Full name Familienname, Vorname
Novak, Katharina
 
Main Affiliation Organisations­zuordnung
 

Results 1-16 of 16 (Search time: 0.001 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Pfluegl-2022-Acetobacterium woodii as a flexible and robust host for forma...-ao.pdf.jpgPflügl, Stefan ; Neuendorf, Christian Simon ; Vignolle, Gabriel Alexander ; Novak, Katharina ; Zimmermann, Christian ; Tomin, Tamara ; Mach, Robert ; Birner-Grünberger, Ruth Acetobacterium woodii as a flexible and robust host for formate-based bioproductionPresentation Vortrag 11-Aug-2022
2Novak-2021-Bioresource Technology-vor.pdf.jpgNovak, Katharina ; Neuendorf, Christian Simon ; Kofler, Irmela ; Kieberger, Nina ; Klamt, Steffen ; Pflügl, Stefan Blending industrial blast furnace gas with H2 enables Acetobacterium woodii to efficiently co-utilize CO, CO2 and H2Article Artikel Mar-2021
3Neuendorf, Christian Simon ; Vignolle, Gabriel A. ; Derntl, Christian ; Tomin, Tamara ; Novak, Katharina ; Mach, Robert L. ; Birner-Grünberger, Ruth ; Pflügl, Stefan A quantitative metabolic analysis reveals Acetobacterium woodii as a flexible and robust host for formate-based bioproductionArtikel Article 2021
4Novak, Katharina ; Neuendorf, Christian Simon ; Kofler, Irmela ; Kieberger, Nina ; Klamt, Steffen ; Pflügl, Stefan Blending industrial blast furnace gas with H₂ enables Acetobacterium woodii to efficiently co-utilize CO, CO₂ and H₂Artikel Article 2021
5Novak, Katharina ; Neuendorf, Christian Simon ; Pflügl, Stefan Blending industrial blast furnace gas with H₂ enables Acetobacterium woodii to efficiently co-utilize CO, CO₂ and H₂Präsentation Presentation2021
6Novak, Katharina ; Neuendorf, Christian Simon ; Pflügl, Stefan Blending industrial blast furnace gas with H₂ enables Acetobacterium woodii to efficiently co-utilize CO, CO₂ and H₂Präsentation Presentation2021
7Novak, Katharina ; Neuendorf, Christian Simon ; Pflügl, Stefan Blending industrial blast furnace gas with H₂ enables Acetobacterium woodii to efficiently co-utilize CO, CO₂ and H₂Präsentation Presentation2021
8Novak, Katharina ; Neuendorf, Christian Simon ; Pflügl, Stefan Blending industrial blast furnace gas with H2 enables Acetobacterium woodii to efficiently co-utilize CO, CO2 and H2Konferenzbeitrag Inproceedings2021
9Novak, Katharina ; Kutscha, Regina ; Pflügl, Stefan Microbial upgrading of acetate into 2,3‑butanediol and acetoin by E. coli WArtikel Article 2020
10Novak, Katharina ; Kutscha, Regina ; Pflügl, Stefan Microbial upgrading of acetate into 2,3- butanediol and acetoin by E. coli WPräsentation Presentation2020
11Novak, Katharina ; Baar, Juliane ; Freitag, Philipp ; Pflügl, Stefan Metabolic engineering of Escherichia coli W for isobutanol production on chemically defined medium and cheese whey as alternative raw materialArtikel Article 2020
12Novak Katharina - 2020 - Development of a two-step bioprocess for CO2 fixation...pdf.jpgNovak, Katharina Development of a two-step bioprocess for CO2 fixation from industrial flue gas and production of a fuel chemicalThesis Hochschulschrift 2020
13Novak, Katharina ; Flöckner, Lukas ; Erian, Anna Maria ; Freitag, Philipp ; Herwig, Christoph ; Pflügl, Stefan Overexpression of an acetylation-insensitive acetyi-CoA synthetase in E. coli Wand its effect on glucose and acetate co-utilization in batch and continuous culturesKonferenzbeitrag Inproceedings2018
14Novak, Katharina ; Flöckner, Lukas ; Erian, Anna Maria ; Freitag, Philipp ; Herwig, Christoph ; Pflügl, Stefan Overexpression of an acetylation-insensitive acetyl-CoA synthetase in E. coli W and its effect on glucose and acetate co-utilization in batch and continuous culturesKonferenzbeitrag Inproceedings2018
15Novak-2018-Microbial Cell Factories-vor.pdf.jpgNovak, Katharina ; Flöckner, Lukas ; Erian, Anna Maria ; Freitag, Philipp ; Herwig, Christoph ; Pflügl, Stefan Characterizing the effect of expression of an acetyl-CoA synthetase insensitive to acetylation on co-utilization of glucose and acetate in batch and continuous cultures of E. coli WArticle Artikel 2018
16Novak, Katharina ; Pflügl, Stefan Towards biobased industry: acetate as a promising feedstock to enhance the potential of microbial cell factoriesArtikel Article 2018