AN ANALYSIS OF METAL SURFACE IMMERSED IN BASED LUBRICANT FROM MINERAL OIL CONTAINING VEGETABLE OIL WITH RICE BRAN OIL BASED BIO-INHIBITOR

R. A. Nugrahani, T. Hendrawati, Susanty Susanty
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引用次数: 2

Abstract

The need for environmentally friendly chemical products in daily needs encourages the production of its. The green-chemistry concept is using the process and produces chemical products that are ecofriendly. Including ecofriendly chemical products are base oil and additives for lubricants, grease, and fuels. The production is expected to reduce the consumption of mineral and synthetic base oils, so it will be biodegradable and renewable. This study compares the results of analysis of metallic surfaces immersed in the mixture of mineral and vegetable base oil, with the addition of rice bran oil bioadditive, ie epoxidized methyl ester (EME) and hydroxyl alkylbenzene sulphonic acid ester (HASE). The research method consists of preparing HASE; analyzing the effect of HASE and EME bioadditives addition on the mixture of base oil to the changing of metallic weight immersed in the mixture; determining the inhibition efficiency of the EME and HSAE additions; analyzing the metal surface using SEM-EDX (Scanning Electron Microscope) / (Energy Dispersive X-ray Spectrometry) to find images of microstructure and chemical compounds contained in specimens, and testing the metal difractogram immersed in base oil mixtures with bioadditive using XRD (X-Ray Diffraction). SEM test results of carbon steel immersed in a mixture of base oil and bioadditives show corrosion in which the metal surface color immersed in EME bioadditive mixtures is brighter. EDX spectra of metal sample surfaces immersed in a mixture of base oil, EME and HASE contain carbon (C) and iron (Fe). The carbon content in carbon steel samples immersed in the mixtures and HASE is higher. XRD test results show Fe2O3 phases in carbon steel samples immersed in the HASE bioadditive mixture are higher than in EME. While Fe3O4 phases in carbon steel samples immersed in the EME bioadditive mixture are higher than Fe2O3 phases in samples immersed in HASE bioadditive mixture.
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米糠油基生物抑制剂对矿物油植物油基润滑油中金属表面浸液的分析
日常需求中对环保化学产品的需求鼓励了其生产。绿色化学概念是利用这一过程生产环保的化学产品。包括环保化学产品在内的还有基础油和润滑剂、润滑脂和燃料添加剂。该生产预计将减少矿物油和合成基础油的消耗,因此它将是可生物降解和可再生的。本研究比较了浸在矿物和植物基础油混合物中的金属表面的分析结果,并添加了米糠油生物添加剂,即环氧化甲酯(EME)和羟基烷基苯磺酸酯(HASE)。研究方法包括制备HASE;分析了HASE和EME生物添加剂在基础油混合物中的添加对浸泡在混合物中的金属重量变化的影响;测定所述EME和HSAE添加物的抑制效率;使用SEM-EDX(扫描电子显微镜)/(能量分散X射线光谱法)分析金属表面以找到样品中包含的微观结构和化合物的图像,并使用XRD(X射线衍射)用生物添加剂测试浸入基础油混合物中的金属衍射图。将碳钢浸入基础油和生物添加剂的混合物中的SEM测试结果表明,浸入EME生物添加剂混合物中的金属表面颜色更亮。浸入基础油、EME和HASE的混合物中的金属样品表面的EDX光谱包含碳(C)和铁(Fe)。浸泡在混合物和HASE中的碳钢样品中的碳含量较高。XRD测试结果表明,浸泡在HASE生物添加剂混合物中的碳钢样品中的Fe2O3相高于EME。而浸入EME生物添加剂混合物中的碳钢样品中的Fe3O4相高于浸入HASE生物添加剂混合物的样品中的Fe 2O3相。
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