Widder Lukas, Brennerb Josef, Huttera Herbert
Eur J Mass Spectrom (Chichester). 2014;20(4):299-305.
To develop new products and to apply measures of quality control quick and simple accessibility of additive composition in automo- tive lubrication is important. The aim of this study was to investigate the possibility of analyzing organic friction modifier additives by means of atmospheric pressure matrix-assisted laser desorption/ionization mass spectrometry [AP-MALDI-MS] from lubricant solu- tions without the use of additional separation techniques. Analyses of selected friction modifier ethoxylated tallow amines and oleic acid amide were compared using two ionization methods, positive-ion electrospray ionization (ESI) and AP-MALDI, using a LTQ Orbitrap mass spectrometer. Pure additives were characterized from solvent solutions, as well as from synthetic and mineral base oil mixtures. Detected ions of pure additive samples consisted mainly of [M + H]+, but also alkaLi metal adducts [M + Na]+ and [M + K]+ could be seen. Characterizations of blends of both friction modifiers from the base oil mixtures were carried out as well and showed significant inten- sities for several additive peaks. Thus, this work shows a method to directly analyze friction modifier additives used in the automotive industry from an oil blend via the use of AP-MALDI without any further separation steps. The method presented will further simplify the acquisition of data on lubricant composition and additives. Furthermore, it allows the perspective of analyzing additive reaction products directly from formulated oil blends.
开发新产品以及采用质量控制措施时,汽车润滑中添加剂组合物的快速简便获取非常重要。本研究的目的是研究在不使用额外分离技术的情况下,通过大气压基质辅助激光解吸/电离质谱法[AP-MALDI-MS]从润滑剂溶液中分析有机摩擦改进剂添加剂的可能性。使用LTQ Orbitrap质谱仪,采用两种电离方法,即正离子电喷雾电离(ESI)和AP-MALDI,对选定的摩擦改进剂乙氧基化牛脂胺和油酸酰胺进行了分析比较。从溶剂溶液以及合成和矿物基础油混合物中对纯添加剂进行了表征。纯添加剂样品检测到的离子主要为[M + H]+,但也可见碱金属加合物[M + Na]+和[M + K]+。还对基础油混合物中两种摩擦改进剂的混合物进行了表征,结果显示几个添加剂峰的强度很高。因此,这项工作展示了一种通过使用AP-MALDI直接从油混合物中分析汽车工业中使用的摩擦改进剂添加剂的方法,无需任何进一步的分离步骤。所提出的方法将进一步简化润滑剂成分和添加剂数据的获取。此外,它还提供了直接从配方油混合物中分析添加剂反应产物的前景。