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Application of response surface methodology for optimizing the oxidative stability of natural ester oil using mixed antioxidants

机译:响应面法在混合抗氧化剂优化天然酯油氧化稳定性中的应用

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摘要

Natural ester insulation (NEI) oils have been developed since the early 1990s due to the increasing environmental, health and safety concerns from the public. NEI oils are well-known for having high fire and flash points, great moisture tolerance, good biodegradability and non-toxicity. However, NEI oils also have several drawbacks compared to mineral insulation (MI) oils such as low oxidative stability, high viscosity, low pour point and low resistance towards lightning impulse. Previous researchers have discovered that the oxidative stability of NEI oils can be improved by the addition of mixed antioxidants. However, such studies are focused on only one criterion and they neglect the dielectric strength of the oils. On the other hand, the one-factor-at-a-time (OFAT) method is commonly used to determine the optimum concentration of mixed antioxidants and requires a large number of samples. In this study, response surface methodology (RSM) technique is used to determine the optimum concentration of mixed antioxidants which will enhance the oxidative stability of NEI oil. The dielectric strength of the NEI oil is evaluated based on the AC breakdown voltage (BdV). RSM is chosen in this study because it is capable of determining the optimum values of the parameters of interest, without the need for a large number of test runs which will incur high cost for experimentation. A regression model is developed in this study based on the AC breakdown voltage of the NEI oil, propyl gallate and citric acid antioxidant concentrations. The oxidative induction time (OIT) and partial discharge inception voltage (PDIV) are carried out to determine the effect of the oxidative stability and withstand voltage on the partial discharge, respectively. The results showed that there is enhancement in the oxidative stability and dielectric strength of NEI oil using the optimum concentrations of mixed antioxidants relative to the fresh NEI oil. It can be concluded that RSM is a feasible alternative to determine the optimum concentration of antioxidants for NEI oils, which in turn, helps improve the oxidative stability and dielectric strength of these oils.
机译:自1990年代初以来,由于公众日益关注环境,健康和安全问题,已开发出天然酯绝缘(NEI)油。 NEI油以其高着火点和闪点,高耐湿性,良好的生物降解性和无毒性而闻名。但是,与矿物绝缘(MI)油相比,NEI油还具有一些缺点,例如,低氧化稳定性,高粘度,低倾点和低耐雷电冲击性。以前的研究人员已经发现,通过添加混合抗氧化剂可以改善NEI油的氧化稳定性。但是,此类研究仅集中于一个标准,而忽略了油的介电强度。另一方面,一次使用一个因素(OFAT)方法通常可以确定混合抗氧化剂的最佳浓度,并且需要大量样品。在这项研究中,使用响应面方法(RSM)技术确定混合抗氧化剂的最佳浓度,这将增强NEI油的氧化稳定性。 NEI油的介电强度是基于AC击穿电压(BdV)进行评估的。在本研究中选择RSM是因为它能够确定目标参数的最佳值,而无需进行大量测试,而这会招致高昂的实验成本。本研究基于NEI油的交流击穿电压,没食子酸丙酯和柠檬酸抗氧化剂浓度建立了回归模型。进行氧化诱导时间(OIT)和部分放电起始电压(PDIV)分别确定氧化稳定性和耐受电压对部分放电的影响。结果表明,相对于新鲜NEI油,使用最佳混合抗氧化剂浓度可以增强NEI油的氧化稳定性和介电强度。可以得出结论,RSM是确定NEI油最佳抗氧化剂浓度的可行替代方法,从而有助于提高这些油的氧化稳定性和介电强度。

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  • 作者单位

    Institute of High Voltage & High Current, Faculty of Electrical Engineering, Universiti Teknologi Malaysia, Johor, Malaysia, Faculty of Electrical Engineering, Universiti Teknikal Malaysia Melaka, Hang Tuah Jaya, Melaka, Malaysia;

    School of Electrical and Electronic Engineering, Engineering Campus, Universiti Sains Malaysia, Penang, Malaysia;

    Faculty of Electrical Engineering, Universiti Teknikal Malaysia Melaka, Hang Tuah Jaya, Melaka, Malaysia;

    Institute of High Voltage & High Current, Faculty of Electrical Engineering, Universiti Teknologi Malaysia, Johor, Malaysia;

    Faculty of Manufacturing Engineering, Universiti Teknikal Malaysia Melaka, Hang Tuah Jaya, Melaka, Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Response surface methodology; Oils;

    机译:响应面法;油;

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