Fission products and other compounds released during severe nuclear power plant accidents will form aerosol particles, which include water-soluble compounds such as cesium hydroxide (CsOH), cesium carbonate, and cesium iodide. These hygroscopic particles will grow in a humid environment, and thus their settling rate is increased significantly at high relative humidities.This paper evaluates the hygroscopicity of CsOH and other water-soluble compounds released under severe accident conditions. The effect was incorporated into the kinetic particle growth model based on coupled mass and heat transport to evaluate the growth rates of single particles at different atmospheric conditions. Finally, the kinetic growth model for hygroscopic particle...
In order to clarify the cesium iodide (CsI) transport behavior with a focus on the mechanisms of gas...
New particle formation (NPF) and growth is an important source of cloud condensation nuclei (CCN). I...
A main focus of reactor safety research is the mitigation of radiological consequences during a seve...
Hygroscopic aerosols were studied at 40° C at different relative humidity levels in a flow-type reac...
The growth of hygroscopic particles due to steam condensation has been studied.Sophisticated and sim...
In the course of severe light water reactor (LWR) core melt accidents, the formation and presence of...
The possibility of severe accidents is the main impediment for nuclear energy being accepted as a ca...
Hygroscopic NaOH, CsI, CsOH and inert Ag aerosol behaviour at different temperatures and relative hu...
The uncontrolled release of radioactive fission products from the primary circuit of a nuclear power...
The vaporisation rates of volatile fission product compounds are critical parameters for modelling a...
The hygroscopic properties of sub-micrometer aerosol particles were studied in connection with a gro...
The paper presents the results of an experimental investigation on the formation mechanism and physi...
Analysis of the processes in severe accidents at nuclear power plants has allowed distinguishing fou...
Analysis of the processes in severe accidents at nuclear power plants has allowed distinguishing fou...
This work recompiles studies that have been done with respect to hygroscopic growth in the regime of...
In order to clarify the cesium iodide (CsI) transport behavior with a focus on the mechanisms of gas...
New particle formation (NPF) and growth is an important source of cloud condensation nuclei (CCN). I...
A main focus of reactor safety research is the mitigation of radiological consequences during a seve...
Hygroscopic aerosols were studied at 40° C at different relative humidity levels in a flow-type reac...
The growth of hygroscopic particles due to steam condensation has been studied.Sophisticated and sim...
In the course of severe light water reactor (LWR) core melt accidents, the formation and presence of...
The possibility of severe accidents is the main impediment for nuclear energy being accepted as a ca...
Hygroscopic NaOH, CsI, CsOH and inert Ag aerosol behaviour at different temperatures and relative hu...
The uncontrolled release of radioactive fission products from the primary circuit of a nuclear power...
The vaporisation rates of volatile fission product compounds are critical parameters for modelling a...
The hygroscopic properties of sub-micrometer aerosol particles were studied in connection with a gro...
The paper presents the results of an experimental investigation on the formation mechanism and physi...
Analysis of the processes in severe accidents at nuclear power plants has allowed distinguishing fou...
Analysis of the processes in severe accidents at nuclear power plants has allowed distinguishing fou...
This work recompiles studies that have been done with respect to hygroscopic growth in the regime of...
In order to clarify the cesium iodide (CsI) transport behavior with a focus on the mechanisms of gas...
New particle formation (NPF) and growth is an important source of cloud condensation nuclei (CCN). I...
A main focus of reactor safety research is the mitigation of radiological consequences during a seve...