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Production of MAG of CLA in a solvent-free system at low temperature with Candida rugosa lipase
Authors:Yomi?Watanabe,Yoshie?Yamauchi-Sato,Toshihiro?Nagao,Takaya?Yamamoto,Kentaro?Tsutsumi,Akio?Sugihara,Yuji?Shimada  author-information"  >  author-information__contact u-icon-before"  >  mailto:shimaday@omtri.city.osaka.jp"   title="  shimaday@omtri.city.osaka.jp"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author
Affiliation:(1) Rinoru Oil Mills Co. Ltd., 103-0027 Tokyo, Japan;(2) Faculty of Engineering, Tokushima Bunri University, 769-2101 Kagawa, Japan;(3) Osaka Municipal Technical Research Institute, 1-6-50 Morinomiya, Joto-ku, 536-8553 Osaka, Japan
Abstract:We attempted to produce MAG of CLA through lipase-catalyzed esterification of a FFA mixture containing CLA (referred to as FFA-CLA) with glycerol. Screening of lipases showed that MAG-CLA was produced efficiently at 5°C with Penicillium camembertii, Rhizopus oryzae, and Candida rugosa lipases. Among them, C. rugosa lipase was selected because the lipase is widely used as a catalyst for oils and fats processing. The reaction was conducted with agitation of a 300-g mixture of FFA-CLA/glycerol (1∶5, mol/mol), a 200-U/g mixture of C. rugosa lipase, and 2% water. When the reaction was conducted at 30°C, the esterification scarcely proceeded, owing to inhibition of the reaction by glycerol. But the reaction at 5°C eliminated the inhibition and produced MAG efficiently: The degree of esterification reached 93.8% after 58 h, and MAG content in the reaction mixture was 88.4 wt%. To reduce the reaction time, the reactor was connected with a vacuum pump after 24 h, and the reaction was continued with dehydration at 5 mm Hg. The degree of esterification reached 94.7% after 24 h of dehydration (48 h in total), and MAG content increased to 93.0 wt%. Candida rugosa lipase acted a little more strongly on cis-9, trans-11 CLA than on trans-10,cis-12 CLA, but the contents of the two isomers in MAG obtained from a 48-h reaction were the same as the contents in FFA-CLA.
Keywords:Candida rugosa   CLA  esterification  lipase  low-temperature reaction  MAG
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