Zawadzka Anita, Kijania-Kontak Magda
Department of Engineering and Chemical Technology, Cracow University of Technology, 24 Warszawska St., 31-155 Cracow, Poland.
Department of Civil Engineering, Cracow University of Technology, 24 Warszawska St., 31-155 Cracow, Poland.
Materials (Basel). 2025 Jul 23;18(15):3447. doi: 10.3390/ma18153447.
The increasing consumption of edible oils has resulted in a parallel rise in waste cooking oil (WCO), a harmful waste stream but one that also represents a promising raw material. In this study, oil-based binders were synthesised from WCO using various reagents: Sulfuric(VI) acid, hydrobromic acid, acetic acid, salicylic acid, glycolic acid, zinc acetate, ethanol, hydrogen peroxide, and their selected mixtures. The manufacturing process was optimised, and the composites were evaluated for physicochemical and mechanical properties, including compressive strength, bending strength, and water absorption. The best performance was observed for composites catalysed with a mixture of sulfuric(VI) acid and 20% hydrogen peroxide, cured at 240 °C, yielding compressive and bending strengths of 5.20 MPa and 1.34 MPa, respectively. Under modified curing conditions, a compressive strength of 5.70 MPa and a bending strength of 0.75 MPa were obtained. The composite modified with glycolic acid showed the lowest water absorption (3%). These findings demonstrate how catalyst type and curing parameters influence composite structure, porosity, and mechanical behaviour. The study provides new insights into the process-structure-property relationships in oil-based materials and supports the development of environmentally friendly composites from waste feedstocks.
食用油消费量的增加导致了废食用油(WCO)的同步增长,废食用油是一种有害废物流,但也是一种很有前景的原材料。在本研究中,使用各种试剂从废食用油中合成了油基粘合剂:硫酸、氢溴酸、乙酸、水杨酸、乙醇酸、乙酸锌、乙醇、过氧化氢及其选定的混合物。对制造工艺进行了优化,并对复合材料的物理化学和机械性能进行了评估,包括抗压强度、抗弯强度和吸水性。用硫酸和20%过氧化氢的混合物催化、在240℃下固化的复合材料表现出最佳性能,其抗压强度和抗弯强度分别为5.20MPa和1.34MPa。在改进的固化条件下,抗压强度为5.70MPa,抗弯强度为0.75MPa。用乙醇酸改性的复合材料吸水性最低(3%)。这些发现证明了催化剂类型和固化参数如何影响复合材料的结构、孔隙率和机械性能。该研究为油基材料的工艺-结构-性能关系提供了新的见解,并支持了利用废弃原料开发环境友好型复合材料。