4.7 Article

Synthesis and Characterization of Sucrose and Ammonium Dihydrogen Phosphate (SADP) Adhesive for Plywood

期刊

POLYMERS
卷 11, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/polym11121909

关键词

eco-friendly adhesive; sucrose; ammonium dihydrogen phosphate; plywood

资金

  1. Natural science fund for colleges and universities in Jiangsu Province [19KJB220010]
  2. Scientific Research Foundation of Nanjing Forestry University [GXL2018009]

向作者/读者索取更多资源

The development of eco-friendly adhesives for wood composite products has been a major topic in the field of wood science and product engineering. Although the research on tannin-based and soybean protein-based adhesives has already reached, or at least nears, industrial implementation, we also face a variety of remaining challenges with regards to the push for sustainable adhesives. First, petroleum-derived substances remain a pre-requisite for utilization of said adhesive systems, and also the viscosity of these novel adhesives continues to limit its ability to serve as a drop-in substitute. Within this study, we focus upon the development of an eco-friendly plywood adhesive that does not require any addition of petroleum derived reagents, and the resultant liquid adhesive has both high solid contents as well as a manageably low viscosity at processing temperatures. Specifically, a system based on sucrose and ammonium dihydrogen phosphate (ADP) was synthesized into an adhesive with similar to 80% solid content and with viscosities ranging from 480-1270 mPas. The bonding performance of all adhesive-bound veneer specimens satisfied GB/T 9846-2015 standard at 170 degrees C hot pressing temperature. To better explain the system's efficiency, in-depth chemical analysis was performed in an effort to understand the chemical makeup of the cured adhesives as well as the components over the time course of curing. Several new structures involving the fixation of nitrogen speak to a novel adhesive molecular network. This research provides a possibility of synthesizing an eco-friendly wood adhesive with a high solid content and a low viscosity by renewable materials, and this novel adhesive system has the potential to be widely utilized in the wood industry.

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