Kanprakobkit Winranath, Kielarova Somlak Wannarumon, Wichai Uthai, Bunyapraphatsara Nuntawan, Kielar Filip
Department of Chemistry and Center of Excellence in Biomaterials, Faculty of Science, Naresuan University.
Department of Industrial Engineering, Faculty of Engineering, Naresuan University.
J Oleo Sci. 2023 Jan 7;72(1):87-97. doi: 10.5650/jos.ess22269. Epub 2022 Dec 12.
The fatty acid composition of coconut oil was modified using enzyme catalyzed interesterification with the aim of obtaining a product more alike to commercial MCT oils. This modification was carried out with the aim to obtain a product with some of the health benefits shown by MCT oils. Initially, lipase B from Candida antarctica immobilized on acrylic resin and lipozyme TL IM were tested as enzyme catalysts for the reaction. The enzyme catalysts have shown similar performance and lipozyme TL IM has been chosen as the catalyst based on its lower cost. The effects of reaction time, oil to methyl octanoate ratio, and enzyme loading on the reaction performance have been investigated with response surface methodology (RSM) utilizing the Box-Behnken approach. The optimized reaction was scaled up to 20 g. The possibility to source the medium chain fatty acid esters from coconut oil fatty acid distillate using a simple procedure was demonstrated and the possibility to use these esters for the interesterification of coconut oil has been demonstrated as well.
采用酶催化酯交换反应对椰子油的脂肪酸组成进行改性,目的是获得一种更类似于市售中链甘油三酯(MCT)油的产品。进行这种改性是为了获得一种具有MCT油所显示的一些健康益处的产品。最初,测试了固定在丙烯酸树脂上的南极假丝酵母脂肪酶B和Lipozyme TL IM作为该反应的酶催化剂。这些酶催化剂表现出相似的性能,基于其较低的成本,选择了Lipozyme TL IM作为催化剂。利用Box-Behnken方法的响应面法(RSM)研究了反应时间、油与辛酸甲酯的比例以及酶负载量对反应性能的影响。将优化后的反应扩大到20克规模。证明了使用简单程序从椰子油脂肪酸馏出物中获取中链脂肪酸酯的可能性,也证明了将这些酯用于椰子油酯交换反应的可能性。