SCI和EI收录∣中国化工学会会刊

中国化学工程学报 ›› 2023, Vol. 59 ›› Issue (7): 92-104.DOI: 10.1016/j.cjche.2022.09.022

• Full Length Article • 上一篇    下一篇

Synthesis, performance and structure characterization of glyoxal-monomethylolurea-melamine (G-MMU-M) co-condensed resin

Haixiang Liu, Jun Zhang, Chunlei Dong, Gang Zhu, Guanben Du, Shuduan Deng   

  1. Yunnan Key Laboratory of Wood Adhesives and Glue Products, Southwest Forestry University, Kunming 650224, China
  • 收稿日期:2022-08-01 修回日期:2022-09-22 出版日期:2023-07-28 发布日期:2023-10-14
  • 通讯作者: Shuduan Deng,E-mail:dengshuduan@163.com
  • 基金资助:
    Funding support from National Natural Science Foundation of China (31860188), Special Project of “Leading Talents of Industrial Technology” of Yunnan Ten Thousand Talents Plan (80201408) and Yunnan Agricultural joint project (202101BD070001-105) are acknowledged.

Synthesis, performance and structure characterization of glyoxal-monomethylolurea-melamine (G-MMU-M) co-condensed resin

Haixiang Liu, Jun Zhang, Chunlei Dong, Gang Zhu, Guanben Du, Shuduan Deng   

  1. Yunnan Key Laboratory of Wood Adhesives and Glue Products, Southwest Forestry University, Kunming 650224, China
  • Received:2022-08-01 Revised:2022-09-22 Online:2023-07-28 Published:2023-10-14
  • Contact: Shuduan Deng,E-mail:dengshuduan@163.com
  • Supported by:
    Funding support from National Natural Science Foundation of China (31860188), Special Project of “Leading Talents of Industrial Technology” of Yunnan Ten Thousand Talents Plan (80201408) and Yunnan Agricultural joint project (202101BD070001-105) are acknowledged.

摘要: In order to reduce the formaldehyde emission of formaldehyde-based wood adhesive from the source, it is aimed to develop a novel co-condensed resin of glyoxal-monomethylolurea-melamine (G-MMU-M). A series of G-MMU-M resins with various formulations of raw materials were successfully prepared. The basic properties and bonding performance of the G-MMU-M resins were determined. Furthermore, the structures of resins were characterized by FTIR, 13C NMR, XPS, and ESI-MS. The results show that the prepared G-MMU-M resin remains stable for 30 d, meanwhile, the dry and wet bonding strength of the plywoods bonded with the resins, solid content and viscosity are influenced greatly by the addition amount of melamine and MMU/G molar ratio. The G-MMU-M resins with MMU/G molar ratio of 0.9:1.0 and 8% melamine exhibit the highest dry and bonding strength of 1.98 MPa and 1.27 MPa, increased by 34% and 63%, respectively, in comparison with glyoxal-monomethylolurea (G-MMU) resin. In the G-MMU-M resins, there were four main oligomers including M—CH(—+CH-MMU)-O-MMU, M-CH(—CH2OH)-MMU-O-MMU, M—CH(—OH)—+CH-MMU-O-MMU, and M—CH(—+CH-MMU)-MMU-p-G.

关键词: Wood adhesive, Glyoxal-monomethylolurea-melamine, Synthesis, Chemical reaction, Measurement, Structure

Abstract: In order to reduce the formaldehyde emission of formaldehyde-based wood adhesive from the source, it is aimed to develop a novel co-condensed resin of glyoxal-monomethylolurea-melamine (G-MMU-M). A series of G-MMU-M resins with various formulations of raw materials were successfully prepared. The basic properties and bonding performance of the G-MMU-M resins were determined. Furthermore, the structures of resins were characterized by FTIR, 13C NMR, XPS, and ESI-MS. The results show that the prepared G-MMU-M resin remains stable for 30 d, meanwhile, the dry and wet bonding strength of the plywoods bonded with the resins, solid content and viscosity are influenced greatly by the addition amount of melamine and MMU/G molar ratio. The G-MMU-M resins with MMU/G molar ratio of 0.9:1.0 and 8% melamine exhibit the highest dry and bonding strength of 1.98 MPa and 1.27 MPa, increased by 34% and 63%, respectively, in comparison with glyoxal-monomethylolurea (G-MMU) resin. In the G-MMU-M resins, there were four main oligomers including M—CH(—+CH-MMU)-O-MMU, M-CH(—CH2OH)-MMU-O-MMU, M—CH(—OH)—+CH-MMU-O-MMU, and M—CH(—+CH-MMU)-MMU-p-G.

Key words: Wood adhesive, Glyoxal-monomethylolurea-melamine, Synthesis, Chemical reaction, Measurement, Structure