Kozdrach Rafal, Radulski Pawel
Bioeconomy and Ecoinnovation Department, Lukasiewicz Research Network - Institute for Sustainable Technologies, 26-600, Radom, Poland.
Sci Rep. 2025 Feb 1;15(1):3964. doi: 10.1038/s41598-025-87374-0.
Effect of modifying a vegetable grease with different amounts of chokeberry biocarbon on its tribological and rheological properties. The aim of the research was to investigate the effect of the incorporation of biochar derived from the pyrolysis of chokeberry biomass at 500 and 700 °C respectively, in lubricants formulated with vegetable oil, on their functional characteristics in terms of tribology and rheology. Fumed silicon dioxide was utilized as a thickening agent, ensuring the production of lubricants with a consistency class of II. The biochar was introduced into the lubricating formulations in concentrations of 1, 3, and 5%. A rapeseed-based grease with commercial activated carbon served as the reference sample. The research focused on assessing how this innovative additive influenced both the tribological and rheological behaviors of the resulting lubricants. The study evaluated the effects of chokeberry-derived biochar on the wear resistance and scuffing prevention properties of the vegetable-based greases. Additionally, the biochar's influence on various rheological parameters such as flow curves, viscosity profiles, hysteresis loops, and viscoelastic characteristics was analyzed. Results demonstrated that the biochar additive considerably enhanced the tribological and rheological performance of the tested rapeseed-based grease.
用不同量的黑 chokeberry 生物炭改性植物油脂对其摩擦学和流变学性能的影响。本研究的目的是调查分别在 500 和 700 °C 下由黑 chokeberry 生物质热解得到的生物炭掺入植物油基润滑剂中,对其摩擦学和流变学功能特性的影响。气相二氧化硅用作增稠剂,确保生产出稠度等级为 II 的润滑剂。生物炭以 1%、3% 和 5% 的浓度引入润滑配方中。以油菜籽为基础的含商业活性炭的润滑脂用作参考样品。该研究重点评估这种创新添加剂如何影响所得润滑剂的摩擦学和流变学行为。该研究评估了黑 chokeberry 衍生生物炭对植物油基润滑脂耐磨性和抗擦伤性能的影响。此外,还分析了生物炭对各种流变参数的影响,如流动曲线、粘度曲线、滞后回线和粘弹性特性。结果表明,生物炭添加剂显著提高了测试的油菜籽基润滑脂的摩擦学和流变学性能。