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Production of grease from waste cooking oil

机译:用废食用油生产油脂

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摘要

Vegetable oils have significant potential as a base fluid and a substitute for mineral oil for grease formulation. The objective of this research is to produce grease from waste cooking oil via saponification of a stearic acid with a lithium hydroxide monohydrate, LiOH. In this research, preparation and formulation of bio-based grease and determination of optimum operating condition were studied. The produced bio-based grease is expected to have better performance, and apply in variety industry such as agriculture/farming, forestry applications and food processing. The stearic acid, lithium hydroxide monohydrate and waste cooking oil compositions were manipulated in this research. The operating temperature and mixing period were also studied. The characteristics of produced grease were analyzed in order to evaluate the performance of the grease. Among parameters analyzed were depth penetration test, dropping point and oxidation stability. While grease hardness was determined using depth penetration test, and their oxidative stabilities was determined using copper corrosion test. The dropping point temperature was tested using dropping point apparatus. Results indicate that the lithium hydroxide monohydrate, stearic acid and waste cooking oil content significantly affect grease hardness, oxidative stability and dropping point temperature. NLGI 2 (common grease) grease was formulated in this study with optimum condition.
机译:植物油具有巨大的潜力,可以作为基础油和油脂替代矿物油的配方。这项研究的目的是通过将硬脂酸与氢氧化锂一水合物LiOH皂化,从废弃的食用油中生产油脂。在这项研究中,研究了生物基润滑脂的制备和配方以及最佳操作条件的确定。预计生产的生物基润滑脂将具有更好的性能,并应用于农业/农业,林业和食品加工等多种行业。在这项研究中操纵了硬脂酸,氢氧化锂一水合物和废食用油成分。还研究了操作温度和混合时间。分析生产的润滑脂的特性,以评估润滑脂的性能。分析的参数包括深度渗透测试,滴点和氧化稳定性。使用深度渗透测试确定润滑脂硬度,并使用铜腐蚀测试确定其氧化稳定性。使用滴点仪测试滴点温度。结果表明,氢氧化锂一水合物,硬脂酸和废食用油的含量显着影响润滑脂的硬度,氧化稳定性和滴点温度。 NLGI 2(普通润滑脂)润滑脂是在最佳条件下配制的。

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    Norasmah Othman;

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  • 年度 2009
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