Bekhta Pavlo, Noshchenko Gregory, Réh Roman, Kristak Lubos, Sedliačik Ján, Antov Petar, Mirski Radosław, Savov Viktor
Department of Wood-Based Composites, Cellulose and Paper, Ukrainian National Forestry University, 79057 Lviv, Ukraine.
Department of Chemistry, Ukrainian National Forestry University, 79057 Lviv, Ukraine.
Materials (Basel). 2021 Aug 27;14(17):4875. doi: 10.3390/ma14174875.
The purpose of this study was to evaluate the feasibility of using magnesium and sodium lignosulfonates (LS) in the production of particleboards, used pure and in mixtures with urea-formaldehyde (UF) resin. Polymeric 4,4'-diphenylmethane diisocyanate (pMDI) was used as a crosslinker. In order to evaluate the effect of gradual replacement of UF by magnesium lignosulfonate (MgLS) or sodium lignosulfonate (NaLS) on the physical and mechanical properties, boards were manufactured in the laboratory with LS content varying from 0% to 100%. The effect of LS on the pH of lignosulfonate-urea-formaldehyde (LS-UF) adhesive compositions was also investigated. It was found that LS can be effectively used to adjust the pH of uncured and cured LS-UF formulations. Particleboards bonded with LS-UF adhesive formulations, comprising up to 30% LS, exhibited similar properties when compared to boards bonded with UF adhesive. The replacement of UF by both LS types substantially deteriorated the water absorption and thickness swelling of boards. In general, NaLS-UF-bonded boards had a lower formaldehyde content (FC) than MgLS-UF and UF-bonded boards as control. It was observed that in the process of manufacturing boards using LS adhesives, increasing the proportion of pMDI in the adhesive composition can significantly improve the mechanical properties of the boards. Overall, the boards fabricated using pure UF adhesives exhibited much better mechanical properties than boards bonded with LS adhesives. Markedly, the boards based on LS adhesives were characterised by a much lower FC than the UF-bonded boards. In the LS-bonded boards, the FC is lower by 91.1% and 56.9%, respectively, compared to the UF-bonded boards. The boards bonded with LS and pMDI had a close-to-zero FC and reached the super E0 emission class (≤1.5 mg/100 g) that allows for defining the laboratory-manufactured particleboards as eco-friendly composites.
本研究的目的是评估使用木质素磺酸盐镁和木质素磺酸钠(LS)单独或与脲醛(UF)树脂混合用于生产刨花板的可行性。使用聚合4,4'-二苯基甲烷二异氰酸酯(pMDI)作为交联剂。为了评估用木质素磺酸盐镁(MgLS)或木质素磺酸钠(NaLS)逐步替代UF对物理和机械性能的影响,在实验室中制造了LS含量从0%到100%不等的刨花板。还研究了LS对木质素磺酸盐-脲醛(LS-UF)粘合剂组合物pH值的影响。结果发现,LS可有效用于调节未固化和固化的LS-UF配方的pH值。与用UF粘合剂粘合的刨花板相比,用含高达30%LS的LS-UF粘合剂配方粘合的刨花板表现出相似的性能。两种LS类型替代UF都会使刨花板的吸水率和厚度膨胀率大幅恶化。一般来说,与作为对照的MgLS-UF和UF粘合的刨花板相比,NaLS-UF粘合的刨花板甲醛含量(FC)更低。观察到在使用LS粘合剂制造刨花板的过程中,增加粘合剂组合物中pMDI的比例可显著提高刨花板的机械性能。总体而言,使用纯UF粘合剂制造的刨花板比用LS粘合剂粘合的刨花板表现出更好的机械性能。值得注意的是,基于LS粘合剂的刨花板的FC比UF粘合的刨花板低得多。在LS粘合的刨花板中,与UF粘合的刨花板相比,FC分别低91.1%和56.9%。用LS和pMDI粘合的刨花板FC接近零,达到了超级E0排放标准(≤1.5毫克/100克),这使得实验室制造的刨花板可被定义为环保复合材料。