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Mechanical properties of calcium alginate fibers produced with a microfluidic device
(ELSEVIER SCI LTD, 2012)
Fibers are important microstructural elements in many foods. The main objective of this research was to produce calcium alginate fibers with uniform diameters (about 300 and 550 mu m) using a microfluidic device (MFD) and ...
Physicochemical Characterization of a Heat Treated Calcium Alginate Dry Film Prepared with Chicken Stock
(Wiley Blackwell Publishing, Inc, 2017-04)
Solid sodium alginate was dissolved into chicken stock in order to give a final alginate concentration of 0.9 percent (w/v). Calcium ions present in chicken stock were enough to induce ionic gelation. After drying, Fourier ...
Development and characterization of new enzymatic modified hybrid calcium carbonate microparticles to obtain nano-architectured surfaces for enhanced drug loading
(Elsevier Inc, 2015-02)
Hypothesis: Biopolymer–CaCO3 hybrid microparticles exposed to hydrolytic enzymes can provide new surface tailorable architectures. Soluble Alginate Lyase hydrolyzed alginate chains exposed on microparticle surface are ...
Isomaltulose production from Sucrose by Protaminobacter rubrum immobilized in calcium alginate
(Elsevier B.V., 2009-09-01)
Different culture conditions for Protaminobacter rubrum and enzymatic reaction parameters were evaluated with the goal of improving isomaltulose production. P. rubrum was grown in a medium with 1% (w/v) cane molasses and ...
Isomaltulose production from Sucrose by Protaminobacter rubrum immobilized in calcium alginate
(Elsevier B.V., 2009-09-01)
Different culture conditions for Protaminobacter rubrum and enzymatic reaction parameters were evaluated with the goal of improving isomaltulose production. P. rubrum was grown in a medium with 1% (w/v) cane molasses and ...
Alginate and pectin composite films crosslinked with Ca2+ ions: Effect of the plasticizer concentration
(Elsevier Sci LtdOxfordInglaterra, 2009)
Evaluation of microencapsulation of the UFV-AREG1 bacteriophage in alginate-Ca microcapsules using microfluidic devices
(Colloids and Surfaces B: Biointerfaces, 2018)