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Lube Oil /Used Motor Oil Re-Refining Equipment to Base Oil
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Gas Sweetening and Processing Field Manual. Fluoropolymer Additives. Sina Ebnesajjad. Handbook of Food Science and Technology 2. Romain Jeantet. Fuels and Fuel-Additives.
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Freeze-Drying of Pharmaceutical and Food Products. Tse-Chao Hua. Temesgen Atnafu. Lubricant Additives. Leslie R. Eike Reich. Alana Monet-Telfer. Waqi Alam. Additives for Waterborne Coatings. Wernfried Heilen. Chemistry and Technology of Lubricants. Malcolm F. Bonnie Jarvis. Alec Groysman.
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Design Aspects of Used Lubricating Oil Re-Refining (Paperback)
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https://miesearchfilati.ml Rules of Thumb for Chemical Engineers. Stephen Hall. Lightweight and Sustainable Materials for Automotive Applications. Omar Faruk. Wood-Polymer Composites. K O Niska. Fermentation and Biochemical Engineering Handbook. Recovered base oil characterizations: Adsorption efficiency of metals from recovered base oil is partly influenced by the conditions of the collected samples.
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Therefore, the characterization of its physical and chemical properties is important prior to experiment. The properties of waste oil sample and the recovered base oil that was prepared by solvent extraction method were shown in Table 2. As can be seen, the waste oil samples recorded higher density value than the new base oil, hence reflects the presence of contaminants such as fuel root or oxidised material in the waste oil. Moreover, the waste oil shows the increase in kinematic viscosity which indicates the presence of contamination in used lubricant oil.
The waste oil also shows the increase of the oil viscosity that cause by the increase of oxidation and polymerization products that were dissolved and suspended in the oil Awaja and Pavel, On the other hand, the waste oil only contents with a little value of water. So, it does not require water removal procedures. Other than that, the carbon residue and ash content of used lubricant oil were higher than the specification of the new base oil which evaluates the remaining solid in the waste oil. The recovered base oil characterizations shown in Table 2 was produced after the waste oil samples have been treated by solvent extraction method for the sample preparation step.
As can be seen, the proportions of metals content in the recovered base oil are still high. These include the content of sodium, magnesium, calcium and zinc which shows the value greater than 10 ppm.
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As stated by Hess , in order to recycle the recovered base oil, the metals content must be in a very small quantity below than 10 ppm so that it is easier to blend with the other additives to produce new lubricating oil. Parameter identification: The full factorial design analysis was carried out to identify the main and the interaction effects of the experimental parameters on the four dependent variables, percentage of sodium, magnesium, calcium and zinc removal.
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