Wang_2016_Process.Biochemistry_51_1496

Reference

Title : Improved deacidification of high-acid rice bran oil by enzymatic esterification with phytosterol - Wang_2016_Process.Biochemistry_51_1496
Author(s) : Wang X , Lu J , Liu H , Jin Q
Ref : Process Biochemistry , 51 :1496 , 2016
Abstract :

A sustainable method for enzymatic deacidification of high-acid rice bran oil (HRBO) by enzymatic esterification between free fatty acids (FFA) of HRBO and phytosterol is described in this study. The deacidification conditions were optimized to minimize the FFA of HRBO. Under optimal conditions, the FFA content in HRBO reduced from 15.8% to 1.2% (w/w), whereas the phytosterol ester content increased from 0% to 29.3% (w/w). Subsequently, studies on the oxidation stability of deacidified rice bran oil (RBO) indicated that most of the vitamin E was retained in deacidified oil and that the oxidation stability under storage conditions increased after lipase-catalyzed esterification due to the formation of phytosterol ester in the product. Compared to previous methods using glycerol or monoacylglycerol (MAG) as acyl acceptors to reduce the FFA content of HRBO, an improved route was used to deacidify the FFA and produce RBO rich in phytosterol ester with phytosterol as the acyl acceptor. The enzymatic route is greener and more sustainable than traditional deacidification processes.

PubMedSearch : Wang_2016_Process.Biochemistry_51_1496
PubMedID:
Gene_locus related to this paper: canar-LipB , humla-1lipa , rhimi-lipas

Related information

Gene_locus canar-LipB    humla-1lipa    rhimi-lipas

Citations formats

Wang X, Lu J, Liu H, Jin Q (2016)
Improved deacidification of high-acid rice bran oil by enzymatic esterification with phytosterol
Process Biochemistry 51 :1496

Wang X, Lu J, Liu H, Jin Q (2016)
Process Biochemistry 51 :1496