0000000001295190

AUTHOR

Bärbel Kiesel

showing 1 related works from this author

Real time analysis of Escherichia coli biofilms using calorimetry

2008

Abstract Microbial communities grow more stably when they are associated to surfaces or organized in aggregates. This advantage of biofilms is technically exploited for the degradation of xenobiotics or in biocatalysis, where the fixed biomass has the added advantage of easier separation of excreted products. Whereas the biothermodynamic analysis of growth and product formation of suspended cells is developing fast, there are only few reports on the calorimetric analysis and biothermodynamic interpretation of biofilm evolution. Experiments illustrate the ability of calorimetry to monitor the physiological state of biofilms in real time. Sessile cells of Escherichia coli DH5α DSM 6897 were s…

biologyChemistryProcess Chemistry and TechnologyGeneral Chemical EngineeringBiofilmEnergy Engineering and Power TechnologyBiomassGeneral ChemistryCalorimetrybiology.organism_classificationmedicine.disease_causeIndustrial and Manufacturing EngineeringChemical engineeringMicrobial population biologymedicineDegradation (geology)Real time analysisEscherichia coliBacteriaChemical Engineering and Processing: Process Intensification
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