Maskow Thomas
Maskow Thomas
UFZ Helmholtz Centre for Environmental research
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Cited by
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Thermodynamics of microbial growth and metabolism: an analysis of the current situation
U Von Stockar, T Maskow, J Liu, IW Marison, R Patino
Journal of Biotechnology 121 (4), 517-533, 2006
Physiological and morphological responses of the soil bacterium Rhodococcus opacus strain PD630 to water stress
HM Alvarez, RA Silva, AC Cesari, AL Zamit, SR Peressutti, R Reichelt, ...
FEMS Microbiology ecology 50 (2), 75-86, 2004
Continuous synthesis and excretion of the compatible solute ectoine by a transgenic, nonhalophilic bacterium
T Schubert, T Maskow, D Benndorf, H Harms, U Breuer
Applied and environmental microbiology 73 (10), 3343-3347, 2007
How reliable are thermodynamic feasibility statements of biochemical pathways?
T Maskow, U von Stockar
Biotechnology and bioengineering 92 (2), 223-230, 2005
Miniaturized calorimetry—a new method for real-time biofilm activity analysis
J Lerchner, A Wolf, F Buchholz, F Mertens, TR Neu, H Harms, T Maskow
Journal of Microbiological Methods 74 (2-3), 74-81, 2008
Chip calorimetry and its use for biochemical and cell biological investigations
J Lerchner, T Maskow, G Wolf
Chemical Engineering and Processing: Process Intensification 47 (6), 991-999, 2008
A comparison of various Gibbs energy dissipation correlations for predicting microbial growth yields
JS Liu, V Vojinović, R Patino, T Maskow, U von Stockar
Thermochimica Acta 458 (1-2), 38-46, 2007
What heat is telling us about microbial conversions in nature and technology: from chip‐to megacalorimetry
T Maskow, R Kemp, F Buchholz, T Schubert, B Kiesel, H Harms
Microbial biotechnology 3 (3), 269-284, 2010
A combination method to study microbial communities and activities in zinc contaminated soil
Y Zhou, J Yao, MMF Choi, Y Chen, H Chen, R Mohammad, R Zhuang, ...
Journal of Hazardous Materials 169 (1-3), 875-881, 2009
What does calorimetry and thermodynamics of living cells tell us?
T Maskow, S Paufler
Methods 76, 3-10, 2015
Real time insights into bioprocesses using calorimetry: state of the art and potential
T Maskow, H Harms
Engineering in Life Sciences 6 (3), 266-277, 2006
On-line monitoring of lipid storage in yeasts using impedance spectroscopy
T Maskow, A Röllich, I Fetzer, JU Ackermann, H Harms
Journal of Biotechnology 135 (1), 64-70, 2008
Chip calorimetry for the monitoring of whole cell biotransformation
T Maskow, J Lerchner, M Peitzsch, H Harms, G Wolf
Journal of biotechnology 122 (4), 431-442, 2006
Can microbial growth yield be estimated using simple thermodynamic analogies to technical processes?
U von Stockar, V Vojinović, T Maskow, J Liu
Chemical Engineering and Processing: Process Intensification 47 (6), 980-990, 2008
Chip calorimetry for fast and reliable evaluation of bactericidal and bacteriostatic treatments of biofilms
F Buchholz, A Wolf, J Lerchner, F Mertens, H Harms, T Maskow
Antimicrobial agents and chemotherapy 54 (1), 312-319, 2010
Calorimetric bioprocess monitoring by small modifications to a standard bench-scale bioreactor
T Schubert, U Breuer, H Harms, T Maskow
Journal of biotechnology 130 (1), 24-31, 2007
Rapid analysis of bacterial contamination of tap water using isothermal calorimetry
T Maskow, K Wolf, W Kunze, S Enders, H Harms
Thermochimica acta 543, 273-280, 2012
Exploiting mixtures of H2, CO2, and O2 for improved production of methacrylate precursor 2-hydroxyisobutyric acid by engineered Cupriavidus necator strains
D Przybylski, T Rohwerder, C Dilßner, T Maskow, H Harms, RH Müller
Applied microbiology and biotechnology 99, 2131-2145, 2015
Carbon and energy fluxes during haloadaptation of Halomonas sp. EF11 growing on phenol
T Maskow, S Kleinsteuber
Extremophiles 8, 133-141, 2004
Calorimetrically recognized maximum yield of poly-3-hydroxybutyrate (PHB) continuously synthesized from toxic substrates
T Maskow, W Babel
Journal of biotechnology 77 (2-3), 247-253, 2000
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