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Original Articles

Molecular Separation Barriers and Their Application to Catalytic Reactor Design

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Pages 301-332 | Published online: 13 Dec 2006

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GUIDO GRECO$suffix/text()$suffix/text(), FRANCESCO ALFANI, MARIA CANTARELLA, LILIANA GIANFREDA, ROSARIA PALESCANDOLO & VINCENZO SCARDI. (1980) THE EFFECT OF SUBSTRATE MASS TRANSFER LIMITATIONS IN AN IMMOBILIZED ENZYME MEMBRANE REACTOR. Chemical Engineering Communications 7:1-3, pages 145-157.
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Galia Salzman, Rafael Tadmor, Serge Guzy, Samuel Sideman & Noah Lotan. (1999) Hollow fiber enzymic reactors for a two substrate process: analytical modeling and numerical simulations. Chemical Engineering and Processing: Process Intensification 38:4-6, pages 289-299.
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C. K. S. Jones, R. Y. K. Yang & E. T. White. (2004) A novel hollow‐fiber reactor with reversible immobilization of lactase. AIChE Journal 34:2, pages 293-304.
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J. E. Prenosil & T. Hediger. 1986. Membranes and Membrane Processes. Membranes and Membrane Processes 515 531 .
C. K. S. JONES, E. T. WHITE & R. Y. K. YANG. (1984) Enzymatic Hydrolysis of Lactose in a Hollow-Fiber Reactor. Annals of the New York Academy of Sciences 434:1, pages 119-122.
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Douglas S. Inloes, William J. Smith, Dean P. Taylor, Stanley N. Cohen, Alan S. Michaels & Channing R. Robertson. (2004) Hollow‐fiber membrane bioreactors using immobilized E. coli for protein synthesis . Biotechnology and Bioengineering 25:11, pages 2653-2681.
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H.K. Lonsdale. (1982) The growth of membrane technology. Journal of Membrane Science 10:2-3, pages 81-181.
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Guido GrecoJr.Jr., Donatella Albanesi, Maria Cantarella, Liliana Gianfreda, Rosaria Palescandolo & Vincenzo Scardi. (1979) Enzyme inactivation and stabilization studies in an ultrafiltration reactor. European Journal of Applied Microbiology and Biotechnology 8:4, pages 249-261.
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