Performance of invertase immobilized on glass–ceramic supports in batch bioreactor
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V. Freire | B. Cavada | G. Nascimento | A. Porto | R. Santos | J. L. Filho | P. J. R. Neto | M. Pimentel | J. L. Silva | P. G. Cadena | A. V. Albertini | A.L.S. Reis | J. Martins | C. R. Martínez | A. Albertini | P. R. Neto | J. L. Silva | P. Cadena
[1] A. Bekker,et al. Global nature of the Paleoproterozoic Lomagundi carbon isotope excursion: A review of occurrences in Brazil, India, and Uruguay , 2010 .
[2] Sirong Yu,et al. Microstructures and compressive properties of AZ91D/fly-ash cenospheres composites , 2010 .
[3] M. V. Deepthi,et al. Mechanical and thermal characteristics of high density polyethylene-fly ash Cenospheres composites , 2010 .
[4] J. L. Lima Filho,et al. Covalent immobilization of invertase on polyurethane, plast-film and ferromagnetic Dacron. , 2010, Bioresource technology.
[5] S. Küçükbayrak,et al. The influence of the binder on the properties of sintered glass-ceramics produced from industrial wastes , 2009 .
[6] P. Bishop,et al. Valorization of coal fly ash by mechano-chemical activation: Part II. Enhancing pozzolanic reactivity. , 2009 .
[7] P. Bishop,et al. Valorization of coal fly ash by mechano-chemical activation: Part I. Enhancing adsorption capacity , 2009 .
[8] H. A. El-Rehim,et al. Radiation-induced kappa carrageenan/acrylic acid graft-copolymers and their application as catalytic reagent for sucrose hydrolysis , 2008 .
[9] T. Kavas,et al. The effect of BaCO3 addition on the sintering behavior of lignite coal fly ash , 2008 .
[10] A. R. Boccaccini,et al. Production of novel ceramic materials from coal fly ash and metal finishing wastes , 2008 .
[11] J. Koo,et al. Effect of Zn addition on mechanical properties of brass hollow spheres , 2008 .
[12] S. Küçükbayrak,et al. Comparison of the properties of glass, glass-ceramic and ceramic materials produced from coal fly ash. , 2008, Journal of hazardous materials.
[13] E. Ribeiro,et al. Optimization of invertase immobilization by adsorption in ionic exchange resin for sucrose hydrolysis , 2008 .
[14] F. Kapteijn,et al. Polyethyleneimine (PEI) functionalized ceramic monoliths as enzyme carriers: Preparation and performance , 2008 .
[15] S. Fitzpatrick,et al. Modulation of drug release kinetics from hydroxypropyl methyl cellulose matrix tablets using polyvinyl pyrrolidone. , 2007, International journal of pharmaceutics.
[16] A. Tanriseven,et al. Immobilization of Penicillium lilacinum dextranase to produce isomaltooligosaccharides from dextran , 2007 .
[17] S. Sugunan,et al. Immobilization of α-amylase on zirconia: a heterogeneous biocatalyst for starch hydrolysis , 2007 .
[18] N. Wang,et al. Chemically surface modified gel (CSMG): an excellent enzyme-immobilization matrix for industrial processes. , 2006, Journal of biotechnology.
[19] Emel Emregul,et al. Polyacrylamide–gelatine carrier system used for invertase immobilization , 2006 .
[20] A. Trochimczuk,et al. Novel method of enzymes stabilization on crosslinked thermosensitive carriers , 2006 .
[21] Iddi S. N. Mkilaha,et al. Mechanisms of fine particulates formation with alkali metal compounds during coal combustion , 2006 .
[22] M. Nasef,et al. Hydrolysis of sucrose by radiation grafted sulfonic acid membranes , 2005 .
[23] Kus Hidajat,et al. Optimal design and operation of SMB bioreactor for sucrose inversion , 2005 .
[24] K. Liang,et al. Nano-crystal glass–ceramics obtained from high alumina coal fly ash , 2005 .
[25] S. Vassilev,et al. Phase-mineral and chemical composition of coal fly ashes as a basis for their multicomponent utilization. 2. Characterization of ceramic cenosphere and salt concentrates , 2004 .
[26] T. Cheng,et al. On formation of CaO-Al(2)O(3)-SiO2 glass-ceramics by vitrification of incinerator fly ash. , 2003, Chemosphere.
[27] G. Kovalenko,et al. Macrostructured carbonized ceramics as adsorbents for immobilization of glucoamylase , 2002 .
[28] A. Tanriseven,et al. Immobilization of invertase within calcium alginate gel capsules , 2001 .
[29] M. H. Fernandes,et al. Production of glass-ceramics from coal ashes , 2001 .
[30] M. Ibrahim,et al. Effect of Pb addition on thermoelectric power and microhardness of Bi–Pb–Sr–Ca–Cu–O superconductors , 2000 .
[31] Ida,et al. Immobilization of glucoamylase on ceramic membrane surfaces modified with a new method of treatment utilizing SPCP-CVD. , 2000, Biochemical engineering journal.
[32] O. Warburg,et al. Isolierung und Kristallisation des Gärungsferments Enolase , 1941, Naturwissenschaften.
[33] Ji-Young Jung,et al. Granule performance of zirconia/alumina composite powders spray-dried using polyvinyl pyrrolidone binder , 2007 .
[34] C. Bergmann,et al. Fly ash of mineral coal as ceramic tiles raw material. , 2007, Waste management.
[35] S. Sugunan,et al. Invertase immobilised on montmorillonite: reusability enhancement and reduction in leaching , 2005 .
[36] Y. ErdoĞan,et al. Development of ceramic tiles from coal fly ash and tincal ore waste , 2005 .
[37] Ta-Wui Cheng,et al. Production of glass-ceramic from incinerator fly ash , 2002 .
[38] P. Bernfeld,et al. [17] Amylases, α and β , 1955 .