Amran Nurul Aini, Bello Usman, Hazwan Ruslan Muhammad Syafiq
Chemical Engineering Department, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Malaysia.
HICoE-Centre for Biofuel and Biochemical Research (CBBR), Universiti Teknologi PETRONAS, Seri Iskandar 32610, Malaysia.
Heliyon. 2022 Jul 3;8(7):e09846. doi: 10.1016/j.heliyon.2022.e09846. eCollection 2022 Jul.
Global competitiveness thrives on meeting energy demand, and the need to counter the effects of environmental threads dispatched by the combustion of fossil fuels became the driving forces that upended the renewed commitment and growing interest in renewables. Alternatively, green energy provides a twofold solution to energy and environmental crisis in a sustainable, economically viable, and eco-friendly manner. However, energy from biomass, especially biodiesel is considered an attractive substitute for mineral diesel, with the proficiency of meeting future energy demand. Inevitably, biodiesel exhibits poor cold flow properties leading to plugging and gumming of filters, whereas oxidation stability results in sediments and gum formation. These effects present a legitimate concern to producers and the automotive sector. Many reviews on the use of antioxidants to improve biodiesel's cold flow and oxidative stability flooded the literature independently. Yet, a review encompassing the factors inducing biodiesel's poor cold flow, oxidation stability, their effects on engine performance, and the inhibitory role of antioxidants appears vacant. Hence, this paper put together the above-stated aspects, with the first part discussing the factors initializing and accelerating oxidation, the mechanism of oxidation, and biodiesel cold flow were subsequently discussed. Next, the inhibitory functions of antioxidants on biodiesel's oxidation stability and poor cold flow were also explained. Finally, this review reflects on the research trends and sustainability prospects of using antioxidants for improving biodiesel's poor flow and oxidative stability without hindrance to the engine system.
全球竞争力依赖于满足能源需求,而应对化石燃料燃烧所带来的环境威胁的需求,成为了颠覆对可再生能源重新承诺和日益增长兴趣的驱动力。另一方面,绿色能源以可持续、经济可行且环保的方式为能源和环境危机提供了双重解决方案。然而,生物质能,尤其是生物柴油,被认为是矿物柴油的一种有吸引力的替代品,具备满足未来能源需求的能力。不可避免的是,生物柴油表现出较差的低温流动性能,导致过滤器堵塞和结胶,而氧化稳定性则会导致沉积物和胶质形成。这些影响引起了生产商和汽车行业的合理关注。关于使用抗氧化剂来改善生物柴油低温流动和氧化稳定性的众多综述独立充斥于文献之中。然而,一篇涵盖导致生物柴油低温流动差、氧化稳定性差的因素、它们对发动机性能的影响以及抗氧化剂的抑制作用的综述似乎尚属空白。因此,本文综合了上述各方面内容,第一部分讨论引发和加速氧化的因素、氧化机理,随后讨论生物柴油的低温流动。接下来,还解释了抗氧化剂对生物柴油氧化稳定性和低温流动差的抑制作用。最后,本综述思考了使用抗氧化剂改善生物柴油流动差和氧化稳定性而不阻碍发动机系统的研究趋势和可持续发展前景。