Fire and Polymers.. Hazards Identification and Prevention by Nelson G.L.

By Nelson G.L.

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A membrane reactor (MR) is an device for simultaneous performing the reaction and a membrane-mediated separation in the same physical vessel [47], where the enzyme is immobilized onto a semipermeable membrane, which may take the form of a flat sheet or hollow fibers [48]. MRs are commonly employed for biphasic liquid systems. 2d shows one possible configuration (see [41] and [49] for a comprehensive review). The advantages of MRs are connected with the decrease of the pressure drop and fluid channeling, and the high surface area to volume ratio of the membrane [8].

Wanga Y, Xia L, Xu X, Xie L, Duan Z (2012) Lipase-catalyzed acidolysis of canola oil with caprylic acid to produce medium-, long- and medium-chain-type structured lipids. Camacho Paez B, Robles Medina A, Camacho Rubio F, Esteban Cerdá L, Molina Grima E (2003) Kinetics of lipase-catalysed interesterification of triolein and caprylic acid to produce structured lipids. Camacho Paeza B, Robles Medina A, Camacho Rubio F, Gonzalez Moreno P, Molina Grima E (2002) Production of structured triglycerides rich in n-3 polyunsaturated fatty acids by the acidolysis of cod liver oil and caprylic acid in a packed-bed reactor: equilibrium and kinetics.

Akil E, Barea B, Finotelli P, Lecomte J, Torres AG, Villeneuve P (2016) Accesing regio and typo selectivity of Yarrowia lipolytica lipase in its free form and immobilized onto magnetic nanoparticles. Meng X, Xu G, Zhou QL, Wu JP, Yang LR (2014) Highly efficient solvent-free synthesis of 1,3-diacylglycerols by lipase immobilised on nano-sized magnetite particles. Gupta S, Bhattacharya A, Murthy CN (2013) Tune to immobilize lipases on polymer membranes: techniques, factors and prospects. Ríos GM, Belleville MP, Paolucci D (2012) Enzymatic membrane reactors in applications of membrane separations technology: recent advances, chapter 24.

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