Inulinase immobilization on polyethylene glycol/polypyrrole multiwall carbon nanotubes producing a catalyst with enhanced thermal and operational stability

Author:

Temkov Mishela12,Petrovski Aleksandar1,Gjorgieva Emilija3,Popovski Emil3,Lazarova Maja4,Boev Ivan4,Paunovic Perica1,Grozdanov Anita1,Dimitrov Aleksandar1,Baidak Aliaksandr56,Krastanov Albert2ORCID

Affiliation:

1. Faculty of Technology and MetallurgySs. Cyril and Methodius University in Skopje Skopje Republic of Macedonia

2. Faculty of TechnologyUniversity of Food Technologies Plovdiv Bulgaria

3. Institute of ChemistryFaculty of Natural Science and MathematicsSs. Cyril and Methodius University in Skopje Skopje Republic of Macedonia

4. Technological Technical FacultyUniversity Goce Delcev Shtip Republic of Macedonia

5. Dalton Cumbrian FacilityUniversity of Manchester West Lakes United Kingdom

6. School of ChemistryUniversity of Manchester Manchester United Kingdom

Funder

Bulgarian National Science Fund

Publisher

Wiley

Subject

Bioengineering,Environmental Engineering,Biotechnology

Reference69 articles.

1. Inulinases ‐ a versatile tool for biotechnology;Neagu C.;Innovative Rom. Food Biotechnol.,2011

2. A review on the production and partial characterization of microbial inulinases;Treichel H.;Global J. Biochem.,2012

3. Fructose production from inulin using fungal inulinase immobilized on 3-aminopropyl-triethoxysilane functionalized multiwalled carbon nanotubes

4. Fructose production by chicory inulin enzymatic hydrolysis: A kinetic study and reaction mechanism

5. The State of the Art in the Production of Fructose from Inulin Enzymatic Hydrolysis

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