The present bi-partite work describes the development and validation of a mechanistic kinetic model of SODIS E. coli inactivation, enhanced with H2O2. In this first part, the mechanism of the baseline dark phenomena is modelled. A mechanistic model involving E. coli cellular respiration, inactivation due to HO⋅ and O2⋅- radicals, and bacterial thermal inactivation, was developed using a series-event model based on the accumulation of damage and cell recovery corrected with the Arrhenius equation for inclusion of the thermal events. The contribution of external H2O2 was included in the internal H2O2 balance, while the balance of extracellular H2O2 considered the consumption caused by its self-decomposition, interactions with cells’ membrane,...
<div><p>Hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) is used by phagocytic cells of the innate imm...
A generalized kinetic model resulting from several modifications of the one originally known as the ...
International audienceWe recently developed a mathematical model for predicting reactive oxygen spec...
The present bi-partite work describes the development and validation of a mechanistic kinetic model ...
In this second part of the development of a mechanistic kinetic model of the solar inactivation of E...
A mechanistic model of the inactivation of Escherichia coli by solar water disinfection (SODIS) tech...
Data of the experimental and predicted E. coli inactivation and H2O2 profiles under dark conditions ...
The effectiveness of hydrogen peroxide on the destruction of planktonic cells of Escherichia coli at...
A mechanistic model of inactivation of Escherichia coli by the action of solar UV radiation and simu...
The inactivation (death) of Escherichia coli bacteria in water employing hydrogen peroxide has been ...
This work presents a kinetic analysis of the exogenous photo-induced disinfection of E. coli in natu...
The inactivation reaction of Escherichia coli bacteria employing hydrogen peroxide at 20 ºC and pH =...
Solar disinfection (SODIS) was probed for its underlying mechanism. When Escherichia coli was expose...
Pre-proof versionSolar disinfection (SODIS) was probed for its underlying mechanism. When Escherichi...
This work focuses, for the first time, on the mechanistic modelling of wastewater disinfection by th...
<div><p>Hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) is used by phagocytic cells of the innate imm...
A generalized kinetic model resulting from several modifications of the one originally known as the ...
International audienceWe recently developed a mathematical model for predicting reactive oxygen spec...
The present bi-partite work describes the development and validation of a mechanistic kinetic model ...
In this second part of the development of a mechanistic kinetic model of the solar inactivation of E...
A mechanistic model of the inactivation of Escherichia coli by solar water disinfection (SODIS) tech...
Data of the experimental and predicted E. coli inactivation and H2O2 profiles under dark conditions ...
The effectiveness of hydrogen peroxide on the destruction of planktonic cells of Escherichia coli at...
A mechanistic model of inactivation of Escherichia coli by the action of solar UV radiation and simu...
The inactivation (death) of Escherichia coli bacteria in water employing hydrogen peroxide has been ...
This work presents a kinetic analysis of the exogenous photo-induced disinfection of E. coli in natu...
The inactivation reaction of Escherichia coli bacteria employing hydrogen peroxide at 20 ºC and pH =...
Solar disinfection (SODIS) was probed for its underlying mechanism. When Escherichia coli was expose...
Pre-proof versionSolar disinfection (SODIS) was probed for its underlying mechanism. When Escherichi...
This work focuses, for the first time, on the mechanistic modelling of wastewater disinfection by th...
<div><p>Hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) is used by phagocytic cells of the innate imm...
A generalized kinetic model resulting from several modifications of the one originally known as the ...
International audienceWe recently developed a mathematical model for predicting reactive oxygen spec...