Ong Ai Lien, Kamaruddin Azlina Harun, Bhatia Subhash, Aboul-Enein Hassan Y
School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, Penang, Malaysia.
J Sep Sci. 2008 Jul;31(13):2476-85. doi: 10.1002/jssc.200800086.
An enzymatic membrane reactor (EMR) for enantioseparation of (R,S)-ketoprofen via Candida antarctica lipase B (CALB) as biocatalyst was investigated. A comparative study of free and immobilized CALB was further conducted. The catalytic behaviour of CALB in an EMR was affected by the process parameters of enzyme load, substrate concentration, substrate molar ratio, lipase solution pH, reaction temperature, and substrate flow rate. Immobilization of CALB in the EMR was able to reduce the amount of enzyme required for the enantioseparation of (R,S)-ketoprofen. Immobilized CALB in the EMR assured higher reaction capacity, better thermal stability, and reusability. It was also found to be more cost effective and practical than free CALB in a batch reactor.
研究了一种以南极假丝酵母脂肪酶B(CALB)作为生物催化剂对(R,S)-酮洛芬进行对映体分离的酶膜反应器(EMR)。进一步对游离CALB和固定化CALB进行了对比研究。CALB在EMR中的催化行为受到酶负载量、底物浓度、底物摩尔比、脂肪酶溶液pH值、反应温度和底物流速等工艺参数的影响。在EMR中固定化CALB能够减少(R,S)-酮洛芬对映体分离所需的酶量。EMR中固定化CALB具有更高的反应能力、更好的热稳定性和可重复使用性。还发现它比间歇反应器中的游离CALB更具成本效益和实用性。