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Enzymatic catalysis: An environmentally friendly method to enhance the transesterification of microalgal oil with fusel oil for production of fatty acid esters with potential application as biolubricants

机译:酶促催化:一种环保方法,可增强微藻油与富含脂肪酸的酯化,用于生产含有潜在应用作为生物润滑剂的脂肪酸酯

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This work aimed at the enzymatic synthesis of fatty acid esters with potential application as biolubricants from microalgae oil and fusel oil using Burkholderia cepacia lipase immobilized on Nb2O5 . The lipid-bearing Dunaliella salina biomass was grown in bubble column photobioreactors, yielding 100 g of biomass and 20 g of oil containing high content of saturated (37.8%) and monounsaturated fatty acids (41.2%) and a low content of polyunsaturated fatty acids (20.9%). The reaction assays were carried out in 50 mL glass reactor containing 10 g of medium composed by microbial oil and fusel oil components (ethyl, butyl, or isoamyl alcohols) and fusel oil as acyl acceptors at a fixed molar ratio of 1:8 (oil to alcohol) using iso-octane as solvent. Batch runs were performed at 45 degrees C under constant magnetic stirring (150 rpm) for a maximum of 120 h. Macaw palm oil was used as a control under the same reaction conditions. The biocatalyst was found to be efficient in converting the microalgal oil fatty acids into their corresponding alkyl esters attained yields ranging from 70.8 to 89.0% at 120 h reaction, depending on size of the alcohol chain. The kinematic viscosities of the esters produced confirmed the high transesterification yields, considering the viscosity of microalgae oil decreased from 60.1 to a range of 8.9-11.3 m(2) s(-1) (40 degrees C) after the enzymatic modification.
机译:这项工作旨在酶促合成脂肪酸酯,其潜在应用作为来自微藻油和熔丝油的生物润滑剂,使用伯克德利葡萄酒脂肪酶固定在NB2O5上。含脂质的Dunaliella Salina生物量在气泡柱光生物生物反应器中生长,得到100g生物量和20g含有高含量的饱和(37.8%)和单不饱和脂肪酸(41.2%)和低含量的多不饱和脂肪酸( 20.9%)。在50ml玻璃反应器中在含有10g介质由微生物油和氟醚油组分(乙基,丁基或异烷基醇)和熔融摩尔的摩尔丝油的玻璃反应器中进行,以固定摩尔比为1:8(油用异辛烷作为溶剂的醇。批量运行在45摄氏度下在恒定的磁力搅拌(150rpm)下进行,最大为120小时。在相同的反应条件下使用金刚鹦鹉棕榈油作为对照。发现生物催化剂有效地将微藻油脂酸转化为在其相应的烷基酯在120h至89.0%的相应烷基酯,这取决于酒精链的尺寸。考虑到酶促改性后,所生产的酯的运动粘度证实了高酯交换产率,考虑到微藻油的粘度从60.1降至8.9-11.3m(2)(40℃)的范围。

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