Continuous Hydrolysis and Liquid-Liquid Phase Separation of an Active Pharmaceutical Ingredient Intermediate Using a Miniscale Hydrophobic Membrane Separator

被引:57
作者
Cervera-Padrell, Albert E. [1 ]
Morthensen, Sofie T. [1 ]
Lewandowski, Daniel J. [1 ]
Skovby, Tommy [2 ]
Kiil, Soren [1 ]
Gernaey, Krist V. [1 ]
机构
[1] Tech Univ Denmark, Dept Chem & Biochem Engn, DK-2800 Lyngby, Denmark
[2] H Lundbeck & Co AS, Chem Prod Dev, DK-4500 Nykoebing Sj, Denmark
关键词
EXTRACTION; FLOW; REACTOR; MICROCHANNELS; MICROREACTORS; DESIGN;
D O I
10.1021/op200242s
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Continuous hydrolysis of an active pharmaceutical ingredient intermediate, and subsequent liquid liquid (L-L) separation of the resulting organic and aqueous phases, have been achieved using a simple PTFE tube reactor connected to a miniscale hydrophobic membrane separator. An alkoxide product, obtained in continuous mode by a Grignard reaction in THF, reacted with acidic water to produce partially miscible organic and aqueous phases containing Mg salts. Despite the partial THF-water miscibility, the two phases could be separated at total flow rates up to 40 mL/min at different flow ratios, using a PTFE membrane with 28 cm(2) of active area. A less challenging separation of water and toluene was achieved at total flow rates as high as 80 mL/min, with potential to achieve even higher flow rates. The operability and flexibility of the membrane separator and a plate coalescer were compared experimentally as well as from a physical viewpoint. Surface tension-driven L-L separation was analyzed in general terms, critically evaluating different designs. It was shown that microporous membrane L-L separation can offer very large operating windows compared to other separation devices thanks to a high capillary pressure (Laplace pressure) combined with a large number of pores per unit area offering low pressure drop. The separation device can easily be operated by means of a back-pressure regulator ensuring flow-independent separation efficiency. Simple monitoring and control strategies as well as scaling-up/out approaches are proposed, concluding that membrane-based L-L separation may become a standard unit operation for continuous pharmaceutical manufacturing.
引用
收藏
页码:888 / 900
页数:13
相关论文
共 44 条
[31]   Microchannel devices for the coalescence of dispersed droplets produced for use in rapid extraction processes [J].
Okubo, Y ;
Toma, M ;
Ueda, H ;
Maki, T ;
Mae, K .
CHEMICAL ENGINEERING JOURNAL, 2004, 101 (1-3) :39-48
[32]   Liquid-liquid extraction for efficient synthesis and separation by utilizing micro spaces [J].
Okubo, Yoshihito ;
Maki, Taisuke ;
Aoki, Nobuaki ;
Khoo, Teng Hong ;
Ohmukai, Yoshikage ;
Mae, Kazuhiro .
CHEMICAL ENGINEERING SCIENCE, 2008, 63 (16) :4070-4077
[33]   Continuous processing in the pharmaceutical industry - Changing the mind set [J].
Plumb, K .
CHEMICAL ENGINEERING RESEARCH & DESIGN, 2005, 83 (A6) :730-738
[34]   Production of (S)-1-Benzyl-3-diazo-2-oxopropylcarbamic Acid tert-Butyl Ester, a Diazoketone Pharmaceutical Intermediate, Employing a Small Scale Continuous Reactor [J].
Pollet, Pamela ;
Cope, Elizabeth D. ;
Kassner, Michelle K. ;
Charney, Reagan ;
Terett, Stuart H. ;
Richman, Kent W. ;
Dubay, William ;
Stringer, Joy ;
Eckertt, Charles A. ;
Liotta, Charles L. .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2009, 48 (15) :7032-7036
[35]   Microreactor technology: A revolution for the fine chemical and pharmaceutical industries? [J].
Roberge, DM ;
Ducry, L ;
Bieler, N ;
Cretton, P ;
Zimmermann, B .
CHEMICAL ENGINEERING & TECHNOLOGY, 2005, 28 (03) :318-323
[36]   Development of an industrial multi-injection microreactor for fast and exothermic reactions - Part II [J].
Roberge, Dominique M. ;
Bieler, Nikolaus ;
Mathier, Meinrad ;
Eyholzer, Markus ;
Zimmermann, Bertin ;
Barthe, Philippe ;
Guermeur, Celine ;
Lobet, Olivier ;
Moreno, Maxime ;
Woehl, Pierre .
CHEMICAL ENGINEERING & TECHNOLOGY, 2008, 31 (08) :1155-1161
[37]  
Sahoo H. R., 2007, ANGEW CHEM, V119, P5806
[38]   Experimental and modeling studies on the enantio-separation of 3,5-dinitrobenzoyl-(R),(S)-leucine by continuous liquid-liquid extraction in a cascade of centrifugal contactor separators [J].
Schuur, Boelo ;
Winkelman, Jozef G. M. ;
de Vries, Johannes G. ;
Heeres, Hero J. .
CHEMICAL ENGINEERING SCIENCE, 2010, 65 (16) :4682-4690
[39]   Scalable Enantioseparation of Amino Acid Derivatives Using Continuous Liquid-Liquid Extraction in a Cascade of Centrifugal Contactor Separators [J].
Schuur, Boelo ;
Hallet, Andrew J. ;
Winkelman, Jozef G. M. ;
de Vries, Johannes G. ;
Heeres, Hero J. .
ORGANIC PROCESS RESEARCH & DEVELOPMENT, 2009, 13 (05) :911-914
[40]  
Silverman G.S., 1996, Handbook of Grignard Reagents