Materials Science & Technology Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.
Environmental Sciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.
Molecules. 2024 Aug 14;29(16):3851. doi: 10.3390/molecules29163851.
Approximately half of the lubricants sold globally find their way into the environment. The need for Environmentally Acceptable Lubricants (EALs) is gaining increased recognition. A lubricant is composed of a base oil and multiple functional additives. The literature has been focused on EAL base oils, with much less attention given to eco-friendly additives. This study presents the tribological performance and aquatic toxicity of four short-chain phosphonium-phosphate and ammonium-phosphate ionic liquids (ILs) as candidate anti-wear and friction-reducing additives for EALs. The results are benchmarked against those of four commercial bio-derived additives. The four ILs, at a mere 0.5 wt% concentration in a synthetic ester, demonstrated a 30-40% friction reduction and >99% wear reduction, superior to the commercial baselines. More impressively, all four ILs showed significantly lower toxicity than the bio-derived products. In an EPA-standard chronic aquatic toxicity test, the sensitive model organism, Ceriodaphnia dubia, had 90-100% survival when exposed to the ILs but 0% survival in exposure to the bio-derived products at the same concentration. This study offers scientific insights for the future development of eco-friendly ILs as lubricant additives.
大约有一半的全球销售的润滑剂最终进入了环境中。人们越来越认识到需要环境可接受的润滑剂(EALs)。润滑剂由基础油和多种功能添加剂组成。文献主要集中在 EAL 基础油上,而对环保型添加剂的关注较少。本研究提出了四种短链膦酸酯和磷酸酯离子液体(ILs)作为 EALs 抗磨和减摩添加剂的摩擦学性能和水生毒性。结果与四种商业生物衍生添加剂进行了基准比较。四种 ILs 在合成酯中仅以 0.5wt%的浓度添加,其摩擦系数降低了 30-40%,磨损减少了>99%,优于商业基准。更令人印象深刻的是,所有四种 ILs 的毒性都明显低于生物衍生产品。在 EPA 标准的慢性水生毒性试验中,敏感的模式生物,大型溞,在接触 ILs 时的存活率为 90-100%,而在相同浓度下接触生物衍生产品时的存活率为 0%。本研究为未来环保型 ILs 作为润滑剂添加剂的开发提供了科学依据。