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首页> 外文期刊>Chemistry central journal >Biolubricant basestocks from chemically modified plant oils: ricinoleic acid based-tetraesters
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Biolubricant basestocks from chemically modified plant oils: ricinoleic acid based-tetraesters

机译:来自化学改性植物油的生物润滑剂基础油:蓖麻油酸基四酯

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摘要

Background Plant oils have been investigated as a potential source of environmentally favorable biolubricants because of their biodegradability, renewability and excellent lubrication performance. Low oxidation and thermal stability, poor low-temperature properties and a narrow range of available viscosities, however, limit their potential application as industrial lubricants. The inherent problems of plant oils can be improved by attaching functional groups at the sites of unsaturation through chemical modifications. In this article, we will demonstrate how functionalization helps overcome these disadvantages. Results In this work, mono-, tri- and tetra-esters have been synthesized, including 10,12-dihydroxy-9-(stearoyloxy)octadecanoic acid 3; 9,10,12-tris(stearoyloxy)octadecanoic acid 4; and 18-(4-ethylhexyloxy)-18-oxooctadecane-7,9,10-triyl tristearate 5. Pour-point and cloud-point measurements have shown that these derivatives have improved low-temperature properties as compared to the precursor. The tetra ester compound, 18-(4-ethylhexyloxy)-18-oxooctadecane-7,9,10-triyl tristearate 5, had the lowest pour point (PP) (?44.37°C) and the lowest cloud point (CP) (?41.25°C). This derivatization also improved the compound’s thermo-oxidative stability, measured using pressurized differential scanning calorimetry (PDSC) and thin-film micro-oxidation (TFMO) testing. 18-(4-Ethylhexyloxy)-18-oxooctadecane-7,9,10-triyl tristearate 5 also had the highest onset temperature (OT) (282.10°C) and the lowest volatile loss and insoluble deposit (37.39% and 50.87%, respectively). Furthermore, the compounds’ tribological behaviors were evaluated using the four-ball method. 18-(4-Ethylhexyloxy)-18-oxooctadecane-7,9,10-triyl tristearate 5 also had the lowest coefficient of friction (μ) (0.44). Conclusions The results showed that, in general, these derivatives have good anti-wear and friction-reducing properties at relatively low concentrations under all of the test loads. Overall, the data indicates that these derivatives have significant potential to be used as biolubricant basestocks.
机译:背景技术由于植物油具有生物降解性,可再生性和出色的润滑性能,因此已被研究为对环境有益的生物润滑剂的潜在来源。低的氧化和热稳定性,较差的低温性能以及较窄的可用粘度范围限制了它们作为工业润滑剂的潜在应用。可以通过化学修饰将官能团连接在不饱和位点上来改善植物油的固有问题。在本文中,我们将演示功能化如何帮助克服这些缺点。结果在这项工作中,合成了单酯,三酯和四酯,包括10,12-二羟基-9-(硬脂酰氧基)十八碳烯酸3; 9,10,12-三(硬脂酰氧基)十八烷酸4;和18-(4-乙基己氧基)-18-氧十八烷-7,9,10-三硬脂酸酯5。倾点和浊点测量表明,与前体相比,这些衍生物的低温性能得到改善。四酯化合物18-(4-乙基己氧基)-18-氧十八烷-7,9,10-三硬脂酸酯5的最低倾点(PP)(?44.37°C)和最低的浊点(CP)( (41.25℃)。通过加压差示扫描量热法(PDSC)和薄膜微氧化法(TFMO)测试,这种衍生作用还改善了该化合物的热氧化稳定性。 18-(4-乙基己氧基)-18-氧十八烷基三硬脂酸酯7,9,10-三硬脂酸酯5的起始温度(OT)也最高(282.10°C),挥发损失和不溶物最低(37.39%和50.87%,分别)。此外,使用四球法评估了化合物的摩擦学行为。 18-(4-乙基己氧基)-18-氧十八烷-7,9,10-三硬脂酸酯5也具有最低的摩擦系数(μ)(0.44)。结论结果表明,一般而言,这些衍生物在所有测试载荷下,在相对较低的浓度下都具有良好的抗磨损和减少摩擦的性能。总体而言,数据表明这些衍生物具有用作生物润滑剂基础油的巨大潜力。

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