首页> 外文期刊>International journal of green energy >Biodiesel From Moroccan Waste Frying Oil: The Optimization of Transesterification Parameters Impact of Biodiesel on the Petrodiesel Lubricity and Combustion
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Biodiesel From Moroccan Waste Frying Oil: The Optimization of Transesterification Parameters Impact of Biodiesel on the Petrodiesel Lubricity and Combustion

机译:摩洛哥废煎炸油中的生物柴油:优化酯交换参数对生物柴油对石油柴油润滑性和燃烧的影响

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The transesterification reaction of Moroccan waste frying oil (WFO) by methanol, using sodium hydroxide and potassium hydroxide as homogeneous catalysts, was studied. The waste oil was recovered from Moroccan popular restaurants after repeated deep-frying of spiced fishes. The effects of methanol/oil molar ratio (5: 1-12: 1), catalyst concentration (0.5-2 wt%), reaction temperature (30-65 degrees C), and type of catalyst were investigated. The extent of the transesterification reaction was followed by gas chromatography (GC) and H-1-NMR spectroscopy, determining the concentration of methyl esters at different reaction times and triglyceride conversion respectively. The optimal reaction conditions for the transesterification of WFO were found at the reaction temperature of 65 degrees C, reaction time of 60 min, molar ratio of methanol to oil equal to 7: 1, and in presence of NaOH as catalyst. The corresponding maximum ester yields were 93.5 wt% for the studied WFO. The lubricity test showed that 1 vol% of biodiesel in petrodiesel leads to the value fixed by the European regulation, namely 460 mu m. The optimized conditions were used to produce biodiesel at small scale. The resulting product was tested in a diesel electricity generator engine, which operated in real conditions. The results showed that biodiesel combustion leads to a higher concentration of CO and a decrease in NOx emission as compared with a petrodiesel-fuelled engine. An optimization of the operating parameters of the engine would guarantee lower CO emissions in conformity with literature and regulations.
机译:以氢氧化钠和氢氧化钾为均相催化剂,研究了摩洛哥废煎炸油(WFO)与甲醇的酯交换反应。反复油炸五香鱼后,从摩洛哥受欢迎的餐馆中回收了废油。研究了甲醇/油摩尔比(5:1-12:1),催化剂浓度(0.5-2 wt%),反应温度(30-65℃)和催化剂类型的影响。酯交换反应的程度由气相色谱法(GC)和H-1-NMR光谱法确定,分别确定在不同反应时间和三酸甘油酯转化率下甲酯的浓度。在65℃的反应温度,60分钟的反应时间,甲醇与油的摩尔比等于7:1以及存在NaOH作为催化剂的条件下,发现了WFO酯交换的最佳反应条件。对于所研究的WFO,相应的最大酯产率为93.5重量%。润滑性测试表明,石油柴油中1%(体积)的生物柴油导致欧洲法规确定的值,即460微米。优化的条件用于小规模生产生物柴油。所得产品在柴油发电机发动机中进行了测试,该发动机在实际条件下运行。结果表明,与汽油柴油发动机相比,生物柴油燃烧导致CO浓度更高,NOx排放降低。发动机工作参数的优化将保证符合文献和法规的较低的CO排放量。

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