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Continuous production of structured phospholipids in a packed bed reactor with lipase from Thermomyces lanuginosa
Authors:Anders?Falk?Vikbjerg  author-information"  >  author-information__contact u-icon-before"  >  mailto:afv@biocentrum.dtu.dk"   title="  afv@biocentrum.dtu.dk"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author,Lifeng?Peng,Huiling?Mu,Xuebing?Xu
Affiliation:(1) DTU, Technical University of Denmark, Building 221, DK-2800 Kgs. Lyngby, Denmark;(2) Department of Chemistry, Hebei Normal University, 050016 Shijiazhuang, People's Republic of China
Abstract:The possibilities of producing structured phospholipids between soybean phospholipids and caprylic acid by lipase-catalyzed acidolysis were examined in continuous packedbed enzyme reactors. Acidolysis reactions were performed in both a solvent system and a solvent-free system with the commercially immobilized lipase from Thermomyces lanuginosa (Lipozyme TL IM) as catalyst. In the packed bed reactors, different parameters for the lipase-catalyzed acidolysis were elucidated, such as solvent ratio (solvent system), temperature, substrate ratio, residence time, water content, and operation stability. The water content was observed to be very crucial for the acidolysis reaction in packed bed reactors. If no water was added to the substrate during reactions under the solvent-free system, very low incorporation corporation of caprylic acid was observed. In both solvent and solvent-free systems, acyl incorporation was favored by a high substrate ratio between acyl donor and phospholipids, a longer residence time, and a higher reaction temperature. Under certain conditions, the incorporation of around 30% caprylic acid can be obtained in continuous operation with hexane as the solvent. Presented at the 95th American Oil Chemists' Society Annual Meeting and Expo in Cincinnati, Ohio, May 10, 2004.
Keywords:Enzyme bed reactor  lipase-catalyzed acidolysis  Lipozyme TL IM  structured phospholipids   Thermomyces lanuginosa
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