废食用油生产生物燃料及其与石油柴油的理化性质比较

Ganesh Lamichhane, S. Khadka, S. Adhikari, Niranjan Koirala, Dhruba Prasad Poudyal
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引用次数: 9

摘要

随意开采和消耗化石燃料减少了石油储量,造成化石燃料枯竭和环境退化;因此,反映了需要更便宜、可再生和环保的替代石油来源来满足燃料需求。数百万升用于烹饪食物的食用油和来自油脂制造商的过期油被丢弃到污水中。本研究主要是研究利用这些废油生产生物柴油的可行性。本研究以废食用油为原料,以氢氧化钠为催化剂,通过酯交换反应制备生物柴油。结果表明,废食用油经酯交换反应可得甲酯(生物柴油)(92.67±0.90%)、肥皂原料(1.33±0.224%)和甘油(6±0.68%)。对生物柴油的密度、粘度、挥发性、表面张力和闪点等理化性能进行了分析,结果表明:生物柴油的理化性能分别为0.862±0.006 g/cm3、2.23±0.021 cP、0.327×10-3±4.5×10-6 g/s、32.03±0.138达因/cm、169.67±0.810℃。这些特性与商用柴油以及美国材料试验协会(ASTM) D6751规定的值进行了比较。生物柴油的密度和表面张力与石油柴油相似,但其挥发性比石油柴油低3倍。生物柴油的傅里叶红外光谱(FTIR)在1436 cm-1处显示出甲酯官能团。根据生产所用材料的成本,生物柴油的成本估计约为每升81尼泊尔卢比(0.67美元)。生物柴油的性能也符合ASTM D6751的标准值。这些结果表明,废油是可行的生物柴油来源之一,可以作为石油柴油的合适替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biofuel Production from Waste Cooking Oils and its Physicochemical Properties in Comparison to Petrodiesel
Haphazard mining and consumption of fossil fuels have reduced petroleum reserves causing fossil fuel depletion and environmental degradation; thus, reflecting the need of the cheaper, renewable and eco-friendly alternative source of petroleum to meet the fuel demand. Million liters of edible oil used for cooking foods and date expired oils from oil manufacturers are discarded into sewage. This study primarily intends to study the feasibility of biodiesel production using such waste oils. In this work, biodiesel was prepared from waste cooking oils by a process called transesterification with NaOH as a catalyst. Our results showed that methyl ester (biodiesel) (92.67±0.90%), soap materials (1.33±0.224%) and glycerol (6±0.68%) were obtained after the transesterification of waste cooking oil. The physicochemical properties of biodiesel such as density, viscosity, volatility, surface tension and flashpoint were analyzed, which were found to be 0.862±0.006 g/cm3, 2.23±0.021 cP, 0.327×10-3±4.5×10-6 g/s, 32.03±0.138 dyne/cm, 169.67±0.810°C, respectively. These properties were compared with that of commercial diesel as well as with the values specified by the American Society for Testing and Materials (ASTM) D6751. The density and the surface tension of the biodiesel were found similar to that of petrodiesel but its volatility was 3 times lower. Fourier-transform infrared spectroscopy (FTIR) spectra of the biodiesel showed methyl ester functional group at 1436 cm-1. Based on the cost of the materials used for production, the cost of biodiesel was estimated to be about 81 Nepalese rupees (0.67 USD) per liter. The properties of biodiesel also met the standard values of ASTM D6751. These findings indicate that waste oil is one of the feasible biodiesel sources and it can be used as a suitable alternative to petrodiesel.
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