resistance of Nano-TiO2/β-CD photocatalytic paper. Paper Chem. 22: 7–10.Suche in Google Scholar

Yi, X.H., Yan, Z.P., Zhang, M., and Long, K.(2017). Study on the consolidation of aged literature paper by nanocellulose. J. Cellul. Sci. and Technol. 25:8–13+19.Suche in Google Scholar

Zhang, X.M. and Su, J. (2011). Study on reinforcement materials for fragile paper. Sci. Conserv. and Archaeol. 23: 70–74.Suche in Google Scholar

Zhang, W.J., Wang, Y.Q., and Wang, H.(2021). Optimization of allicin extraction process using response surface methodology. Farm Prod. Process. 47: 36–39.Suche in Google Scholar

Zhu, G., Xiao, Z. (2021)Fabrication and characterization of ethyl acetate-hydroxypropyl-β-cyclodextrin inclusion complex. J. Food Sci. 86:3689–3597, https://doi.org/10.1111/1750-3841.15835.Suche in Google Scholar PubMed

Received: 2024-11-12
Accepted: 2025-07-28
Published Online: 2025-08-13

© 2025 Walter de Gruyter GmbH, Berlin/Boston

Heruntergeladen am 21.9.2025 von https://www.degruyterbrill.com/document/doi/10.1515/npprj-2024-0072/html
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