Sánchez Daniel Alberto, Tonetto Gabriela Marta, Ferreira María Luján
Planta Piloto de Ingeniería Química (PLAPIQUI), Universidad Nacional del Sur, CONICET, Camino La Carrindanga Km 7, CC 717, 8000 Bahía Blanca, Argentina.
Planta Piloto de Ingeniería Química (PLAPIQUI), Universidad Nacional del Sur, CONICET, Camino La Carrindanga Km 7, CC 717, 8000 Bahía Blanca, Argentina.
J Biotechnol. 2016 Feb 20;220:92-9. doi: 10.1016/j.jbiotec.2016.01.001. Epub 2016 Jan 12.
In this work, the ethanolysis of triglycerides catalyzed by immobilized lipase was studied, focusing on the secondary reaction of acyl migration. The catalytic tests were performed in a solvent-free reaction medium using Novozym 435 as biocatalyst. The selected experimental variables were biocatalyst loading (5-20mg), reaction time (30-90min), and chain length of the fatty acids in triglycerides with and without unsaturation (short (triacetin), medium (tricaprylin) and long (tripalmitin/triolein)). The formation of 2-monoglyceride by ethanolysis of triglycerides was favored by long reaction times and large biocatalyst loading with saturated short- to medium-chain triglycerides. In the case of long-chain triglycerides, the formation of this monoglyceride was widely limited by acyl migration. In turn, acyl migration increased the yield of ethyl esters and minimized the content of monoglycerides and diglycerides. Thus, the enzymatic synthesis of biodiesel was favored by long-chain triglycerides (which favor the acyl migration), long reaction times and large biocatalyst loading. The conversion of acylglycerides made from long-chain fatty acids with unsaturation was relatively low due to limitations in their access to the active site of the lipase.
在这项工作中,研究了固定化脂肪酶催化甘油三酯的乙醇解反应,重点关注酰基迁移的副反应。催化试验在无溶剂反应介质中进行,使用诺维信435作为生物催化剂。选定的实验变量包括生物催化剂负载量(5 - 20mg)、反应时间(30 - 90分钟)以及甘油三酯中脂肪酸的链长(有或无不饱和度,短链(三醋精)、中链(三辛酸甘油酯)和长链(三棕榈酸甘油酯/三油酸甘油酯))。对于饱和的短链至中链甘油三酯,长时间反应和大量生物催化剂负载有利于甘油三酯乙醇解生成2 - 单甘油酯。对于长链甘油三酯,这种单甘油酯的生成受到酰基迁移的广泛限制。反过来,酰基迁移提高了乙酯的产率,并使单甘油酯和二甘油酯的含量降至最低。因此,长链甘油三酯(有利于酰基迁移)、长时间反应和大量生物催化剂负载有利于生物柴油的酶法合成。由具有不饱和度的长链脂肪酸制成的酰基甘油的转化率相对较低,这是由于它们接近脂肪酶活性位点受到限制。