脂肪酶
催化作用
生物催化
化学
水解
有机化学
酶
基质(水族馆)
精细化工
反应条件
生物燃料
动力学
酶催化
生化工程
生物化学
生物转化
化学动力学
化学反应
底物特异性
化工产品
化学合成
分布(数学)
细菌
酶动力学
反应机理
作者
Panagiota‐Yiolanda Stergiou,Athanasios Foukis,Michalis Filippou,Maria Koukouritaki,Maria Parapouli,Leonidas G. Theodorou,Efstathios Hatziloukas,Amalia S. Afendra,Ashok Pandey,Emmanuel M. Papamichael
标识
DOI:10.1016/j.biotechadv.2013.08.006
摘要
Lipase-catalyzed esterification reactions are among the most significant chemical and biochemical processes of industrial relevance. Lipases catalyze hydrolysis as well as esterification reactions. Enzyme-catalyzed esterification has acquired increasing attention in many applications, due to the significance of the derived products. More specifically, the lipase-catalyzed esterification reactions attracted research interest during the past decade, due to an increased use of organic esters in biotechnology and the chemical industry. Lipases, as hydrolyzing agents are active in environments, which contain a minimum of two distinct phases, where all reactants are partitioned between these phases, although their distribution is not fixed and changes as the reaction proceeds. The kinetics of the lipase-catalyzed reactions is governed by a number of factors. This article presents a thorough and descriptive evaluation of the applied trends and perspectives concerning the enzymatic esterification, mainly for biofuel production; an emphasis is given on essential factors, which affect the lipase-catalyzed esterification reaction. Moreover, the art of using bacterial and/or fungal strains for whole cell biocatalysis purposes, as well as carrying out catalysis by various forms of purified lipases from bacterial and fungal sources is also reviewed.
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