In plug-in hybrid vehicles (PHEV), the advantages of two technologies (electrical drive and combustion engine) are combined: This means that both, local emission-free driving and a long range drives are guaranteed. Short distance use in everyday life enables long-term electrical drive. However, this means long fuel storage time in the tank, leading to physical and chemical fuel degradation. Consequently, the development of a fuel quality sensor is important for PHEV and introduced in this book.
Martin Unglert
Autooxidation, Radikalstabilität, Spektroskopie, Petrooxy-Methode, Dielektrischer Sensor, Optischer Sensor, Chromatographie, Dimerisierung Dielectric Sensor, Optical Sensor, Chromatographic, Dimerization, Triple oxidation, Empirical variance, Fluorescence, Hydroperoxides, Alkoxy Dreifachoxidation, Empirische Varianz, Fluoreszenz, Hydroperoxide, Alkoxy, Infrarot, Matrix, Regression, Induktion, Flüssigkeit, Quadrupol, Polarisation Infrared, Matrix, regression, Induction, Liquid, Quadrupole,Polarisation, Biodiesel, Sensor, hydriertes Pflanzenöl, Abbau, Oxidation, Messungen biodiesel, sensor, hydrogenated vegetable oil, degradation, oxidation, measurements, Autooxidation, Radical stability, Spectroscopic, Petrooxy method