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Biorefining of Eruca sativa plant for efficient biofuel production

机译:Eruca Sativa植物的生物化,高效生物燃料生产

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摘要

Biomass biorefining can improve the economy of biofuel production through synthesizing multiple value-added products and minimizing waste production. In this study, Eruca sativa was evaluated as a biorefining feedstock. High free fatty acid oil was first pretreated through an esterification process and then applied to an alkaline transesterification reaction for biodiesel production. The effects of the operating conditions were studied to maximize the biodiesel production yield. Sodium hydroxide pretreatment was employed to improve biogas and ethanol production from the plant residues. The pretreatment at 100 °C for 60 min represented the most promising potential for ethanol production, resulting in over 215% improvement in the yield. The pretreatment at 0 °C was more successful than the pretreatment at 100 °C for the biogas production; however, the results were not universal. Even though in the case of the straw, the pretreatment for 60 min increased the methane production by 233% compared to untreated straw, it showed a negative effect on the anaerobic digestion of the seed cake. At the best conditions, 1 kg of Eruca sativa yielded 140 g biodiesel, 16.8 g glycerol, 76.2 g ethanol from the pretreated straw, and 60.0 L (39.3 g) methane from the untreated seed cake.
机译:生物质生物测量通过合成多重增值产品和最小化废物生产,可以改善生物燃料的经济性。在本研究中,Eruca Sativa被评估为生物化原料。首先通过酯化方法预处理高热脂肪酸油,然后施加到生物柴油生产中的碱性酯交换反应。研究了操作条件的影响,以最大限度地提高生物柴油产量。使用氢氧化钠预处理,从植物残留物中改善沼气和乙醇生产。在100℃下进行60分钟的预处理代表了最有希望的乙醇产量的潜力,导致产率超过215%。在0℃的预处理比100℃的预处理更成功,用于沼气生产;但是,结果并不普遍。尽管在吸管的情况下,与未经处理的吸管相比,60分钟的预处理将甲烷产量增加233%,对种子饼的厌氧消化表现出负面影响。在最佳条件下,1公斤的Eruca Sativa产生140g生物柴油,16.8g甘油,从预处理的吸管,76.2g乙醇,来自未处理的种子饼的60.0L(39.3g)甲烷。

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