Younesi-Kordkheili Hamed, Pizzi Antonio
Department of Wood and Paper Sciences and Technology, Faculty of Natural Resources, Semnan University, Semnan 35131-19111, Iran.
LERMAB-ENSTIB, University of Lorraine, Epinal 88000, France.
Polymers (Basel). 2016 Feb 24;8(3):57. doi: 10.3390/polym8030057.
The effect of acidic ionic liquid (IL) as a new catalyst on the properties of wood-based panels bonded with urea-glyoxal (UG) resins was investigated. Different levels of -methyl-2-pyrrolidone hydrogen sulfate ([HNMP] HSO₄ (0, 1, 2, 3 wt %)) were added to prepared UG resin. The resin was then used for preparing laboratory particleboard panels. Then, the properties of the prepared panels were evaluated. The structure of the prepared UG resin was studied by C NMR, and thermal curing behavior of the resin before and after the addition of IL was measured by DSC. Additionally, the main oligomers formed in the UG reaction were identified by matrix-assisted laser desorption/ionization time-of-flight (MALDI TOF) mass spectroscopy. The results indicated that IL can be used as an efficient catalyst for UG resin. The physicochemical tests indicated that the addition of [HNMP] HSO₄ from 0 to 3 wt % decreased the pH value of the glue-mix, and the pH decreased on curing to the same level as urea-formaldehyde resins. The gel accelerated with increasing catalyst content and with the decreasing of the pH in the UG resin. The panels prepared with IL had higher mechanical strength and dimensional stability compared to those made from UG resins containing NH₄Cl. Scanning electron microscope (SEM) micrographs showed that the panels prepared with ionic liquid presented low porous. DSC analysis showed that the addition of IL to the UG resin decrease the energy of activation of the curing reaction to render possible cross-linking. The MALDI TOF results indicated a preponderant linearity of the oligomers formed, implying a high energy of activation of curing for UG resins.
研究了酸性离子液体(IL)作为一种新型催化剂对用脲-乙二醛(UG)树脂粘结的人造板性能的影响。将不同含量的N-甲基-2-吡咯烷酮硫酸氢盐([HNMP]HSO₄(0、1、2、3 wt%))添加到制备好的UG树脂中。然后将该树脂用于制备实验室刨花板。接着,对制备的板材性能进行评估。通过碳核磁共振(C NMR)研究制备的UG树脂的结构,并通过差示扫描量热法(DSC)测量添加IL前后树脂的热固化行为。此外,通过基质辅助激光解吸/电离飞行时间(MALDI TOF)质谱法鉴定UG反应中形成的主要低聚物。结果表明,IL可用作UG树脂的有效催化剂。物理化学测试表明,添加0至3 wt%的[HNMP]HSO₄会降低胶合剂混合物的pH值,且固化时pH值降低至与脲醛树脂相同的水平。UG树脂中凝胶化随着催化剂含量的增加和pH值的降低而加速。与由含氯化铵的UG树脂制成的板材相比,用IL制备的板材具有更高的机械强度和尺寸稳定性。扫描电子显微镜(SEM)显微照片显示,用离子液体制备的板材孔隙率较低。DSC分析表明,向UG树脂中添加IL降低了固化反应的活化能,从而使交联成为可能。MALDI TOF结果表明形成的低聚物具有显著的线性,这意味着UG树脂固化的活化能较高。