Influence of mixing and sludge volume on stability, reproducibility, and productivity of laboratory-scale anaerobic digestion
Alternative Titles
Resource Type
 Biogas Microbiome /  Dataset
Creators / Authors
Date of Issue
 2020-03-12
Publisher
 University of Bayreuth
Collections
Abstract & Descriptions
Abstract
Biogas microbiome
Method Description
Technical Description
Subjects & Keywords
DFG Research Subject Areas
 2 Life Sciences;
2 Life Sciences :: 21 Biology;
2 Life Sciences :: 21 Biology :: 201 Basic Research in Biology and Medicine;
4 Engineering Sciences;
4 Engineering Sciences :: 42 Thermal Engineering / Process Engineering;
4 Engineering Sciences :: 42 Thermal Engineering / Process Engineering :: 403 Process Engineering, Technical Chemistry;
4 Engineering Sciences :: 42 Thermal Engineering / Process Engineering :: 403 Process Engineering, Technical Chemistry :: 403-04 Biological Process Engineering
2 Life Sciences :: 21 Biology;
2 Life Sciences :: 21 Biology :: 201 Basic Research in Biology and Medicine;
4 Engineering Sciences;
4 Engineering Sciences :: 42 Thermal Engineering / Process Engineering;
4 Engineering Sciences :: 42 Thermal Engineering / Process Engineering :: 403 Process Engineering, Technical Chemistry;
4 Engineering Sciences :: 42 Thermal Engineering / Process Engineering :: 403 Process Engineering, Technical Chemistry :: 403-04 Biological Process Engineering
OpenAIRE Fields of Science
Keywords
 Anaerobic Digestion;   Reproducibility;   Mixing;   Productivity;   Geometry
How to cite
 Influence of mixing and sludge volume on stability, reproducibility, and productivity of laboratory-scale anaerobic digestion
 2020-03-12, doi:  10.15495/do_ubt_1212