Dipl.-Ing. Frederik Bade

Contact / Address

Dept. Systemic Environmental Biotechnology (SUBT)

Helmholtz Centre
for Environmental Research - UFZ
Permoserstr. 15
04318 Leipzig, Germany

Phone: +49 (0) 341 235-1764
frederik.bade@ufz.de

Frederik Bade

CV / Scientific career

Since 02/2023

Research associate/ Doctoral candidate

Department Systemic Environmental Biotechnology
Helmholtz Centre for Environmental Research

Topic: The role of hydrolysis and physicochemical parameters in the formation of foam in the biogas process.
Project: HydroFoam

12/2022 - 01/2023

Scientific assistant

Department Centre for Environmental Biotechnology
Helmholtz Centre for Environmental Research

2017 - 2019

Study and research stays abroad

  • Universidad Nacional Autónoma de México | Mexiko City
  • Universidad Nacional de Colombia | Medellín
  • Instituto Tecnológico y de Estudios Superiores de Monterrey | Mexiko City & Querétaro

2014 - 2022

Diplom, Process Engineering and Natural Materials Technology

Dresden University of Technology

  • Specialization in Bioprocess Engineering
  • Topic of Diplom thesis: Characterization and optimization of a synthetic metabolic pathway for the production of mevalonic acid from glycolaldehyde and ethylene glycol

Research interests

Development and optimization of biotechnological processes for the production of biogenic products and bioenergy.


Publications

Bade, F., Guerra-Blackmer, E., Meola, A., Hellmann, S., Weinrich, S., Moeller, L., Kleinsteuber, S. (2026), Effect of increasing organic loading rate on hydrolytic enzyme activities and microbial communities during anaerobic digestion of energy crops, Front. Microbiol. 17:1894607. doi: 10.3389/fmicb.2026.1894607

Bade, F.
, Ranjit, M., Moeller, L. (2025), Einfluss der Eigenschaften des Gärmaterials auf die Schaumbildung bei der Vergärung von Triticale. In: Nelles, M. (Hrsg.), 19. Rostocker Biomasseforum: am 19. und 20. Juni 2025. Tagungsband, Schriftenreihe Umweltingenieurwesen 131, Universität Rostock, Agrar- und Umweltwissenschaftliche Fakultät, Rostock, S. 139 – 149. 10.18453/rosdok_id00004784

Bade, F., Kleinsteuber, S., Moeller, L. (2025), Foam formation during anaerobic digestion of sugar beet silage: causes and countermeasures, Bioresour. Technol. 437: 133180. https://doi.org/10.1016/j.biortech.2025.133180

Wagner, N., Bade, F., Straube, E., Rabe, K., Frazão, C. J. R., Walther, T. (2023), In vivo implementation of a synthetic metabolic pathway for the carbon-conserving conversion of glycolaldehyde to acetyl-CoA. Front. Bioeng. Biotechnol., 11: 1125544. https://doi.org/10.3389/fbioe.2023.1125544

Wagner, N., Bade, F., Rabe, K. and Walther, T. (2022), Engineering E. coli for the carbon-conserving conversion of ethylene glycol to acetyl-CoA and derived products. Chem. Ing. Tech., 94: 1308-1309. https://doi.org/10.1002/cite.202255365