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- W29449873 abstract "This work characterized burn-off emissions from automobiles. After an exhaustive literature review, engine temperatures were determined to reach a maximum temperature of approximately 110C, while exhaust system components reached a maximum temperature around 600C. Metal-drawing fluids were used to bend the exhaust system components during manufacturing. Because these components were not rinsed prior to incorporation into a vehicle, residues could be left on the surfaces. An experimental test chamber was constructed to conduct controlled testing of three metalworking fluids of various types to mimic real-world conditions. Real-time particle number measurements were made using a condensation particle counter and an optical particle counter. The temperature at which burn-off begins to occur was found to be around 120 to 150C. This burn-off was found to be an evaporation-condensation phenomenon when metalworking fluid residues vaporize and condense forming fine (0.1μm to 2.5μm) and ultrafine (<0.1μm) aerosols. The temperature dependency of this phenomenon was observed to follow the Clausius-Clapeyron equation that states as temperature increases, vapor pressure increases. Most aerosol particles were observed to be in the range of less than 0.01μm to approximately 2.0μm." @default.
- W29449873 created "2016-06-24" @default.
- W29449873 creator A5079337666 @default.
- W29449873 date "2018-11-29" @default.
- W29449873 modified "2023-10-11" @default.
- W29449873 title "Temperature dependency of burn-off emissions in the automobile industry" @default.
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- W29449873 doi "https://doi.org/10.17077/etd.o06cclu5" @default.
- W29449873 hasPublicationYear "2018" @default.
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