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Enzymatic transesterification for biodiesel production from waste baked duck oil

机译:酶促酯交换反应从废烤鸭油生产生物柴油

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The activity behavior of Novozym 435 treated with organic solvents was investigated, and the influence of several crucial parameters, including Novozym 435 dosage, oil to methanol molar ratio, reaction time and type of monohydric alcohol, on biodiesel yield was also addressed using tert-butanol as co-solvent. The results showed that the functional group as well as log P of organic solvents was an important factor affecting the activity of Novozym 435. Biodiesel yield achieved over 90 % under the conditions: Novozym 435 dosage 15 wt% (based on oil weight), oil to methanol molar ratio 1∶4, reaction time 20 h and tert-butanol amount 40 % (based on oil volume, v/v). Novozym 435 showed a different kinetic pattern depending on the monohydric alcohols and the highest conversion rate (92 %) achieved for the isopropanolysis. Novozym 435 showed high stability in tert-butanol medium, and maintained 90 % of its original activity after 30 repeated cycles (600 h).
机译:研究了有机溶剂处理的Novozym 435的活性行为,并使用叔丁醇解决了几种关键参数,包括Novozym 435剂量,油至甲醇摩尔比,反应时间和一元醇的类型的单次醇作为共溶剂。结果表明,有机溶剂的官能团以及Log P是影响Novozym 435活性的重要因素。在条件下,生物柴油产率超过90%:Novozym 435剂量15wt%(基于油量),油对于甲醇摩尔比1:4,反应时间20小时和叔丁醇量40%(基于油量,v / v)。 Novozym 435根据一元醇显示出不同的动力学图案,以及对异丙醇溶解的最高转化率(92%)。 Novozym 435在叔丁醇培养基中显示出高稳定性,并在30个重复循环(600小时)后保持其原始活性的90%。

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