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Distaff Thistle Oil: A Possible New Non-Edible Feedstock for Bioenergy

机译:Distaff蓟油:一种可能用于生物能源的新型非食用原料

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The present work examines the production of biodiesel from distaff thistle (Carthamus lanatus L.) using alkali catalyzed transesterification. The low acid value (0.14 mg KOH/g) and free fatty acid (FFA) contents (2.81%) of distaff thistle oil (DTO) determined prior to transesterification indicated that the pretreatment of raw oil with acid is not required for biodiesel synthesis. The optimum operating reaction conditions of methanol to oil molar ratio (5: 1), catalyst concentration (0.64%) and temperature (60 degrees C) were applied during the transesterification to obtain the highest biodiesel yield of 97%. We have determined various fuel properties of distaff thistle oil biodiesel (DTOB) including kinematic viscosity (5.85@ 40 degrees C c St), acid value (0.14 mg KOH/g), density (0.8980@ 40 degrees C Kg/L), cetane number (50), flash point (126 degrees C), cloud point (10 degrees C), pour point (15 degrees C) and distillation characteristics (358 @ 90% recovery degrees C). The values of fuel properties were found to be comparable with mineral diesel and in agreements with ASTM biodiesel standards. In addition to this, the synthesized fatty acid methyl esters (FAMEs) were confirmed and characterized by Gas chromatography-Mass spectroscopy (GC-MS), Fourier transform-Infra red (FT-IR), H-1 NMR (Nuclear magnetic resonance) and C-13 NMR analyses. Our results conclude that DTO appears to be an acceptable new non-edible oil feedstock for biodiesel industry.
机译:目前的工作检查了使用碱催化的酯交换反应从水飞蓟(Carthamus lanatus L.)生产生物柴油。在酯交换反应之前测定的叶dist蓟油(DTO)的低酸值(0.14 mg KOH / g)和游离脂肪酸(FFA)含量(2.81%)表明,生物柴油合成不需要用酸对粗油进行预处理。在酯交换过程中采用了甲醇与油的摩尔比(5:1),催化剂浓度(0.64%)和温度(60摄氏度)的最佳操作反应条件,以获得97%的最高生物柴油收率。我们已经确定了dist蓟油生物柴油(DTOB)的各种燃料特性,包括运动粘度(5.85 @ 40℃c St),酸值(0.14 mg KOH / g),密度(0.8980 @ 40℃Kg / L),十六烷值数(50),闪点(126摄氏度),浊点(10摄氏度),倾点(15摄氏度)和蒸馏特性(358 @ 90%回收摄氏度)。发现燃料特性的值与矿物柴油相当,并且符合ASTM生物柴油标准。除此之外,还通过气相色谱-质谱(GC-MS),傅立叶变换-红外光谱(FT-IR),H-1 NMR(核磁共振)对合成的脂肪酸甲酯(FAME)进行了确认和表征。和C-13 NMR分析。我们的结果得出结论,DTO似乎是生物柴油行业可接受的新型非食用油原料。

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