Nitrososphaera viennensis gen. nov., sp. nov., an aerobic and mesophilic, ammonia-oxidizing archaeon from soil and a member of the archaeal phylum Thaumarchaeota M Stieglmeier, A Klingl, RJE Alves, SKMR Rittmann, M Melcher, N Leisch, ... International journal of systematic and evolutionary microbiology 64 (Pt 8 …, 2014 | 278 | 2014 |
A comprehensive and quantitative review of dark fermentative biohydrogen production S Rittmann, C Herwig Microbial cell factories 11, 1-18, 2012 | 232 | 2012 |
Essential prerequisites for successful bioprocess development of biological CH4 production from CO2 and H2 S Rittmann, A Seifert, C Herwig Critical reviews in biotechnology 35 (2), 141-151, 2015 | 149 | 2015 |
Analysis of process related factors to increase volumetric productivity and quality of biomethane with Methanothermobacter marburgensis AH Seifert, S Rittmann, C Herwig Applied Energy 132, 155-162, 2014 | 144 | 2014 |
Biological methane production under putative Enceladus-like conditions RS Taubner, P Pappenreiter, J Zwicker, D Smrzka, C Pruckner, P Kolar, ... Nature communications 9 (1), 748, 2018 | 129 | 2018 |
Archaea Biotechnology K Pfeifer, İ Ergal, M Koller, M Basen, B Schuster, KMRR Simon Biotechnology Advances, 107668, 2021 | 104 | 2021 |
One-carbon substrate-based biohydrogen production: Microbes, mechanism, and productivity SKMR Rittmann, HS Lee, JK Lim, TW Kim, JH Lee, SG Kang Biotechnology Advances 33 (1), 165-177, 2015 | 90 | 2015 |
Quantitative analysis of media dilution rate effects on Methanothermobacter marburgensis grown in continuous culture on H2 and CO2 S Rittmann, A Seifert, C Herwig Biomass and Bioenergy 36, 293-301, 2012 | 75 | 2012 |
Methods for quantification of growth and productivity in anaerobic microbiology and biotechnology LM Mauerhofer, P Pappenreiter, C Paulik, AH Seifert, S Bernacchi, ... Folia microbiologica 64, 321-360, 2019 | 73 | 2019 |
Actin cytoskeleton and complex cell architecture in an Asgard archaeon T Rodrigues-Oliveira, F Wollweber, RI Ponce-Toledo, J Xu, ... Nature 613 (7943), 332-339, 2023 | 66 | 2023 |
Method for assessing the impact of emission gasses on physiology and productivity in biological methanogenesis AH Seifert, S Rittmann, S Bernacchi, C Herwig Bioresource technology 136, 747-751, 2013 | 65 | 2013 |
Dynamic process conditions in bioprocess development O Spadiut, S Rittmann, C Dietzsch, C Herwig Engineering in Life Sciences 13 (1), 88-101, 2013 | 65 | 2013 |
A critical assessment of microbiological biogas to biomethane upgrading systems SKMR Rittmann Biogas Science and Technology, 117-135, 2015 | 64 | 2015 |
Assessing the ecophysiology of methanogens in the context of recent astrobiological and planetological studies RS Taubner, C Schleper, MG Firneis, SKMR Rittmann Life 5 (4), 1652-1686, 2015 | 60 | 2015 |
The physiology and biotechnology of dark fermentative biohydrogen production İ Ergal, W Fuchs, B Hasibar, B Thallinger, G Bochmann, SKMR Rittmann Biotechnology advances 36 (8), 2165-2186, 2018 | 52 | 2018 |
Biohydrogen production beyond the Thauer limit by precision design of artificial microbial consortia İ Ergal, O Gräf, B Hasibar, M Steiner, S Vukotić, G Bochmann, W Fuchs, ... Communications biology 3 (1), 443, 2020 | 50 | 2020 |
Hyperthermophilic methanogenic archaea act as high-pressure CH4 cell factories LM Mauerhofer, S Zwirtmayr, P Pappenreiter, S Bernacchi, AH Seifert, ... Communications Biology 4 (1), 289, 2021 | 44 | 2021 |
Kinetics, multivariate statistical modelling, and physiology of CO2-based biological methane production KMRR Simon, AH Seifert, S Bernacchi Applied energy 216, 751-760, 2018 | 41 | 2018 |
SepF is the FtsZ anchor in archaea, with features of an ancestral cell division system N Pende, A Sogues, D Megrian, A Sartori-Rupp, P England, H Palabikyan, ... Nature Communications 12 (1), 3214, 2021 | 40 | 2021 |
Sulfate-reducing bacteria of the oral cavity and their relation with periodontitis—recent advances I Kushkevych, M Coufalová, M Vítězová, SKMR Rittmann Journal of Clinical Medicine 9 (8), 2347, 2020 | 39 | 2020 |