Barbu Marius Cătălin, Montecuccoli Zeno, Förg Jakob, Barbeck Ulrike, Klímek Petr, Petutschnigg Alexander, Tudor Eugenia Mariana
Forest Products Technology and Timber Construction Department, Salzburg University of Applied Sciences, Markt 136a, 5431 Kuchl, Austria.
Faculty of Furniture Design and Wood Engineering, Transilvania University of Brasov, B-dul. Eroilor nr. 29, 500036 Brașov, Romania.
Polymers (Basel). 2021 Jan 20;13(3):319. doi: 10.3390/polym13030319.
Brewer's spent grain (BSG) is the richest by-product (85%) of the beer-brewing industry, that can be upcycled in a plentiful of applications, from animal feed, bioethanol production or for removal of heavy metals from wastewater. The aim of this research is to investigate the mechanical, physical and structural properties of particleboard manufactured with a mixture of wood particles and BSG gradually added/replacement in 10%, 30% and 50%, glued with polymeric diisocyanate (pMDI), urea-formaldehyde (UF) and melamine urea-formaldehyde (MUF) adhesives. The density, internal bond, modulus of rupture, modulus of elasticity, screw withdrawal resistance, thickness swelling and water absorption were tested. Furthermore, scanning electron microscopy anaylsis was carried out to analyze the structure of the panels after the internal bond test. Overall, it was shown that the adding of BSG decreases the mechanical performance of particleboard, due to reduction of the bonding between wood and BSG particles. This decrease has been associated with the structural differences proven by SEM inspection. Interaction of particles with the adhesive is different for boards containing BSG compared to those made from wood. Nevertheless, decrease in the mechanical properties was not critical for particleboards produced with 10% BSG which could be potentially classified as a P2 type, this means application in non-load-bearing panel for interior use in dry conditions, with high dimensional stability and stiffness.
啤酒糟(BSG)是啤酒酿造行业中最丰富的副产品(占比85%),可在众多应用中进行升级利用,如用于动物饲料、生物乙醇生产或从废水中去除重金属。本研究的目的是调查用木颗粒与BSG的混合物逐步添加/替代比例为10%、30%和50%制成的刨花板的机械、物理和结构性能,这些刨花板用聚合二异氰酸酯(pMDI)、脲醛(UF)和三聚氰胺脲醛(MUF)胶粘剂胶合。测试了密度、内结合强度、抗弯强度、弹性模量、抗螺钉拔出力、厚度膨胀率和吸水率。此外,在进行内结合强度测试后,通过扫描电子显微镜分析来剖析板材的结构。总体而言,结果表明添加BSG会降低刨花板的机械性能,这是由于木材与BSG颗粒之间的结合力减弱。这种降低与扫描电子显微镜检查所证实的结构差异有关。与由木材制成的刨花板相比,含BSG的刨花板中颗粒与胶粘剂的相互作用有所不同。然而,对于用10% BSG生产的刨花板,其机械性能的降低并不关键,这类刨花板可能可归类为P2型,这意味着可应用于干燥条件下室内使用的非承重板材,具有高尺寸稳定性和刚度。