Vadgama Rajeshkumar N, Odaneth Annamma A, Lali Arvind M
DBT-ICT Centre for Energy Biosciences, Institute of Chemical Technology, Nathalal Parikh Marg, Matunga (E), Mumbai 400019, India.
Biotechnol Rep (Amst). 2015 Oct 17;8:105-109. doi: 10.1016/j.btre.2015.10.005. eCollection 2015 Dec.
Isopropyl myristate is a useful functional molecule responding to the requirements of numerous fields of application in cosmetic, pharmaceutical and food industry. In the present work, lipase-catalyzed production of isopropyl myristate by esterification of myristic acid with isopropyl alcohol (molar ratio of 1:15) in the homogenous reaction medium was performed on a bench-scale packed bed reactors, in order to obtain suitable reaction performance data for upscaling. An immobilized lipase B from was used as the biocatalyst based on our previous study. The process intensification resulted in a clean and green synthesis process comprising a series of packed bed reactors of immobilized enzyme and water dehydrant. In addition, use of the single phase reaction system facilitates efficient recovery of the product with no effluent generated and recyclability of unreacted substrates. The single phase reaction system coupled with a continuous operating bioreactor ensures a stable operational life for the enzyme.
肉豆蔻酸异丙酯是一种有用的功能分子,能满足化妆品、制药和食品工业众多应用领域的需求。在本工作中,在实验室规模的填充床反应器中,以肉豆蔻酸与异丙醇(摩尔比1:15)在均相反应介质中通过酯化反应制备肉豆蔻酸异丙酯,以便获得适合放大生产的反应性能数据。基于我们之前的研究,使用了来自[具体来源未给出]的固定化脂肪酶B作为生物催化剂。该过程强化产生了一个清洁且绿色的合成过程,包括一系列固定化酶和脱水剂的填充床反应器。此外,单相反应系统有助于高效回收产物,不产生废水,且未反应底物可循环利用。单相反应系统与连续运行的生物反应器相结合,确保了酶的稳定使用寿命。