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采用响应面法通过酶促动力学拆分法制备对映体纯的1-苯乙醇。

The production of enantiomerically pure 1-phenylethanol by enzymatic kinetic resolution method using response surface methodology.

作者信息

Bozan Ayşe, SongÜr Rahime, MehmetoĞlu Ülkü

机构信息

Department of Chemical Engineering, Faculty of Engineering, Ankara University, Ankara Turkey.

出版信息

Turk J Chem. 2020 Oct 26;44(5):1352-1365. doi: 10.3906/kim-1912-23. eCollection 2020.

Abstract

As the enantiomers of 1-phenylethanol are valuable intermediates in several industries, the lipase catalyzed kinetic resolution of (R,S) -1-phenylethanol is a relevant research topic. In this study, the goal was to determine the optimum reaction parameters to produce enantiomerically pure 1-phenylethanol by lipase (Novozyme 435) catalyzed kinetic resolution using response surface methodology (RSM). Reactions were performed with 40-400 mM (R,S)-1-phenylethanol, 120-1200 mM vinyl acetate and 2-22 mg/mL biocatalyst concentrations (BC ), at 20-60 °C and with a stirring rate of 50-400 rpm for 5-120 min. The samples were analyzed using high performance liquid chromatography (HPLC) with a Chiralcel OB column. Optimum reaction parameters to reach 100% enantiomeric excess for the substrate ( ) were determined as follows: substrate concentration (C ): 240 mM, BC : 11 mg/mL, at 42 °C with a reaction time of 75 min. Model validation was performed using these conditions and was calculated as 100%, which indicates the predicted model was efficient and accurate. When compared to the literature, it was observed that the reaction time decreased significantly. This is an important result considering the industrial scale perspective.

摘要

由于1-苯乙醇的对映体是多个行业中有价值的中间体,脂肪酶催化的(R,S)-1-苯乙醇动力学拆分是一个相关的研究课题。在本研究中,目标是使用响应面法(RSM)确定通过脂肪酶(诺维信435)催化动力学拆分生产对映体纯的1-苯乙醇的最佳反应参数。反应在40 - 400 mM(R,S)-1-苯乙醇、120 - 1200 mM乙酸乙烯酯和2 - 22 mg/mL生物催化剂浓度(BC)下进行,温度为20 - 60°C,搅拌速率为50 - 400 rpm,反应5 - 120分钟。使用配备Chiralcel OB柱的高效液相色谱(HPLC)分析样品。达到底物100%对映体过量( )的最佳反应参数确定如下:底物浓度(C ):240 mM,BC :11 mg/mL,在42°C下反应时间为75分钟。使用这些条件进行模型验证,计算得出 为100%,这表明预测模型是有效且准确的。与文献相比,观察到反应时间显著缩短。从工业规模的角度来看,这是一个重要的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee8b/7751928/78fd2c97e9cf/turkjchem-44-1352-fig001.jpg

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