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环保型离子液体与商业生物衍生型润滑剂添加剂在摩擦学性能和水生毒性方面的比较。

Comparison of Eco-Friendly Ionic Liquids and Commercial Bio-Derived Lubricant Additives in Terms of Tribological Performance and Aquatic Toxicity.

机构信息

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.

出版信息

Molecules. 2024 Aug 14;29(16):3851. doi: 10.3390/molecules29163851.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e099/11357439/34c77fe03bdc/molecules-29-03851-g001.jpg

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